TY - THES A1 - Harbart, Vanessa T1 - The effect of protected cultivation on the nutritional quality of lettuce (Lactuca sativa var capitata L.) with a focus on antifogging additives in polyolefin covers T1 - Die Bedeutung des geschützten Anbaus für die ernährungsphysiologische Qualität von Kopfsalat (Lactuca sativa var. capitata L.) mit Schwerpunkt auf Antibeschlagmittel in Polyolefinfolien N2 - Protected cultivation in greenhouses or polytunnels offers the potential for sustainable production of high-yield, high-quality vegetables. This is related to the ability to produce more on less land and to use resources responsibly and efficiently. Crop yield has long been considered the most important factor. However, as plant-based diets have been proposed for a sustainable food system, the targeted enrichment of health-promoting plant secondary metabolites should be addressed. These metabolites include carotenoids and flavonoids, which are associated with several health benefits, such as cardiovascular health and cancer protection. Cover materials generally have an influence on the climatic conditions, which in turn can affect the levels of secondary metabolites in vegetables grown underneath. Plastic materials are cost-effective and their properties can be modified by incorporating additives, making them the first choice. However, these additives can migrate and leach from the material, resulting in reduced service life, increased waste and possible environmental release. Antifogging additives are used in agricultural films to prevent the formation of droplets on the film surface, thereby increasing light transmission and preventing microbiological contamination. This thesis focuses on LDPE/EVA covers and incorporated antifogging additives for sustainable protected cultivation, following two different approaches. The first addressed the direct effects of leached antifogging additives using simulation studies on lettuce leaves (Lactuca sativa var capitata L). The second determined the effect of antifog polytunnel covers on lettuce quality. Lettuce is usually grown under protective cover and can provide high nutritional value due to its carotenoid and flavonoid content, depending on the cultivar. To study the influence of simulated leached antifogging additives on lettuce leaves, a GC-MS method was first developed to analyze these additives based on their fatty acid moieties. Three structurally different antifogging additives (reference material) were characterized outside of a polymer matrix for the first time. All of them contained more than the main fatty acid specified by the manufacturer. Furthermore, they were found to adhere to the leaf surface and could not be removed by water or partially by hexane. The incorporation of these additives into polytunnel covers affects carotenoid levels in lettuce, but not flavonoids, caffeic acid derivatives and chlorophylls. Specifically, carotenoids were higher in lettuce grown under polytunnels without antifog than with antifog. This has been linked to their effect on the light regime and was suggested to be related to carotenoid function in photosynthesis. In terms of protected cultivation, the use of LDPE/EVA polytunnels affected light and temperature, and both are closely related. The carotenoid and flavonoid contents of lettuce grown under polytunnels was reversed, with higher carotenoid and lower flavonoid levels. At the individual level, the flavonoids detected in lettuce did not differ however, lettuce carotenoids adapted specifically depending on the time of cultivation. Flavonoid reduction was shown to be transcriptionally regulated (CHS) in response to UV light (UVR8). In contrast, carotenoids are thought to be regulated post-transcriptionally, as indicated by the lack of correlation between carotenoid levels and transcripts of the first enzyme in carotenoid biosynthesis (PSY) and a carotenoid degrading enzyme (CCD4), as well as the increased carotenoid metabolic flux. Understanding the regulatory mechanisms and metabolite adaptation strategies could further advance the strategic development and selection of cover materials. N2 - Der geschützte Anbau in Gewächshäusern oder unter Folientunneln bietet die Möglichkeit einer nachhaltigen Produktion von ertragreichem Gemüse hoher Qualität. Die ressourceneffiziente Produktion von mehr auf weniger Fläche ist dabei ein wichtiger Faktor. Lange galt der Gemüseertrag als wichtigstes Kriterium. Die Anreicherung von gesundheitsfördernden sekundären Pflanzenmetaboliten gewinnt jedoch zunehmend an Bedeutung, nicht zuletzt durch die empfohlene pflanzenbasierte Ernährung für ein nachhaltiges Ernährungssystem. Die Sekundärmetabolite Carotinoide und Flavonoide sind mit verschiedenen gesundheitlichen Vorteilen assoziiert, etwa der kardiovaskulären Gesundheit und der Krebsprävention. Das Material eines Gewächshauses beeinflusst die klimatischen Bedingungen im geschützten Anbau. Das resultierende Mikroklima kann sich wiederum auf den Gehalt an Sekundärmetaboliten im Gemüse auswirken. Materialien aus Kunststoff sind kostengünstig und ihre Eigenschaften können durch Zusätze, sogenannte Additive, modifiziert werden. Additive können an die Oberfläche des Materials und aus diesem migrieren, was die Materiallebensdauer einerseits verkürzt und größere Abfallmengen produziert. Andererseits besteht das Risiko einer Umweltemission der Additive. Antifogging-Additive verhindern die Bildung von Kondenswasser Tropfen auf der Oberfläche von Gewächshausfolien, wodurch die Lichtdurchlässigkeit der Folien verbessert, sowie eine mikrobiologische Kontamination vermieden werden kann. Die vorliegende Arbeit befasst sich mit LDPE/EVA-Gewächshausfolien mit Antifogging-Additiven für einen nachhaltigen geschützten Anbau und verfolgt dabei zwei unterschiedliche Herangehensweisen. Zum einen befasst sich die Arbeit mit den direkten Auswirkungen von Antifogging-Additiven in Folge eines Übergangs auf Salatblätter (Lactuca sativa var. capitata L.) mittels Simulationsversuchen. Um den simulierten Übergang zu untersuchen, wurde zunächst eine Methode zur Analyse des Fettsäureanteils der Additive mittels GC-MS entwickelt. Drei strukturell unterschiedliche Antifogging-Additive (Referenzmaterial) wurden erstmals außerhalb einer Polymermatrix charakterisiert. Sie enthielten diverse Fettsäuren, und somit mehr, als die vom Hersteller angegebene Hauptfettsäure. Des Weiteren wurde gezeigt, dass sie an der Blattoberfläche haften und weder durch Wasser noch teilweise durch Hexan entfernt werden können. Zum anderen wurde der Einfluss von Antifogging-Additiven in Gewächshausfolien auf die Salatqualität untersucht. Salat ist ein Gemüse, das üblicherweise auch unter Schutzabdeckungen angebaut wird und sortenspezifisch größere Mengen an Carotinoiden und Flavonoiden enthält. Der Anbau von Salat unter Antifog-Folientunneln beeinflusste den Carotinoidgehalt, nicht aber den Gehalt an Flavonoiden, Kaffeesäurederivaten und Chlorophyll. Salate, die unter Folientunneln ohne Antifog angebaut wurde akkumulierten höhere Gehalte der Carotinoide, als solche unter Antifog-Folientunneln. Es besteht wahrscheinlich ein Zusammenhang mit der Funktion der Carotinoide als Photosynthesepigmente und der Lichtumgebung. Die Verwendung von LDPE/EVA-Folientunneln beeinflusste allgemein Licht und Temperatur im geschützten Anbau, beide Faktoren sind eng verknüpft. Die Carotinoid- und Flavonoidgehalte waren dabei invers, mit höheren gesamt Carotinoid- und niedrigeren gesamt Flavonoidgehalten von Salaten unter Folientunneln. Die individuellen Flavonoid-Glykoside unterschieden sich innerhalb der Versuchszeiträume (Frühjahr und Herbst) nicht. Es konnte gezeigt werden, dass diese hinsichtlich der UV-Lichtumgebung (UVR8) transkriptionell reguliert werden (CHS). Demgegenüber fanden spezifische Anpassungen der individuellen Carotinoidmetabolite in den Versuchszeiträumen statt. Die fehlende Korrelation der Carotinoidmetabolite und der Transkripte des Hauptenzyms der Biosynthese (PSY) und eines Carotinoid-abbauenden Enzyms (CCD4) sowie der erhöhte Carotinoid-Stoffwechselfluss deuten auf eine post-transkriptionelle Regulierung hin. Die Regulationsmechanismen und Anpassungsstrategien der sekundären Pflanzenstoffe in Gemüse zu verstehen, könnte zukünftig zur strategischen Entwicklung und Auswahl von Gewächshausmaterialien beitragen. KW - protected cultivation KW - polytunnel KW - lettuce KW - antifogging additives KW - plant secondary metabolites KW - carotenoids KW - flavonoids KW - mass spectrometry KW - plastic additives KW - Antibeschlag-Additive KW - Carotinoide KW - Flavonoide KW - Kopfsalat KW - Massenspektrometrie KW - sekundäre Pflanzenstoffe KW - Kunststoff-Additive KW - Folientunnel KW - geschützter Anbau Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-629375 ER - TY - THES A1 - Fitzner, Maria T1 - Cultivation of selected halophytes in saline indoor farming and modulation of cultivation conditions to optimize metabolite profiles for human nutrition T1 - Kultivierung ausgewählter Halophyten im salinen Indoor Farming und Modulation der Anbaubedingungen zur Optimierung der Metabolitenprofile für die menschliche Ernährung N2 - With the many challenges facing the agricultural system, such as water scarcity, loss of arable land due to climate change, population growth, urbanization or trade disruptions, new agri-food systems are needed to ensure food security in the future. In addition, healthy diets are needed to combat non-communicable diseases. Therefore, plant-based diets rich in health-promoting plant secondary metabolites are desirable. A saline indoor farming system is representing a sustainable and resilient new agrifood system and can preserve valuable fresh water. Since indoor farming relies on artificial lighting, assessment of lighting conditions is essential. In this thesis, the cultivation of halophytes in a saline indoor farming system was evaluated and the influence of cultivation conditions were assessed in favor of improving the nutritional quality of halophytes for human consumption. Therefore, five selected edible halophyte species (Brassica oleracea var. palmifolia, Cochlearia officinalis, Atriplex hortensis, Chenopodium quinoa, and Salicornia europaea) were cultivated in saline indoor farming. The halophyte species were selected for to their salt tolerance levels and mechanisms. First, the suitability of halophytes for saline indoor farming and the influence of salinity on their nutritional properties, e.g. plant secondary metabolites and minerals, were investigated. Changes in plant performance and nutritional properties were observed as a function of salinity. The response to salinity was found to be species-specific and related to the salt tolerance mechanism of the halophytes. At their optimal salinity levels, the halophytes showed improved carotenoid content. In addition, a negative correlation was found between the nitrate and chloride content of halophytes as a function of salinity. Since chloride and nitrate can be antinutrient compounds, depending on their content, monitoring is essential, especially in halophytes. Second, regional brine water was introduced as an alternative saline water resource in the saline indoor farming system. Brine water was shown to be feasible for saline indoor farming of halophytes, as there was no adverse effect on growth or nutritional properties, e.g. carotenoids. Carotenoids were shown to be less affected by salt composition than by salt concentration. In addition, the interaction between the salinity and the light regime in indoor farming and greenhouse cultivation has been studied. There it was shown that interacting light regime and salinity alters the content of carotenoids and chlorophylls. Further, glucosinolate and nitrate content were also shown to be influenced by light regime. Finally, the influence of UVB light on halophytes was investigated using supplemental narrow-band UVB LEDs. It was shown that UVB light affects the growth, phenotype and metabolite profile of halophytes and that the UVB response is species specific. Furthermore, a modulation of carotenoid content in S. europaea could be achieved to enhance health-promoting properties and thus improve nutritional quality. This was shown to be dose-dependent and the underlying mechanisms of carotenoid accumulation were also investigated. Here it was revealed that carotenoid accumulation is related to oxidative stress. In conclusion, this work demonstrated the potential of halophytes as alternative vegetables produced in a saline indoor farming system for future diets that could contribute to ensuring food security in the future. To improve the sustainability of the saline indoor farming system, LED lamps and regional brine water could be integrated into the system. Since the nutritional properties have been shown to be influenced by salt, light regime and UVB light, these abiotic stressors must be taken into account when considering halophytes as alternative vegetables for human nutrition. N2 - Angesichts zahlreicher Herausforderungen wie Wasserknappheit oder Verlust landwirtschaftlicher Nutzflächen aufgrund des Klimawandels, Bevölkerungswachstum und Verstädterung sind neue Systeme der Agrar- und Lebensmittelproduktion (Agrifood-Systeme) erforderlich, um die Ernährungssicherheit in der Zukunft zu gewährleisten. Eines dieser neuen Agrifood-Systeme ist das Indoor Farming. Es bietet den Vorteil einer nachhaltigen und resilienten Nahrungsmittelproduktion. In Kombination mit dem Anbau von Salzpflanzen kann wertvolles Süßwasser eingespart werden, da diese mit Salzwasser bewässert werden können. Durch eine pflanzliche Ernährung, die reich an sekundären Pflanzenstoffen mit gesundheitsfördernden Eigenschaften ist, kann eine gesunde Ernährung erreicht werden. Dadurch kann das Risiko für nicht übertragbare Krankheiten wie Diabetes oder Herz-Kreislauf-Erkrankungen gesenkt werden. In dieser Arbeit wurde untersucht, ob salztolerante Pflanzen (Halophyten) als alternatives Gemüse für die menschliche Ernährung geeignet sind und ob sie in einem salzhaltigen Indoor Farming System angebaut werden können. Zu diesem Zweck wurden fünf essbare Halophyten (Palmkohl, Gartenmelde, Löffelkraut, Quinoa und Europäische Queller) untersucht. Mit diesen Halophyten wurden verschiedene Pflanzenstudien durchgeführt, um den Einfluss von Salz, Licht und UVB-Strahlung auf für die menschliche Ernährung relevante Inhaltsstoffe zu untersuchen. In der ersten Studie wurde untersucht, welchen Einfluss das salzhaltige Indoor Farming System auf die Salzpflanzen und ihre Inhaltsstoffe hat. Es konnte festgestellt werden, dass sich die Inhaltsstoffe mit steigender Salzkonzentration im Wasser verändern. Weiterhin wurde untersucht, ob sich regionales Solewasser aus einer Thermalquelle als Salzwasserressource eignet. Es zeigte sich, dass das Solewasser keine negativen Auswirkungen auf das Wachstum oder die Inhaltsstoffe hat. Darüber hinaus wurde das Indoor-Farming System mit dem klassischen Gewächshausanbau von Salzpflanzen verglichen. Dabei zeigte sich ein Einfluss der unterschiedlichen Beleuchtung auf die Inhaltsstoffe. Schließlich wurde der Einsatz von UVB-LEDs als zusätzliche Beleuchtung getestet. Dabei wurde eine Verbesserung des Inhaltsstoffprofils erreicht. Zusammenfassend konnte in dieser Arbeit gezeigt werden, dass Salzpflanzen in Indoor-Farming kultiviert werden können und dass die ernährungsphysiologischen Eigenschaften durch Salz, Beleuchtung und UVB-Licht beeinflusst werden können. KW - halophytes KW - indoor farming KW - secondary plant metabolites KW - carotenoids KW - saline agriculture KW - future food KW - human diet KW - Carotinoide KW - Nahrung der Zukunft KW - Halophyten KW - menschliche Ernährung KW - Indoor farming KW - Saline Landwirtschaft KW - pflanzliche Sekundär Metabolite Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-626974 ER - TY - THES A1 - Henning, Thorsten T1 - Cross-sectional associations of dietary biomarker patterns with health and nutritional status Y1 - 2024 ER - TY - THES A1 - Rinne, Theresa Charlotte T1 - The effects of nutrients on bone stem cell function and regeneration N2 - Aging is associated with bone loss, which can lead to osteoporosis and high fracture risk. This coincides with the enhanced formation of bone marrow adipose tissue (BMAT), suggesting a negative effect of bone marrow adipocytes on skeletal health. Increased BMAT formation is also observed in pathologies such as obesity, type 2 diabetes and osteoporosis. However, a subset of bone marrow adipocytes forming the constitutive BMAT (cBMAT), arise early in life in the distal skeleton, contain high levels of unsaturated fatty acids and are thought to provide a physiological function. Regulated BMAT (rBMAT) forms during aging and obesity in proximal regions of the bone and contain a large proportion of saturated fatty acids. Paradoxically, BMAT accumulation is also enhanced during caloric restriction (CR), a life-span extending dietary intervention. This indicates, that different types of BMAT can form in response to opposing nutritional stimuli with potentially different functions. To this end, two types of nutritional interventions, CR and high fat diet (HFD), that are both described to induce BMAT accumulation were carried out. CR markedly increased BMAT formation in the proximal tibia and led to a higher proportion of unsaturated fatty acids, making it similar to the physiological cBMAT. Additionally, proximal and diaphyseal tibia regions displayed higher adiponectin expression. In aged mice, CR was associated with an improved trabecular bone structure. Taken together, these findings demonstrate, that the type of BMAT that forms during CR might provide beneficial effects for local bone stem/progenitor cells and metabolic health. The HFD intervention performed in this thesis showed no effect on BMAT accumulation and bone microstructure. RNA Seq analysis revealed alterations in the composition of the collagen-containing extracellular matrix (ECM). In order to investigate the effects of glucose homeostasis on osteogenesis, differentiation capacity of immortalized multipotent mesenchymal stromal cells (MSCs) and osteochondrogenic progenitor cells (OPCs) was analyzed. Insulin improved differentiation in both cell types, however, combination of with a high glucose concentration led to an impaired mineralization of the ECM. In the MSCs, this was accompanied by the formation of adipocytes, indicating negative effects of the adipocytes formed during hyperglycemic conditions on mineralization processes. However, the altered mineralization pattern and structure of the ECM was also observed in OPCs, which did not form any adipocytes, suggesting further negative effects of a hyperglycemic environment on osteogenic differentiation. In summary, the work provided in this thesis demonstrated that differentiation commitment of bone-resident stem cells can be altered through nutrient availability, specifically glucose. Surprisingly, both high nutrient supply, e.g. the hyperglycemic cell culture conditions, and low nutrient supply, e.g. CR, can induce adipogenic differentiation. However, while CR-induced adipocyte formation was associated with improved trabecular bone structure, adipocyte formation in a hyperglycemic cell-culture environment hampered mineralization. This thesis provides further evidence for the existence of different types of BMAT with specific functions. Y1 - 2024 ER - TY - THES A1 - Drobyshev, Evgenii T1 - Toxic or beneficial? What is the role of food-relevant selenium species selenoneine? T1 - Giftig oder nützlich? Welche Rolle spielt die lebensmittelrelevante Selenspezies Selenonein? N2 - Selenium (Se) is an essential trace element that is ubiquitously present in the environment in small concentrations. Essential functions of Se in the human body are manifested through the wide range of proteins, containing selenocysteine as their active center. Such proteins are called selenoproteins which are found in multiple physiological processes like antioxidative defense and the regulation of thyroid hormone functions. Therefore, Se deficiency is known to cause a broad spectrum of physiological impairments, especially in endemic regions with low Se content. Nevertheless, being an essential trace element, Se could exhibit toxic effects, if its intake exceeds tolerable levels. Accordingly, this range between deficiency and overexposure represents optimal Se supply. However, this range was found to be narrower than for any other essential trace element. Together with significantly varying Se concentrations in soil and the presence of specific bioaccumulation factors, this represents a noticeable difficulty in the assessment of Se epidemiological status. While Se is acting in the body through multiple selenoproteins, its intake occurs mainly in form of small organic or inorganic molecular mass species. Thus, Se exposure not only depends on daily intake but also on the respective chemical form, in which it is present. The essential functions of selenium have been known for a long time and its primary forms in different food sources have been described. Nevertheless, analytical capabilities for a comprehensive investigation of Se species and their derivatives have been introduced only in the last decades. A new Se compound was identified in 2010 in the blood and tissues of bluefin tuna. It was called selenoneine (SeN) since it is an isologue of naturally occurring antioxidant ergothioneine (ET), where Se replaces sulfur. In the following years, SeN was identified in a number of edible fish species and attracted attention as a new dietary Se source and potentially strong antioxidant. Studies in populations whose diet largely relies on fish revealed that SeN represents the main non-protein bound Se pool in their blood. First studies, conducted with enriched fish extracts, already demonstrated the high antioxidative potential of SeN and its possible function in the detoxification of methylmercury in fish. Cell culture studies demonstrated, that SeN can utilize the same transporter as ergothioneine, and SeN metabolite was found in human urine. Until recently, studies on SeN properties were severely limited due to the lack of ways to obtain the pure compound. As a predisposition to this work was firstly a successful approach to SeN synthesis in the University of Graz, utilizing genetically modified yeasts. In the current study, by use of HepG2 liver carcinoma cells, it was demonstrated, that SeN does not cause toxic effectsup to 100 μM concentration in hepatocytes. Uptake experiments showed that SeN is not bioavailable to the used liver cells. In the next part a blood-brain barrier (BBB) model, based on capillary endothelial cells from the porcine brain, was used to describe the possible transfer of SeN into the central nervous system (CNS). The assessment of toxicity markers in these endothelial cells and monitoring of barrier conditions during transfer experiments demonstrated the absence of toxic effects from SeN on the BBB endothelium up to 100 μM concentration. Transfer data for SeN showed slow but substantial transfer. A statistically significant increase was observed after 48 hours following SeN incubation from the blood-facing side of the barrier. However, an increase in Se content was clearly visible already after 6 hours of incubation with 1 μM of SeN. While the transfer rate of SeN after application of 0.1 μM dose was very close to that for 1 μM, incubation with 10 μM of SeN resulted in a significantly decreased transfer rate. Double-sided application of SeN caused no side-specific transfer of SeN, thus suggesting a passive diffusion mechanism of SeN across the BBB. This data is in accordance with animal studies, where ET accumulation was observed in the rat brain, even though rat BBB does not have the primary ET transporter – OCTN1. Investigation of capillary endothelial cell monolayers after incubation with SeN and reference selenium compounds showed no significant increase of intracellular selenium concentration. Speciesspecific Se measurements in medium samples from apical and basolateral compartments, as good as in cell lysates, showed no SeN metabolization. Therefore, it can be concluded that SeN may reach the brain without significant transformation. As the third part of this work, the assessment of SeN antioxidant properties was performed in Caco-2 human colorectal adenocarcinoma cells. Previous studies demonstrated that the intestinal epithelium is able to actively transport SeN from the intestinal lumen to the blood side and accumulate SeN. Further investigation within current work showed a much higher antioxidant potential of SeN compared to ET. The radical scavenging activity after incubation with SeN was close to the one observed for selenite and selenomethionine. However, the SeN effect on the viability of intestinal cells under oxidative conditions was close to the one caused by ET. To answer the question if SeN is able to be used as a dietary Se source and induce the activity of selenoproteins, the activity of glutathione peroxidase (GPx) and the secretion of selenoprotein P (SelenoP) were measured in Caco-2 cells, additionally. As expected, reference selenium compounds selenite and selenomethionine caused efficient induction of GPx activity. In contrast to those SeN had no effect on GPx activity. To examine the possibility of SeN being embedded into the selenoproteome, SelenoP was measured in a culture medium. Even though Caco-2 cells effectively take up SeN in quantities much higher than selenite or selenomethionine, no secretion of SelenoP was observed after SeN incubation. Summarizing, we can conclude that SeN can hardly serve as a Se source for selenoprotein synthesis. However, SeN exhibit strong antioxidative properties, which appear when sulfur in ET is exchanged by Se. Therefore, SeN is of particular interest for research not as part of Se metabolism, but important endemic dietary antioxidant. N2 - Selen (Se) ist ein essentielles Spurenelement, das in geringen Konzentrationen ubiquitär in der Umwelt vorkommt. Essentielle Funktionen von Se im menschlichen Körper manifestieren sich in einer Vielzahl von Proteinen, die Selenocystein als aktives Zentrum enthalten. Solche Proteine werden Selenoproteine genannt, die in zahlreichen physiologischen Prozessen wie der antioxidativen Abwehr und der Regulierung der Schilddrüsenhormonfunktionen vorkommen. Daher ist bekannt, dass ein Se-Mangel ein breites Spektrum physiologischer Beeinträchtigungen verursacht, insbesondere in solchen Regionen mit niedrigem Se-Bodengahlten. Dennoch kann Se als essentielles Spurenelement auch toxische Wirkungen entfalten, wenn seine Aufnahme das tolerierbare Maß überschreitet. Dementsprechend stellt dieser Bereich zwischen Mangel und Überbelichtung eine optimale Se-Versorgung dar. Dieser Bereich erwies sich jedoch als enger als bei jedem anderen essentiellen Spurenelement. Zusammen mit stark schwankenden SeKonzentrationen im Boden und dem Vorliegen spezifischer Bioakkumulationsfaktoren stellt dies eine deutliche Schwierigkeit bei der Beurteilung des epidemiologischen Selenstatus dar. Während im Körper mehrere Selenoproteine vorliegen, erfolgt seine Aufnahme hauptsächlich in Form kleiner organischer oder anorganischer Moleküle. Somit hängt die Se-Exposition nicht nur von der täglichen Aufnahme ab, sondern auch von der jeweiligen chemischen Form, in der es vorliegt. Die essentiellen Funktionen von Selen sind seit langem bekannt und seine Primärformen in verschiedenen Nahrungsquellen dominierenden Formen wurden bereits gut beschrieben. Dennoch wurden erst in den letzten Jahrzehnten neue analytische Möglichkeiten für eine umfassendere Untersuchung von Se-Spezies und ihren Derivaten entwickelt. Beispielsweise wurde 2010 eine neue Se-Verbindung im Blut und im Gewebe von Rotem Thunfisch identifiziert. Es wurde Selenonein (SeN) genannt, da es ein Isolog des natürlich vorkommenden Antioxidans Ergothionein (ET) ist, bei dem Se durch Schwefel ersetzt ist. In den folgenden Jahren wurde SeN in einer Reihe von essbaren Fischarten identifiziert und erregte einerseits als neue Nahrungsquelle für Se und andererseits als potenziell starkes Antioxidans Aufmerksamkeit. Studien an Probanden, deren Ernährung hauptsächlich von Fisch geprägt ist, haben gezeigt, dass SeN den hauptsächlichen nicht-proteingebundenen Se-Pool in ihrem Blut darstellt. Erste Studien mit angereicherten Fischextrakten zeigten bereits das hohe antioxidative Potenzial von SeN und seine mögliche Funktion bei der Entgiftung von Methylquecksilber im Fisch. Zellkulturstudien zeigten, dass SeN den gleichen Transporter wie Ergothionein nutzen kann und ein weiterer SeN-Metabolit wurde im menschlichen Urin gefunden. Bis vor kurzem waren Studien zu den Eigenschaften von SeN aufgrund fehlender Möglichkeiten, die reine Verbindung zu erwerben, stark eingeschränkt. Als wichtige Grundlage für die vorliegende Arbeit diente zunächst die erfolgreiche Synthese des SeN, welche an der Universität Graz unter Verwendung gentechnisch veränderter Hefen erfolgte. In der aktuellen Studie wurde unter Verwendung von HepG2-Leberkarzinomzellen gezeigt, dass SeN in physiologisch relevanten Konzentrationen keine toxischen Effekte in diesen Hepatozyten induziert. Bioverfügbarkeitsexperimente zeigten, dass SeN für die verwendeten Leberzellen nicht bioverfügbar ist. Im nächsten Teil wurde ein Modell der Blut-Hirn-Schranke (BHS) verwendet, das auf kapillaren Endothelzellen aus dem Schweinehirn basiert, um den möglichen Transfer von SeN in das zentrale Nervensystem (ZNS) zu untersuchen. Die Bewertung von Toxizitätsmarkern in diesen Endothelzellen und die online Überwachung der Barriere-Bedingungen während der Transferexperimente zeigten, dass bei physiologisch relevanten Konzentrationen keine toxischen Wirkungen von SeN auf das BHS-Endothel auftreten. Daten bezüglich des Übergangs der Selenspezies SeN zeigten zwar eine langsame, jedoch eine nicht zu vernachlässigenden Menge, die die Barriere passieren kann. Die gleichzeitige Inkubation von SeN auf beiden Barriere-Seiten verursachte keinen seitenspezifischen Transfer von SeN, was auf einen passiven Diffusionsmechanismus von SeN über die BHS hindeutet. Diese Daten stimmen mit Tierstudien überein, in denen eine ET-Akkumulation im Rattengehirn beobachtet wurde, obwohl die BHS der Ratte nicht über den primären ET-Transporter – OCTN1 – verfügt. Die Untersuchung von Monolayern aus kapillaren Endothelzellen nach Inkubation mit SeN und Referenzselenverbindungen zeigte keinen signifikanten Anstieg der intrazellulären Selenkonzentration. Speziesspezifische Se-Messungen in Mediumproben aus den apikalen und basolateralen Kompartimenten, sowie in den Zelllysaten zeigten keine SeN-Metabolisierung. Daraus kann geschlossen werden, dass SeN das Gehirn ohne signifikante Transformation erreichen kann. Als dritter Teil dieser Arbeit wurde die Bewertung der antioxidativen Eigenschaften von SeN in menschlichen Caco-2, also kolorektale Adenokarzinomzellen, durchgeführt. Frühere Studien zeigten, dass das Darmepithel in der Lage ist, SeN aktiv vom Darmlumen zur Blutseite zu transportieren und dort SeN anzureichern. Weitere Untersuchungen im Rahmen der aktuellen Arbeiten zeigten ein viel höheres antioxidatives Potenzial von SeN im Vergleich zu ET. Die Aktivität als Radikalfänger nach Inkubation mit SeN war ähnlich wie bei Selenit und Selenomethionin. Wobei die Wirkung von SeN auf die Lebensfähigkeit von Darmzellen unter oxidativen Bedingungen jedoch ähnlich der durch ET verursachten war. Um die Frage zu beantworten, ob SeN als diätetische Se-Quelle verwendet werden kann um die Aktivität von Selenoproteinen zu induzieren, wurden zusätzlich die Aktivität der Glutathionperoxidase (GPx) und die Sekretion von Selenoprotein P (SelenoP) in Caco-2-Zellen gemessen. Wie erwartet, bewirkten die Referenz-Selenverbindungen Selenit und Selenomethionin eine effiziente Induktion der GPx-Aktivität, im Gegensatz zu diesen hatte SeN keinen Einfluss auf die GPx-Aktivität. Um die Möglichkeit einer Einbettung von SeN in das Selenoproteom zu untersuchen, wurde SelenoP im Kulturmedium gemessen. Obwohl Caco-2-Zellen SeN effektiv in viel höherenMengen als Selenit oder Selenomethionin aufnehmen, wurde nach der SeN-Inkubation keine Sekretion von SelenoP beobachtet. Zusammenfassend können wir schlussfolgern, dass SeN kaum als Se-Quelle für die Selenoproteinsynthese dienen kann. SeN weist jedoch starke antioxidative Eigenschaften auf, die auftreten, wenn Schwefel in ET durch Se ausgetauscht wird. Daher ist SeN von besonderem Interesse für die Forschung, nicht als Teil des Se-Stoffwechsels, sondern als wichtiges endemisches diätetisches Antioxidans. KW - selenium KW - selenoneine KW - HepG2 KW - Caco-2 KW - PBCEC KW - Caco-2 KW - HepG2 KW - PBCEC KW - Selen KW - Selenonein Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-573794 ER - TY - THES A1 - Wittek, Laura T1 - Comparison of metabolic cages - analysis of refinement measures on the welfare and metabolic parameters of laboratory mice T1 - Der Vergleich von Stoffwechselkäfigen - Analyse von Refinement-Maßnahmen auf das Wohlbefinden und Stoffwechselparameter von Labormäusen N2 - Housing in metabolic cages can induce a pronounced stress response. Metabolic cage systems imply housing mice on metal wire mesh for the collection of urine and feces in addition to monitoring food and water intake. Moreover, mice are single-housed, and no nesting, bedding, or enrichment material is provided, which is often argued to have a not negligible impact on animal welfare due to cold stress. We therefore attempted to reduce stress during metabolic cage housing for mice by comparing an innovative metabolic cage (IMC) with a commercially available metabolic cage from Tecniplast GmbH (TMC) and a control cage. Substantial refinement measures were incorporated into the IMC cage design. In the frame of a multifactorial approach for severity assessment, parameters such as body weight, body composition, food intake, cage and body surface temperature (thermal imaging), mRNA expression of uncoupling protein 1 (Ucp1) in brown adipose tissue (BAT), fur score, and fecal corticosterone metabolites (CMs) were included. Female and male C57BL/6J mice were single-housed for 24 h in either conventional Macrolon cages (control), IMC, or TMC for two sessions. Body weight decreased less in the IMC (females—1st restraint: 6.94%; 2nd restraint: 6.89%; males—1st restraint: 8.08%; 2nd restraint: 5.82%) compared to the TMC (females—1st restraint: 13.2%; 2nd restraint: 15.0%; males—1st restraint: 13.1%; 2nd restraint: 14.9%) and the IMC possessed a higher cage temperature (females—1st restraint: 23.7°C; 2nd restraint: 23.5 °C; males—1st restraint: 23.3 °C; 2nd restraint: 23.5 °C) compared with the TMC (females—1st restraint: 22.4 °C; 2nd restraint: 22.5 °C; males—1st restraint: 22.6 °C; 2nd restraint: 22.4 °C). The concentration of fecal corticosterone metabolites in the TMC (females—1st restraint: 1376 ng/g dry weight (DW); 2nd restraint: 2098 ng/g DW; males—1st restraint: 1030 ng/g DW; 2nd restraint: 1163 ng/g DW) was higher compared to control cage housing (females—1st restraint: 640 ng/g DW; 2nd restraint: 941 ng/g DW; males—1st restraint: 504 ng/g DW; 2nd restraint: 537 ng/g DW). Our results show the stress potential induced by metabolic cage restraint that is markedly influenced by the lower housing temperature. The IMC represents a first attempt to target cold stress reduction during metabolic cage application thereby producing more animal welfare friendly data. N2 - Die Unterbringung in Stoffwechselkäfigen kann eine ausgeprägte Stressreaktion hervorrufen. Mäuse werden in Stoffwechselkäfigen auf Metallgittern gehalten, um zusätzlich zur Überwachung der Futter- und Wasseraufnahme Urin und Kot aufzufangen. Darüber hinaus werden die Mäuse einzeln gehalten und es wird kein Nist-, Einstreu- oder Anreicherungs-Material zur Verfügung gestellt, was oft als Ursache für Kältestress angeführt wird, welcher sich auf das Wohlergehen der Tiere auswirkt. Wir haben daher versucht, den Stress bei der Haltung von Mäusen in Stoffwechselkäfigen zu reduzieren, indem wir einen innovativen Stoffwechselkäfig (IMC) mit einem kommerziell erhältlichen Stoffwechselkäfig der Tecniplast GmbH (TMC) und einem Kontrollkäfig verglichen haben. Für das Käfigdesign des IMC wurden wesentliche Refinement-Maßnahmen realisiert. Im Rahmen einer multifaktoriellen Beurteilung des Schweregrades wurden Parameter wie Körpergewicht, Körperzusammensetzung, Nahrungsaufnahme, Käfig- und Körperoberflächentemperatur (Wärmebildaufnahmen), mRNA-Expression von Uncoupling Protein 1 (Ucp1) im braunen Fettgewebe (BAT), Fur Score und fäkale Corticosteron-Metabolite (CMs) einbezogen. Weibliche und männliche C57BL/6J-Mäuse wurden für jeweils 24 Stunden entweder in konventionellen Macrolon-Käfigen (Kontrolle), IMC oder TMC zweimal untergebracht. Das Körpergewicht nahm in dem IMC weniger ab (Weibchen - 1. Haltung: -6,94%; 2. Haltung: -6,89%; Männchen - 1. Haltung: -8,08%; 2. Haltung: -5,82%) als in dem TMC (Weibchen - 1. Haltung: -13,2%; 2. Haltung: -15,0%; Männchen - 1. Haltung: -13,1%; 2. Haltung: -14,9%) und der IMC wies eine höhere Käfigtemperatur (Weibchen - 1. Haltung: 23,7 °C; 2. Haltung 23,5 °C; Männchen - 1. Haltung: 23,3 °C; 2. Haltung: 23,5 °C) im Vergleich zum TMC auf (Weibchen - 1. Haltung: 22,4 °C; 2. Haltung: 22,5 °C; Männchen - 1. Haltung: 22,6 °C; 2. Haltung: 22,4 °C). Die Konzentration der fäkalen Corticosteron-Metabolite im TMC (Weibchen - 1. Haltung: 1376 ng/g Trockengewicht (DW); 2. Haltung: 2098 ng/g DW; Männchen – 1. Haltung: 1030 ng/g DW; 2. Haltung: 1163 ng/g DW) war im Vergleich zur Kontrollkäfighaltung höher (Weibchen - 1. Haltung: 640 ng/g DW; 2. Haltung: 941 ng/g DW; Männchen - 1. Haltung: 504 ng/g DW; 2. Haltung: 537 ng/g DW). Unsere Ergebnisse zeigen das Stresspotenzial, welches durch die Haltung in Stoffwechselkäfigen ausgelöst wird, und dass durch die niedrigere Haltungstemperatur deutlich beeinflusst wird. Der IMC stellt einen ersten Versuch dar, den Kältestress während der Anwendung des Stoffwechselkäfigs zu reduzieren und dadurch tierschutzgerechtere Daten zu produzieren. KW - metabolic cage KW - laboratory mice KW - refinement KW - animal welfare KW - Tierschutz KW - Labormäuse KW - Stoffwechselkäfig KW - Refinement Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-611208 ER - TY - THES A1 - Rausch, Theresa T1 - Role of intestinal bacteria in the conversion of dietary sulfonates N2 - Over the last decades, interest in the impact of the intestinal microbiota on host health has steadily increased. Diet is a major factor that influences the gut microbiota and thereby indirectly affects human health. For example, a high fat diet rich in saturated fatty acids led to an intestinal proliferation of the colitogenic bacterium Bilophila (B.) wadsworthia by stimulating the release of the bile acid taurocholate (TC). TC contains the sulfonated head group taurine, which undergoes conversion to sulfide (H2S) by B. wadsworthia. In a colitis prone murine animal model (IL10 / mice), the bloom of B. wadsworthia was accompanied by an exacerbation of intestinal inflammation. B. wadsworthia is able to convert taurine and also other sulfonates to H2S, indicating the potential association of sulfonate utilization and the stimulation of colitogenic bacteria. This potential link raised the question, whether dietary sulfonates or their sulfonated metabolites stimulate the growth of colitogenic bacteria such as B. wadsworthia and whether these bacteria convert sulfonates to H2S. Besides taurine, which is present in meat, fish and life-style beverages, other dietary sulfonates are part of daily human nutrition. Sulfolipids such as sulfoquinovosyldiacylglycerols (SQDG) are highly abundant in salad, parsley and the cyanobacterium Arthrospira platensis (Spirulina). Based on previous findings, Escherichia (E.) coli releases the polar headgroup sulfoquinovose (SQ) from SQDG. Moreover, E. coli is able to convert SQ to 2,3 dihydroxypropane 1 sulfonate (DHPS) under anoxic conditions. DHPS is also converted to H2S by B. wadsworthia or by other potentially harmful gut bacteria such as members of the genus Desulfovibrio. However, only few studies report the conversion of sulfonates to H2S by bacteria directly isolated from the human intestinal tract. Most sulfonate utilizing bacteria were obtained from environmental sources such as soil or lake sediment or from potentially intestinal sources such as sewage. In the present study, fecal slurries from healthy human subjects were incubated with sulfonates under strictly anoxic conditions, using formate and lactate as electron donors. Fecal slurries that converted sulfonates to H2S, were used as a source for the isolation of H2S forming bacteria. Isolates were identified based on their 16S ribosomal RNA (16S rRNA) gene sequence. In addition, conventional C57BL/6 mice were fed a semisynthetic diet supplemented with the SQDG rich Spirulina (SD) or a Spirulina free control diet (CD). During the intervention, body weight, water and food intake were monitored and fecal samples were collected. After three weeks, mice were killed and organ weight and size were measured, intestinal sulfonate concentrations were quantified, gut microbiota composition was determined and parameters of intestinal and hepatic fat metabolism were analyzed. Human fecal slurries converted taurine, isethionate, cysteate, 3 sulfolacate, SQ and DHPS to H2S. However, inter individual differences in the degradation of these sulfonates were observed. Taurine, isethionate, and 3 sulfolactate were utilized by fecal microbiota of all donors, while SQ, DHPS and cysteate were converted to H2S only by microbiota from certain individuals. Bacterial isolates from human feces able to convert sulfonates to H2S were identified as taurine-utilizing Desulfovibrio strains, taurine- and isethionate-utilizing B. wadsworthia, or as SQ- and 3-sulfolactate- utilizing E. coli. In addition, a co culture of E. coli and B. wadsworthia led to complete degradation of SQ to H2S, with DHPS as an intermediate. Of the human fecal isolates, B. wadsworthia and Desulfovibrio are potentially harmful. E. coli strains might be also pathogenic, but isolated E. coli strains from human feces were identified as commensal gut bacteria. Feeding SD to mice increased the cecal and fecal SQ concentration and altered the microbiota composition, but the relative abundance of SQDG or SQ converting bacteria and colitogenic bacteria was not enriched in mice fed SD for 21 days. SD did not affect the relative abundance of Enterobacteriaceae, to which the SQDG- and SQ-utilizing E. coli strain belong to. Furthermore, the abundance of B. wadsworthia decreased from day 2 to day 9 in feces, but recovered afterwards in the same mice. In cecum, the family Desulfovibrionaceae, to which B. wadsworthia and Desulfovibrio belong to, were reduced. No changes in the number of B. wadsworthia in cecal contents or of Desulfovibrionaceae in feces were observed. SD led to a mild activation of the immune system, which was not observed in control mice fed CD. Mice fed SD had an increased body weight, a higher adipose tissue weight, and a decreased liver weight compared to the control mice, suggesting an impact of Spirulina supplementation on fat metabolism. However, expression levels of genes involved in intestinal and hepatic intracellular lipid uptake and availability were reduced. Further investigations on the lipid metabolism at protein level could help to clarify these discrepancies. In summary, humans differ in the ability of their fecal microbiota to utilize dietary sulfonates. While sulfonates stimulated the proliferation of potentially colitogenic isolates from human fecal slurries, the increased availability of SQ in Spirulina fed conventional mice did not lead to an enrichment of such bacteria. Presence or absence of these bacteria may explain the inter individual differences in sulfonate conversion observed for fecal slurries. This work provides new insights in the ability of intestinal bacteria to utilize sulfonates and thus, contributes to a better understanding of microbiota-mediated effects on dietary sulfonate utilization. Interestingly, feeding of the Spirulina-supplemented diet led to body-weight gain in mice in the first two days of intervention, the reasons for which are unknown. N2 - Die Darmmikrobiota hat auf die menschliche Gesundheit einen großen Einfluss. Nahrungskom-ponente sind die Hauptquelle für bakterielle Substrate und beeinflussen somit das Wachstum von Darmbakterien. In einer Studie mit Mäusen führte z.B. eine Hochfettdiät zu einer erhöhten Freisetzung der Gallensäure Taurocholat (TC), was wiederum zur Anreicherung des kolitogenen Bakteriums Bilophila (B.) wadsworthia führte. In einem Interleukin-10-defizienten Maus-Model für Kolitis, führte eine erhöhte intestinale Verfügbarkeit von TC zu Darmentzündungen und Wachstum von B. wadsworthia. TC enthält den sulfonierten Taurin-Rest, der auch in Nahrungsmitteln wie Fisch und Fleisch enthalten ist, und von B. wadsworthia genutzt und zu Sulfid (H2S) reduziert werden kann. Bisher gibt es jedoch nur wenige Studien, welche die Umwandlung von Sulfonaten in H2S durch Darmbakterien belegen, wobei auch H2S mit Darmentzündungen in Verbindung gebracht wird. Aus diesen Literaturdaten resultierten die Fragen, ob Sulfonate aus der Nahrung das Wachstum von kolitogenen Bakterien wie B. wadsworthia stimulieren und ob diese Bakterien Sulfonate zu H2S umwandeln können. Weitere Nahrungsmittel-Sulfonate sind die Sulfolipide Sulfoquinovosyldiacylglycerole (SQDG) in Salaten, Petersilie und Spirulina. Escherichia (E.) coli kann Sulfoquinovose (SQ) aus SQDG abspalten und in 2,3-Dihydroxypropan-1-sulfonat (DHPS) umwandeln, welches wiederum von B. wadsworthia oder einem Desulfovibrio-Stamm, einem anderen potenziell kolitogenem Darmbakterium, verwendet und zu H2S reduziert werden kann. In der vorliegenden Arbeit wurden Fäzes-Suspensionen von gesunden Menschen unter strikt anoxischen Bedingungen mit Sulfonaten und Formiat und Laktat als Elektronendonoren inkubiert. Aus den Fäzes-Suspensionen wurden H2S-bildende Bakterienstämme isoliert und identifiziert. Zusätzlich wurden konventionelle C57BL/6-Mäuse mit einer semisynthetischen Diät, welche mit SQDG-reicher Spirulina supplementiert war (SD), gefüttert. Während des Versuchs wurde das Körpergewicht der Mäuse, deren Wasser- und Nahrungsaufnahme bestimmt und Fäzesproben gesammelt. Nach drei Wochen wurden die intestinale Sulfonatkonzentration, die Zusammensetzung der Mikrobiota und die Parameter des hepatischen und intestinalen Fettstoffwechsels bestimmt. Die Ergebnisse zeigten, dass humane Fäzes-Suspensionen Taurin, Isethionat, Cysteat, 3-Sulfolaktat, SQ und DHPS mit interindividuellen Unterschieden zu H2S umwandeln. Als Sulfonat-umsetzende Bakterien wurden Stämme der Gattung Desulfovibrio, B. wadsworthia oder E. coli isoliert, wobei die Desulfovibrio-Stämme Taurin, B. wadsworthia Taurin und Isethionat und E. coli SQ und 3-Sulfolaktat zu H2S reduzieren konnten. Eine Kokultivierung von E. coli und B. wadsworthia zeigte den vollständigen Abbau von SQ über DHPS zu H2S. Die Gabe von SD an Mäuse erhöhte die intestinale SQ-Konzentration und veränderte die Mikrobiota-Zusammensetzung, jedoch war die Zellzahl von SQDG- oder SQ-umwandelnden Bakterien und kolitogenen Bakterien nicht erhöht. Die Zellzahl von B. wadsworthia in denselben Mäusen von Tag 2 bis 9 ab, normalisierte sich danach aber wieder. Im Zäkum war die Familie der Desulfovibrionaceae reduziert, zu welcher B. wadsworthia und Desulfovibrio-Stämme gehören. SD führte zu einer schwachen Aktivierung des Immunsystems und zur Erhöhung des Körpergewichtes. Zusammenfassend lässt sich sagen, dass Darmbakterien in der Lage sind, Sulfonate aus der Nahrung mit interindividuellen Unterschieden zu verwerten. Das Vorkommen von Bakterien könnte diese Unterschiede erklären. Diese Studie ermöglicht es uns, die biologische Rolle der mit der Nahrung aufgenommenen Sulfonate zu verstehen und könnte neue Erkenntnisse über die Fähigkeit der Darmbakterien zur Verwertung von Sulfonaten liefern. T2 - Die Rolle von Darmbakterien bei der Umsetzung von Nahrungsmittel-Sulfonaten KW - microbiology KW - Bilophila wadsworthia KW - sulfide KW - intestinal KW - Bilophila wadsworthia KW - intestinal KW - Mikrobiologie KW - Sulfid KW - dietary sulfonates KW - Nahrungssulfonate Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-574036 ER - TY - THES A1 - Lopes Fernando, Raquel Sofia T1 - The impact of aging on proteolytic systems, transcriptome and metabolome of slow and fast muscle fiber types N2 - Aging is a complex process characterized by several factors, including loss of genetic and epigenetic information, accumulation of chronic oxidative stress, protein damage and aggregates and it is becoming an emergent drug target. Therefore, it is the utmost importance to study aging and agerelated diseases, to provide treatments to develop a healthy aging process. Skeletal muscle is one of the earliest tissues affected by age-related changes with progressive loss of muscle mass and function from 30 years old, effect known as sarcopenia. Several studies have shown the accumulation of protein aggregates in different animal models, as well as in humans, suggesting impaired proteostasis, a hallmark of aging, especially regarding degradation systems. Thus, different publications have explored the role of the main proteolytic systems in skeletal muscle from rodents and humans, like ubiquitin proteasomal system (UPS) and autophagy lysosomal system (ALS), however with contradictory results. Yet, most of the published studies are performed in muscles that comprise more than one fiber type, that means, muscles composed by slow and fast fibers. These fiber types, exhibit different metabolism and contraction speed; the slow fibers or type I display an oxidative metabolism, while fast fibers function towards a glycolytic metabolism ranging from fast oxidative to fast glycolytic fibers. To this extent, the aim of this thesis sought to understand on how aging impacts both fiber types not only regarding proteostasis but also at a metabolome and transcriptome network levels. Therefore, the first part of this thesis, presents the differences between slow oxidative (from Soleus muscle) and fast glycolytic fibers (Extensor digitorum longus, EDL) in terms of degradation systems and how they cope with oxidative stress during aging, while the second part explores the differences between young and old EDL muscle transcriptome and metabolome, unraveling molecular features. More specifically, the results from the present work show that slow oxidative muscle performs better at maintaining the function of UPS and ALS during aging than EDL muscle, which is clearly affected, accounting for the decline in the catalytic activity rates and accumulation of autophagy-related proteins. Strinkingly, transcriptome and metabolome analyses reveal that fast glycolytic muscle evidences significant downregulation of mitochondrial related processes and damaged mitochondria morphology during aging, despite of having a lower oxidative metabolism compared to oxidative fibers. Moreover, predictive analyses reveal a negative association between aged EDL gene signature and lifespan extending interventions such as caloric restriction (CR). Although, CR intervention does not alter the levels of mitochondrial markers in aged EDL muscle, it can reverse the higher mRNA levels of muscle damage markers. Together, the results from this thesis give new insights about how different metabolic muscle fibers cope with age-related changes and why fast glycolytic fibers are more susceptible to aging than slow oxidative fibers. N2 - Altern ist ein komplexer Prozess, der durch mehrere Faktoren gekennzeichnet ist, darunter der Verlust genetischer und epigenetischer Informationen, oxidativer Stress, sowie die Anhäufung von Proteinschäden und Aggregaten. Daher ist es von größter Bedeutung, das Altern und altersbedingte Krankheiten zu erforschen, um Arzneimittel und andere Behandlungen für einen gesunden Alterungsprozess zu entwickeln. Die Skelettmuskulatur ist eines der ersten Gewebe, das von altersbedingten Veränderungen betroffen ist. Ab einem Alter von 30 Jahren kommt es zu einem fortschreitenden Verlust der Muskelmasse und -funktion, der auch als Sarkopenie bezeichnet wird. Mehrere Studien haben die Anhäufung von Proteinaggregaten beim Altern in verschiedenen Tiermodellen und auch beim Menschen gezeigt, was auf eine gestörte Proteostase, insbesondere hinsichtlich der Abbauprozesse schließen lässt. Demnach wurde weiterführend die Rolle der wichtigsten proteolytischen Systeme, das Ubiquitin Proteasom System (UPS) und AutophagieLysosomale System (ALS), im alternden Skelettmuskel von Nagetieren und Menschen untersucht. Die Ergebnisse waren widersprüchlich, jedoch wurden die meisten der veröffentlichten Studien an Muskeln durchgeführt, die aus mehr als einem Muskelfasertyp bestehen, d.h. Muskeln, die aus langsamen und schnellen Muskelfasern zusammengesetzt sind. Diese Muskelfasertypen unterscheiden sich hinsichtlich des Stoffwechsels und der Kontraktionsgeschwindigkeit. Die langsamen Fasern oder der Typ I haben einen oxidativen Stoffwechsel, während die schnellen Fasern einen glykolytischen Stoffwechsel aufweisen und aus schnellen oxidativen bis zu schnellen glykolytischen Fasern bestehen können. Insofern war es das Ziel dieser Arbeit zu verstehen, wie sich das Altern auf beide Fasertypen auswirkt, und zwar nicht nur im Hinblick auf die Proteostase, sondern auch auf das Metabolom und Transkriptom. Im ersten Teil dieser Arbeit werden die Unterschiede zwischen langsamen oxidativen (Soleus-Muskel) und schnellen glykolytischen Fasern (Extensor digitorum longus-Muskel; EDL) in Bezug auf die Proteinabbausysteme und die Art und Weise, wie sie mit oxidativem Stress während des Alterns umgehen, dargestellt. Im zweiten Teil werden die Unterschiede zwischen dem Transkriptom und dem Metabolom des jungen und alten EDL-Muskels untersucht, um die molekularen Merkmale zu entschlüsseln. Im Einzelnen zeigen die Ergebnisse der vorliegenden Arbeit, dass der langsam oxidierende Muskel im Vergleich zum EDL-Muskel besser in der Lage ist, die Funktion von UPS und ALS während des Alterns aufrechtzuerhalten. Die Funktionalität des UPS und ALS ist im alternden EDL-Muskels vermindert, was durch den Rückgang der katalytischen Aktivitätsraten und die Anhäufung von mit Autophagie-assoziierten Proteinen gezeigt wurde. Transkriptom- und Metabolomanalysen zeigen, dass schnelle glykolytische Muskeln eine signifikante Herabregulierung mitochondrialer Prozesse und eine geschädigte Mitochondrienmorphologie während des Alterns aufweisen, obwohl sie im Vergleich zu oxidativen Fasern durch einen geringeren oxidativen Stoffwechsel charakterisiert sind. Darüber hinaus ergeben prädiktive Analysen einen negativen Zusammenhang zwischen der Gensignatur des gealterten EDL-Muskels und lebensverlängernden Maßnahmen wie der kalorischenRestriktion. Obwohl die kalorischen Restriktion Intervention die Werte der mitochondrialen Marker im gealterten EDL-Muskel nicht verändert, kann sie die höheren mRNA-Werte der Muskelschädigungsmarker umkehren. Zusammenfassend liefern die Ergebnisse dieser Arbeit neue Erkenntnisse darüber, wie verschiedene metabolische Muskelfasern mit altersbedingten. Veränderungen umgehen und warum schnelle glykolytische Fasern anfälliger für die Alterung als langsame oxidative Fasern sind. KW - skeletal muscle aging KW - proteostasis KW - slow and fast fiber types KW - transcriptomics KW - metabolomics KW - sarcopenia KW - Skelettmuskelalterung KW - Proteostase KW - langsame und schnelle Fasertypen KW - Transkriptom KW - Metabolom KW - ubiquitin proteasomal system KW - autophagy lysosomal system KW - Ubiquitin Proteasom System KW - Autophagie Lysosomale System Y1 - 2023 U6 - https://doi.org/10.25932/publishup-60579 ER - TY - THES A1 - Koelman, Liselot A. T1 - The role of diet in immune health and ageing BT - integrating intervention and observational evidence Y1 - 2023 ER - TY - THES A1 - Prada, Marcela T1 - Fatty acid biomarkers of intake and metabolism and their association with type 2 diabetes N2 - Background: The role of fatty acid (FA) intake and metabolism in type 2 diabetes (T2D) incidence is controversial. Some FAs are not synthesised endogenously and, therefore, these circulating FAs reflect dietary intake, for example, the trans fatty acids (TFAs), saturated odd chain fatty acids (OCFAs), and linoleic acid, an n-6 polyunsaturated fatty acids (PUFA). It remains unclear if intake of TFA influence T2D risk and whether industrial TFAs (iTFAs) and ruminant TFAs (rTFAs) exert the same effect. Unlike even chain saturated FAs, the OCFAs have been inversely associated with T2D risk, but this association is poorly understood. Furthermore, the associations of n-6 PUFAs intake with T2D risk are still debated, while delta-5 desaturase (D5D), a key enzyme in the metabolism of PUFAs, has been consistently related to T2D risk. To better understand these relationships, the FA composition in circulating lipid fractions can be used as biomarkers of dietary intake and metabolism. The exploration of TFAs subtypes in plasma phospholipids and OCFAs and n-6 PUFAs within a wide range of lipid classes may give insights into the pathophysiology of T2D. Aim: This thesis aimed mainly to analyse the association of TFAs, OCFAs and n-6 PUFAs with self-reported dietary intake and prospective T2D risk, using seven types of TFAs in plasma phospholipids and deep lipidomics profiling data from fifteen lipid classes. Methods: A prospective case-cohort study was designed within the European Prospective Investigation into Cancer and Nutrition (EPIC)-Potsdam study, including all the participants who developed T2D (median follow-up 6.5 years) and a random subsample of the full cohort (subcohort: n=1248; T2D cases: n=820). The main analyses included two lipid profiles. The first was an assessment of seven TFA in plasma phospholipids, with a modified method for analysis of FA with very low abundances. The second lipid profile was derived from a high-throughout lipid profiling technology, which identified 940 distinct molecular species and allowed to quantify OCFAs and PUFAs composition across 15 lipid classes. Delta-5 desaturase (D5D) activity was estimated as 20:4/20:3-ratio. Using multivariable Cox regression models, we examined the associations of TFA subtypes with incident T2D and class-specific associations of OCFA and n-6 PUFAs with T2D risk. Results: 16:1n-7t, 18:1n-7t, and c9t11-CLA were positively correlated with the intake of fat-rich dairy foods. iTFA 18:1 isomers were positively correlated with margarine. After adjustment for confounders and other TFAs, higher plasma phospholipid concentrations of two rTFAs were associated with a lower incidence of T2D: 18:1n-7t and t10c12-CLA. In contrast, the rTFA c9t11-CLA was associated with a higher incidence of T2D. rTFA 16:1n-7t and iTFAs (18:1n-6t, 18:1n-9t, 18:2n-6,9t) were not statistically significantly associated with T2D risk. We observed heterogeneous integration of OCFA in different lipid classes, and the contribution of 15:0 versus 17:0 to the total OCFA abundance differed across lipid classes. Consumption of fat-rich dairy and fiber-rich foods were positively and red meat inversely correlated to OCFA abundance in plasma phospholipid classes. In women only, higher abundances of 15:0 in phosphatidylcholines (PC) and diacylglycerols (DG), and 17:0 in PC, lysophosphatidylcholines (LPC), and cholesterol esters (CE) were inversely associated with T2D risk. In men and women, a higher abundance of 15:0 in monoacylglycerols (MG) was also inversely associated with T2D. Conversely, a higher 15:0 concentration in LPC and triacylglycerols (TG) was associated with higher T2D risk in men. Women with a higher concentration of 17:0 as free fatty acids (FFA) also had higher T2D incidence. The integration of n-6 PUFAs in lipid classes was also heterogeneous. 18:2 was highly abundant in phospholipids (particularly PC), CE, and TG; 20:3 represented a small fraction of FA in most lipid classes, and 20:4 accounted for a large proportion of circulating phosphatidylinositol (PI) and phosphatidylethanolamines (PE). Higher concentrations of 18:2 were inversely associated with T2D risk, especially within DG, TG, and LPC. However, 18:2 as part of MG was positively associated with T2D risk. Higher concentrations of 20:3 in phospholipids (PC, PE, PI), FFA, CE, and MG were linked to higher T2D incidence. 20:4 was unrelated to risk in most lipid classes, except positive associations were observed for 20:4 enriched in FFA and PE. The estimated D5D activities in PC, PE, PI, LPC, and CE were inversely associated with T2D and explained variance of estimated D5D activity by genomic variation in the FADS locus was only substantial in those lipid classes. Conclusion: The TFAs' conformation is essential in their relationship to diabetes risk, as indicated by plasma rTFA subtypes concentrations having opposite directions of associations with diabetes risk. Plasma OCFA concentration is linked to T2D risk in a lipid class and sex-specific manner. Plasma n-6 PUFA concentrations are associated differently with T2D incidence depending on the specific FA and the lipid class. Overall, these results highlight the complexity of circulating FAs and their heterogeneous association with T2D risk depending on the specific FA structure, lipid class, and sex. My results extend the evidence of the relationship between diet, lipid metabolism, and subsequent T2D risk. In addition, my work generated several potential new biomarkers of dietary intake and prospective T2D risk. N2 - Die Rolle der Fettsäureaufnahme und des Fettsäurestoffwechsels bei der Prävention von Typ-2-Diabetes (T2D) ist nach wie vor umstritten. Die Fettsäure (FS)-Zusammensetzung in den Blutfettfraktionen kann als Biomarker für die Nahrungsaufnahme und den Stoffwechsel verwendet werden, um die Beziehung zwischen den FS und dem T2D-Risiko besser zu verstehen. Das Hauptziel dieser Arbeit war es, den Zusammenhang zwischen zirkulierenden trans-FS (TFS), ungeradkettigen gesättigten FS (UGFS) und n-6 poly ungesättigte FS (PUFS), die in verschiedenen Lipidklassen angereichert sind, mit dem T2D-Risiko zu untersuchen. Mit einer eingebetten Fall-Kohorten-Studie, die im Rahmen der prospektiven EPIC-Potsdam-Studie konzipiert wurde, untersuchte diese Arbeit zwei Lipidprofile im Hinblick auf das T2D-Risiko: (1) Sieben TFS-Subtypen in Plasma-Phospholipiden und (2) die Zusammensetzung von UGFS und PUFA in 15 Plasma-Lipidklassen. Die Aktivität der Delta-5-Desaturase (D5D) wurde als 20:4/20:3-Verhältnis geschätzt. Assoziationen mit dem Auftreten von T2D wurden mit multivariablen Cox-Regressionsmodellen untersucht. Von den üblicherweise aus Milchprodukten stammenden TFS waren 18:1n-7t und t10c12-CLA mit einer geringeren T2D-Inzidenz, c9t11-CLA mit einer höheren Inzidenz und 16:1n-7t nicht mit dem T2D-Risiko assoziiert. TFS aus industriellen Quellen (18:1n-6t, 18:1n-9t, 18:2n-6t) zeigten keinen statistisch signifikanten Zusammenhang mit dem T2D-Risiko. Die UGFS-Konzentration im Plasma war mit dem T2D-Risiko auf lipidklassen- und geschlechtsspezifische Weise assoziiert, wobei bei Frauen stärkere inverse Zusammenhänge für 15:0 in Monoacylglycerinen (MG), Phosphatidylcholinen (PC) und Diacylglycerinen (DG) sowie für 17:0 in PC, Lysophosphatidylcholinen (LPC) und Cholesterinestern (CE) beobachtet wurden. Höhere Konzentrationen von 18:2 waren in DG, TG und LPC invers mit dem T2D-Risiko assoziiert, während MG(18:2) positiv mit dem T2D-Risiko assoziiert war. Höhere Konzentrationen von 20:3 in Phospholipiden (PC, PE, Phosphatidylinositole (PI)), Fettsäuren (FFS), CE und MG waren mit einer höheren T2D-Inzidenz verbunden. 20:4 stand in den meisten Lipidklassen in keinem statistisch singifikanten Zusammenhang mit dem Risiko, außer bei in FFS und PE angereichertem 20:4, das positiv assoziiert war. Die geschätzten D5D-Aktivitäten in PC, PE, PI, LPC und CE waren invers mit dem T2D-Risiko assoziiert. Zusammenfassend ist die Konformation der TFS für ihren Zusammenhang mit dem Diabetesrisiko entscheidend. Die Assoziationen der UGFS-Plasma-Konzentrationen mit dem T2D-Risiko zeigten lipidklassen- und geschlechtsspezifische Unterschiede. Die Plasma-Konzentrationen der n-6-PUFA waren je nach spezifischer FA und Lipidklasse unterschiedlich mit der T2D-Inzidenz assoziiert. Insgesamt unterstreichen diese Ergebnisse die Komplexität der zirkulierenden FAs und ihren heterogenen Zusammenhang mit dem T2D-Risiko in Abhängigkeit der spezifischen FA-Struktur, der Lipidklasse und des Geschlechtes. KW - fatty acids KW - lipidomics KW - type 2 diabetes KW - trans fatty acids KW - odd chain fatty acids KW - polyunsaturated fatty acids KW - Fettsäuren KW - Lipidomics KW - Typ-2-Diabetes KW - Biomarker KW - Lipidstoffwechsel KW - Trans-Fettsäuren KW - ungeradkettige Fettsäuren KW - poly ungesättigte Fettsäuren Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-581598 ER - TY - THES A1 - Raschke, Stefanie T1 - Characterization of selenium and copper in cell systems of the neurovascular unit T1 - Charakterisierung von Selen und Kupfer in Zellsystemen der neurovaskulären Einheit N2 - The trace elements, selenium (Se) and copper (Cu) play an important role in maintaining normal brain function. Since they have essential functions as cofactors of enzymes or structural components of proteins, an optimal supply as well as a well-defined homeostatic regulation are crucial. Disturbances in trace element homeostasis affect the health status and contribute to the incidence and severity of various diseases. The brain in particular is vulnerable to oxidative stress due to its extensive oxygen consumption and high energy turnover, among other factors. As components of a number of antioxidant enzymes, both elements are involved in redox homeostasis. However, high concentrations are also associated with the occurrence of oxidative stress, which can induce cellular damage. Especially high Cu concentrations in some brain areas are associated with the development and progression of neurodegenerative diseases such as Alzheimer's disease (AD). In contrast, reduced Se levels were measured in brains of AD patients. The opposing behavior of Cu and Se renders the study of these two trace elements as well as the interactions between them being particularly relevant and addressed in this work. N2 - Die Spurenelemente Selen (Se) und Kupfer (Cu) spielen eine wichtige Rolle bei der Aufrechterhaltung einer normalen Ge¬hirnfunktion. Da sie wesentliche Funktionen als Cofaktoren von Enzymen oder Strukturbestandteile von Proteinen haben, sind eine optimale Versorgung sowie eine genau definierte homöostatische Regulierung von entscheidender Bedeutung. Störungen der Spurenelement-homöostase beeinträchtigen den Gesund¬heitszustand und tragen zum Auftreten und zur Schwere verschiedener Krankheiten bei. Insbesondere das Gehirn ist aufgrund seines hohen Sauerstoffverbrauchs und seines hohen Energieumsatzes anfällig für oxi¬dativen Stress. Als Bestandteile einer Reihe von antioxidativen Enzymen sind beide Elemente an der Redox-Homöostase beteiligt. Hohe Konzentrationen werden jedoch auch mit dem Auftreten von oxidati¬vem Stress in Verbindung gebracht, der zu Zellschäden führen kann. Besonders hohe Cu-Konzentrationen in einigen Hirnregionen werden mit der Entwicklung und der Progression neurodegenerativer Erkran¬kungen wie Alzheimer in Verbindung gebracht. Im Gegensatz dazu wurden in den Gehirnen von Alzheimer-Patienten geringere Se-Konzentrationen gemessen. Das gegensätzliche Verhalten von Cu und Se verdeutlicht die Relevanz der Untersuchung dieser beiden Spurenelemente sowie deren Wechselwirkungen und wird in dieser Arbeit thematisiert. KW - selenium KW - copper KW - Selen KW - Kupfer KW - Blut-Hirn-Schranke KW - Neuronen KW - Astrozyten KW - blood-brain barrier KW - neurons KW - astrocytes Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-603666 ER - TY - JOUR A1 - Hauffe, Robert A1 - Rath, Michaela A1 - Agyapong, Wilson A1 - Jonas, Wenke A1 - Vogel, Heike A1 - Schulz, Tim Julius A1 - Schwarz, Maria A1 - Kipp, Anna Patricia A1 - Blüher, Matthias A1 - Kleinridders, André T1 - Obesity Hinders the Protective Effect of Selenite Supplementation on Insulin Signaling JF - Antioxidants N2 - The intake of high-fat diets (HFDs) containing large amounts of saturated long-chain fatty acids leads to obesity, oxidative stress, inflammation, and insulin resistance. The trace element selenium, as a crucial part of antioxidative selenoproteins, can protect against the development of diet-induced insulin resistance in white adipose tissue (WAT) by increasing glutathione peroxidase 3 (GPx3) and insulin receptor (IR) expression. Whether selenite (Se) can attenuate insulin resistance in established lipotoxic and obese conditions is unclear. We confirm that GPX3 mRNA expression in adipose tissue correlates with BMI in humans. Cultivating 3T3-L1 pre-adipocytes in palmitate-containing medium followed by Se treatment attenuates insulin resistance with enhanced GPx3 and IR expression and adipocyte differentiation. However, feeding obese mice a selenium-enriched high-fat diet (SRHFD) only resulted in a modest increase in overall selenoprotein gene expression in WAT in mice with unaltered body weight development, glucose tolerance, and insulin resistance. While Se supplementation improved adipocyte morphology, it did not alter WAT insulin sensitivity. However, mice fed a SRHFD exhibited increased insulin content in the pancreas. Overall, while selenite protects against palmitate-induced insulin resistance in vitro, obesity impedes the effect of selenite on insulin action and adipose tissue metabolism in vivo. KW - selenite KW - insulin KW - adipose tissue KW - obesity KW - insulin resistance Y1 - 2022 U6 - https://doi.org/10.3390/antiox11050862 SN - 2076-3921 VL - 11 SP - 1 EP - 16 PB - MDPI CY - Basel, Schweiz ET - 5 ER - TY - THES A1 - Schell, Mareike T1 - Investigating the effect of Lactobacillus rhamnosus GG on emotional behavior in diet-induced obese C57BL/6N mice T1 - Untersuchung der Wirkung von Lactobacillus rhamnosus GG bei Störungen des emotionalen Verhaltens in einem Mausmodell Diät-induzierter Adipositas N2 - The prevalence of depression and anxiety is increased in obese patients compared to healthy humans, which is partially due to a shared pathogenesis, including insulin resistance and inflammation. These factors are also linked to intestinal dysbiosis. Additionally, the chronic consumption of diets rich in saturated fats results in body weight gain, hormonal resistances and unfavorable changes in the microbiome composition. The intake of Lactobacilli has already been shown to improve dysbiosis along with metabolism and mood. Yet, the beneficial role and the underlying mechanism of Lactobacillus rhamnosus GG (LGG) to improve emotional behavior in established diet-induced obese conditions are, so far, unknown. To characterize the role of LGG in diet-induced obesity, female and male C57BL/6N mice were fed a semi-synthetic low-fat diet (LFD, 10 % kcal from fat) or a conventional high-fat diet (HFD, 45 % kcal from fat) for initial 6 weeks, which was followed by daily oral gavage of vehicle or 1x10^8 CFU of LGG until the end of the experiment. Mice were subjected to basic metabolic and extensive behavioral phenotyping, with a focus on emotional behavior. Moreover, composition of cecal gut microbiome, metabolomic profile in plasma and cerebrospinal fluid was investigated and followed by molecular analyses. Both HFD-feeding and LGG application resulted in sex-specific differences. While LGG prevented the increase of plasma insulin, adrenal gland weight and hyperactivity in diet-induced obese female mice, there was no regulation of anxiodepressive-like behavior. In contrast, metabolism of male mice did not benefit from LGG application, but strikingly, LGG decreased specifically depressive-like behavior in the Mousetail Suspension Test which was confirmed by the Splash Test characterizing motivation for ’self-care’. The microbiome analysis in male mice revealed that HFD-feeding, but not LGG application, altered cecal microbiome composition, indicating a direct effect of LGG on behavioral regulation. However, in female mice, both HFD-feeding and LGG application resulted in changes of microbiome composition, which presumably affected metabolism. Moreover, as diet-induced obese female mice unexpectedly did not exhibit anxiodepressive-like behavior, follow-up analyses were conducted in male mice. Here, HFD-feeding significantly altered abundance of plasma lipids whereas LGG decreased branched chain amino acids which associated with improved emotional behavior. In nucleus accumbens (NAcc) and VTA/SN, which belong to the dopaminergic system, LGG restored HFD-induced decrease of tyrosine hydroxylase, the rate-limiting enzyme in dopamine synthesis, on gene expression level. Lastly, transcriptome analysis in the NAcc identified gene expression of cholecystokinin as a potential mediator of the effect of LGG on HFD-induced emotional alterations. In summary, this thesis revealed the beneficial effects of LGG application on emotional alterations in established diet-induced obesity. Furthermore, both HFD-feeding and LGG treatment exhibited sex-specific effects, resulting in metabolic improvements in female mice while LGG application mitigated depressive-like behavior in obese male mice along with a molecular signature of restored dopamine synthesis and neuropeptide signaling. N2 - n adipösen Patienten liegt eine erhöhte Prävalenz von Depressionen und Angsterkrankungen vor. Dies liegt unter anderem an einer gemeinsamen Pathogenese, der eine Insulinresistenz sowie ein chronischer Entzündungszustand zugrunde liegen. Diese Faktoren sind mit einer intestinalen Dysbiose assoziiert, die auch durch eine Fehlernährung, beispielsweise mit einer fettreichen Diät, hervorgerufen werden kann. Es konnte bereits gezeigt werden, dass die Aufnahme von Laktobazillen nicht nur eine Dysbiose und den Stoffwechsel verbessert, sondern sich auch positiv auf das Gemüt auswirken kann. Ob jedoch Lactobacillus rhamnosus GG in der Lage ist, in einem Zustand der etablierten ernährungsbedingten Fettleibigkeit das emotionale Verhalten zu verbessern und welche Mechanismen zugrunde liegen, ist noch ungeklärt. Um die Rolle von LGG bei ernährungsbedingter Fettleibigkeit zu charakterisieren, wurden weibliche und männliche C57BL/6N Mäuse mit einer semi-synthetischen Niedrigfettdiät (LFD, 10 % kcal aus Fett) oder einer konventionellen Hochfettdiät (HFD, 45 % kcal aus Fett) für die ersten 6 Wochen gefüttert, um den Zustand einer Adipositas zu etablieren. Anschließend haben die Mäuse eine tägliche perorale Applikation eines Vehikels oder 1x10^8 KBE LGG bis zum Versuchsende erhalten. Die Mäuse wurden einer allgemeinen metabolischen Charakterisierung und einer umfassenden Verhaltensphänotypisierung unterzogen, die Aufschlüsse über das emotionale Verhalten liefern sollen. Darüber hinaus wurde die Zusammensetzung des Darmmikrobioms bestimmt, im Plasma und in der Zerebrospinalflüssigkeit das Metabolitprofil untersucht und durch molekulare Analysen ergänzt. Sowohl die HFD-Fütterung als auch die LGG-Applikation führten zu geschlechtsspezifischen Unterschieden. Während LGG den diätinduzierten Anstieg von Plasmainsulin, ein erhöhtes Nebennierengewicht und Hyperaktivität in weiblichen Mäusen verhinderte, wurde das emotionale Verhalten nicht reguliert. Im Gegensatz dazu profitierte der Stoffwechsel männlicher Mäuse nicht von der LGG-Anwendung, jedoch war LGG in der Lage, spezifisch das depressiv-ähnliches Verhalten zu verbessern, was durch eine Analyse des zielgerichteten Verhaltens bestätigt wurde. Die Mikrobiomanalyse ergab, dass die Diät, jedoch nicht LGG, die Zusammensetzung des Darmmikrobioms in männlichen Mäusen verändert, was auf eine direkte Rolle von LGG in der Verhaltensregulation hindeutet. Im Vergleich dazu war das Darmmikrobiom in weiblichen Mäusen durch die Diät als auch durch LGG verändert, was zu den positiven Veränderungen der Stoffwechselparameter geführt haben könnte. Da weibliche Mäuse weder durch die HFD-Fütterung noch durch die LGG-Gabe einen Effekt auf emotionales Verhalten aufwiesen, wurden die Folgeanalysen bei männlichen Mäusen durchgeführt. Während die HFD-Fütterung das Vorkommen von Plasmalipiden veränderte, lagen aufgrund der LGG-Gabe verzweigtkettige Aminosäuren verringert vor, was mit einem verbessertem emotionalen Verhalten assoziierte. In den dopaminergen Gehirnregionen Nucleus Accumbens (NAcc) und VTA/SN revertierte LGG die HFD-induzierte Reduktion der Tyrosinhydroxylase Genexpression, des geschwindigkeitsbegrenzenden Enzyms in der Dopaminsynthese. Abschließend wurde eine Transkriptomanalyse mittels RNA Sequencing durchgeführt, welche die Genexpression von Cholezystokinin im NAcc als potenzieller Mediator in der Wirkung von LGG bei HFD-induzierten emotionalen Veränderungen identifizierte. Zusammenfassend konnten in dieser Arbeit die positiven Auswirkungen der LGG-Gabe auf emotionales Verhalten bei etablierter ernährungsbedingter Fettleibigkeit gezeigt werden.. Sowohl die HFD-Fütterung als auch die LGG-Gabe führten zu geschlechtsspezifischen Effekten, was zu Stoffwechselverbesserungen bei weiblichen Mäusen führte, während die LGG-Gabe das depressiv-ähnliche Verhalten bei männlichen Mäusen abschwächte. Zudem wurden auf Genexpressionsebene Tyrosinhydroxylase und Cholezystokinin identifiziert, die potentiell den Effekt von LGG auf das emotionale Verhalten in einem Modell etablierter ernährungsbedingter Fettleibigkeit vermitteln. KW - obesity KW - insulin resistance KW - probiotics KW - lactobacillus KW - depression KW - emotionality Y1 - 2022 ER - TY - JOUR A1 - Neuschäfer-Rube, Frank A1 - Pathe-Neuschäfer-Rube, Andrea A1 - Püschel, Gerhard Paul T1 - Discrimination of the activity of low-affinity wild-type and high-affinity mutant recombinant BoNT/B by a SIMA cell-based reporter release assay JF - Toxins N2 - Botulinum neurotoxin (BoNT) is used for the treatment of a number of ailments. The activity of the toxin that is isolated from bacterial cultures is frequently tested in the mouse lethality assay. Apart from the ethical concerns inherent to this assay, species-specific differences in the affinity for different BoNT serotypes give rise to activity results that differ from the activity in humans. Thus, BoNT/B is more active in mice than in humans. The current study shows that the stimulus-dependent release of a luciferase from a differentiated human neuroblastoma–based reporter cell line (SIMA-hPOMC1-26-Gluc) was inhibited by clostridial and recombinant BoNT/A to the same extent, whereas both clostridial and recombinant BoNT/B inhibited the release to a lesser extent and only at much higher concentrations, reflecting the low activity of BoNT/B in humans. By contrast, the genetically modified BoNT/B-MY, which has increased affinity for human synaptotagmin, and the BoNT/B protein receptor inhibited luciferase release effectively and with an EC50 comparable to recombinant BoNT/A. This was due to an enhanced uptake into the reporter cells of BoNT/B-MY in comparison to the recombinant wild-type toxin. Thus, the SIMA-hPOMC1-26-Gluc cell assay is a versatile tool to determine the activity of different BoNT serotypes providing human-relevant dose-response data. KW - cell-based assay KW - genetically modified BoNT KW - BoNT/B uptake Y1 - 2022 U6 - https://doi.org/10.3390/toxins14010065 SN - 2072-6651 VL - 14 SP - 1 EP - 11 PB - MDPI CY - Basel, Schweiz ET - 1 ER - TY - GEN A1 - Neuschäfer-Rube, Frank A1 - Pathe-Neuschäfer-Rube, Andrea A1 - Püschel, Gerhard Paul T1 - Discrimination of the Activity of Low-Affinity Wild-Type and High-Affinity Mutant Recombinant BoNT/B by a SIMA Cell-Based Reporter Release Assay T2 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - Botulinum neurotoxin (BoNT) is used for the treatment of a number of ailments. The activity of the toxin that is isolated from bacterial cultures is frequently tested in the mouse lethality assay. Apart from the ethical concerns inherent to this assay, species-specific differences in the affinity for different BoNT serotypes give rise to activity results that differ from the activity in humans. Thus, BoNT/B is more active in mice than in humans. The current study shows that the stimulus-dependent release of a luciferase from a differentiated human neuroblastoma–based reporter cell line (SIMA-hPOMC1-26-Gluc) was inhibited by clostridial and recombinant BoNT/A to the same extent, whereas both clostridial and recombinant BoNT/B inhibited the release to a lesser extent and only at much higher concentrations, reflecting the low activity of BoNT/B in humans. By contrast, the genetically modified BoNT/B-MY, which has increased affinity for human synaptotagmin, and the BoNT/B protein receptor inhibited luciferase release effectively and with an EC50 comparable to recombinant BoNT/A. This was due to an enhanced uptake into the reporter cells of BoNT/B-MY in comparison to the recombinant wild-type toxin. Thus, the SIMA-hPOMC1-26-Gluc cell assay is a versatile tool to determine the activity of different BoNT serotypes providing human-relevant dose-response data. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 1257 KW - cell-based assay KW - genetically modified BoNT KW - BoNT/B uptake Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-558032 SN - 1866-8372 SP - 1 EP - 11 PB - Universitätsverlag Potsdam CY - Potsdam ER - TY - GEN A1 - Michaud Schjeide, Brit-Maren A1 - Schenke, Maren A1 - Seeger, Bettina A1 - Püschel, Gerhard Paul T1 - Validation of a Novel Double Control Quantitative Copy Number PCR Method to Quantify Off-Target Transgene Integration after CRISPR-Induced DNA Modification T2 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - In order to improve a recently established cell-based assay to assess the potency of botulinum neurotoxin, neuroblastoma-derived SiMa cells and induced pluripotent stem-cells (iPSC) were modified to incorporate the coding sequence of a reporter luciferase into a genetic safe harbor utilizing CRISPR/Cas9. A novel method, the double-control quantitative copy number PCR (dc-qcnPCR), was developed to detect off-target integrations of donor DNA. The donor DNA insertion success rate and targeted insertion success rate were analyzed in clones of each cell type. The dc-qcnPCR reliably quantified the copy number in both cell lines. The probability of incorrect donor DNA integration was significantly increased in SiMa cells in comparison to the iPSCs. This can possibly be explained by the lower bundled relative gene expression of a number of double-strand repair genes (BRCA1, DNA2, EXO1, MCPH1, MRE11, and RAD51) in SiMa clones than in iPSC clones. The dc-qcnPCR offers an efficient and cost-effective method to detect off-target CRISPR/Cas9-induced donor DNA integrations. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 1269 KW - CRISPR editing validation KW - copy number analyses KW - homology-directed repair KW - homologous recombination deficiency Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-561755 SN - 1866-8372 SP - 1 EP - 14 PB - Universitätsverlag Potsdam CY - Potsdam ER - TY - THES A1 - Bishop, Christopher Allen T1 - Influence of dairy intake on odd-chain fatty acids and energy metabolism T1 - Einfluss der Milchaufnahme auf ungeradkettige Fettsäuren und Energiestoffwechsel N2 - As of late, epidemiological studies have highlighted a strong association of dairy intake with lower disease risk, and similarly with an increased amount of odd-chain fatty acids (OCFA). While the OCFA also demonstrate inverse associations with disease incidence, the direct dietary sources and mode of action of the OCFA remain poorly understood. The overall aim of this thesis was to determine the impact of two main fractions of dairy, milk fat and milk protein, on OCFA levels and their influence on health outcomes under high-fat (HF) diet conditions. Both fractions represent viable sources of OCFA, as milk fats contain a significant amount of OCFA and milk proteins are high in branched chain amino acids (BCAA), namely valine (Val) and isoleucine (Ile), which can produce propionyl-CoA (Pr-CoA), a precursor for endogenous OCFA synthesis, while leucine (Leu) does not. Additionally, this project sought to clarify the specific metabolic effects of the OCFA heptadecanoic acid (C17:0). Both short-term and long-term feeding studies were performed using male C57BL/6JRj mice fed HF diets supplemented with milk fat or C17:0, as well as milk protein or individual BCAA (Val; Leu) to determine their influences on OCFA and metabolic health. Short-term feeding revealed that both milk fractions induce OCFA in vivo, and the increases elicited by milk protein could be, in part, explained by Val intake. In vitro studies using primary hepatocytes further showed an induction of OCFA after Val treatment via de novo lipogenesis and increased α-oxidation. In the long-term studies, both milk fat and milk protein increased hepatic and circulating OCFA levels; however, only milk protein elicited protective effects on adiposity and hepatic fat accumulation—likely mediated by the anti-obesogenic effects of an increased Leu intake. In contrast, Val feeding did not increase OCFA levels nor improve obesity, but rather resulted in glucotoxicity-induced insulin resistance in skeletal muscle mediated by its metabolite 3-hydroxyisobutyrate (3-HIB). Finally, while OCFA levels correlated with improved health outcomes, C17:0 produced negligible effects in preventing HF-diet induced health impairments. The results presented herein demonstrate that the beneficial health outcomes associated with dairy intake are likely mediated through the effects of milk protein, while OCFA levels are likely a mere association and do not play a significant causal role in metabolic health under HF conditions. Furthermore, the highly divergent metabolic effects of the two BCAA, Leu and Val, unraveled herein highlight the importance of protein quality. N2 - In den letzten Jahren haben epidemiologische Studien einen Zusammenhang zwischen dem Verzehr von Milchprodukten und einem geringeren Krankheitsrisiko sowie einem erhöhten Gehalt an ungeradzahligen Fettsäuren (OCFA) aufgezeigt. Während die OCFA ebenfalls mit einem verminderten Krankheitsrisiko assoziiert sind, ist über die direkten diätetischen Quellen und die physiologische Rolle der OCFA noch wenig bekannt. Das Hauptziel dieser Arbeit war die Untersuchung der Bedeutung der beiden Hauptfraktionen von Milchprodukten, Milchfett und Milchprotein, für den OCFA-Gehalt und ihren Einfluss auf die Gesundheit unter den Bedingungen einer fettreichen Ernährung (HF). Beide Fraktionen sind mögliche OCFA-Quellen, da Milchfette selber signifikante Mengen an OCFA enthalten und Milchproteine einen hohen Anteil an verzweigtkettigen Aminosäuren (BCAA) haben, nämlich Valin (Val) und Isoleucin (Ile), aus denen Propionyl-CoA (Pr-CoA), eine Vorstufe für die endogene OCFA-Synthese, gebildet werden kann, während das für Leucin (Leu) nicht der Fall ist. Außerdem sollten in diesem Projekt die spezifischen metabolischen Auswirkungen der OCFA Heptadecansäure (C17:0) geklärt werden. Dazu wurden Kurzzeit- und Langzeit-Fütterungsstudien mit männlichen C57BL/6JRj-Mäusen durchgeführt, die mit HF-Diäten gefüttert wurden, die mit Milchfett oder C17:0 sowie mit Milchprotein oder einzelnen BCAA (Val; Leu) supplementiert wurden, um deren Einfluss auf die OCFA und die metabolische Gesundheit zu untersuchen. Kurzzeitstudien zeigten, dass beide Milchfraktionen OCFA induzieren, wobei die Erhöhungen durch Milchprotein teilweise durch die Val-Aufnahme erklärt werden konnten. Studien mit primären Hepatozyten zeigten außerdem eine Induktion von OCFA nach Val-Behandlung durch de-novo-Lipogenese und eine erhöhte α-Oxidation. In den Langzeitstudien erhöhten Milchfett und Milchprotein die hepatischen und zirkulierenden OCFA-Spiegel; allerdings hatte nur Milchprotein eine schützende Wirkung auf Adipositas und hepatische Fettansammlung, wahrscheinlich vermittelt durch eine erhöhte Leu-Aufnahme. Im Gegensatz dazu hatte die Val-Supplementierung keinen Einfluss auf die OCFA-Spiegel oder die Entwicklung von Adipositas, führte jedoch zu einer durch Glukotoxizität induzierten Insulinresistenz im Skelettmuskel, vermittelt durch den Val-Metaboliten 3-Hydroxyisobutyrat (3-HIB). Die C17:0-Supplementierung schließlich hatte keine Auswirkungen auf die HF-Diät-induzierte Adipositas und assoziierten Gesundheitsbeeinträchtigungen. Die hier vorgestellten Ergebnisse zeigen, dass die mit dem Verzehr von Milchprodukten verbundenen positiven gesundheitlichen Auswirkungen wahrscheinlich durch die Wirkung von Milchprotein vermittelt werden, während der OCFA-Gehalt wahrscheinlich nur eine Assoziation darstellt und keine signifikante kausale Rolle für die metabolische Gesundheit unter HF-Bedingungen spielt. Die hier aufgeklärten deutlich unterschiedlichen metabolischen Auswirkungen der beiden BCAA Leu und Val unterstreichen zudem die Bedeutung der Proteinqualität. KW - odd chain fatty acids KW - branched chain amino acids KW - protein KW - dairy intake KW - obesity KW - verzweigtkettige Aminosäuren KW - Milcheinnahme KW - Adipositas KW - ungeradkettige Fettsäuren KW - Protein Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-561541 ER - TY - GEN A1 - Hauffe, Robert A1 - Rath, Michaela A1 - Agyapong, Wilson A1 - Jonas, Wenke A1 - Vogel, Heike A1 - Schulz, Tim Julius A1 - Schwarz, Maria A1 - Kipp, Anna Patricia A1 - Blüher, Matthias A1 - Kleinridders, André T1 - Obesity Hinders the Protective Effect of Selenite Supplementation on Insulin Signaling T2 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - The intake of high-fat diets (HFDs) containing large amounts of saturated long-chain fatty acids leads to obesity, oxidative stress, inflammation, and insulin resistance. The trace element selenium, as a crucial part of antioxidative selenoproteins, can protect against the development of diet-induced insulin resistance in white adipose tissue (WAT) by increasing glutathione peroxidase 3 (GPx3) and insulin receptor (IR) expression. Whether selenite (Se) can attenuate insulin resistance in established lipotoxic and obese conditions is unclear. We confirm that GPX3 mRNA expression in adipose tissue correlates with BMI in humans. Cultivating 3T3-L1 pre-adipocytes in palmitate-containing medium followed by Se treatment attenuates insulin resistance with enhanced GPx3 and IR expression and adipocyte differentiation. However, feeding obese mice a selenium-enriched high-fat diet (SRHFD) only resulted in a modest increase in overall selenoprotein gene expression in WAT in mice with unaltered body weight development, glucose tolerance, and insulin resistance. While Se supplementation improved adipocyte morphology, it did not alter WAT insulin sensitivity. However, mice fed a SRHFD exhibited increased insulin content in the pancreas. Overall, while selenite protects against palmitate-induced insulin resistance in vitro, obesity impedes the effect of selenite on insulin action and adipose tissue metabolism in vivo. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 1267 KW - selenite KW - insulin KW - adipose tissue KW - obesity KW - insulin resistance Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-561709 SN - 1866-8372 SP - 1 EP - 16 PB - Universitätsverlag Potsdam CY - Potsdam ER - TY - JOUR A1 - Püschel, Gerhard A1 - Klauder, Julia A1 - Henkel-Oberländer, Janin T1 - Macrophages, low-grade inflammation, insulin resistance and hyperinsulinemia BT - A mutual ambiguous relationship in the development of metabolic diseases JF - Journal of Clinical Medicine : open access journal N2 - Metabolic derangement with poor glycemic control accompanying overweight and obesity is associated with chronic low-grade inflammation and hyperinsulinemia. Macrophages, which present a very heterogeneous population of cells, play a key role in the maintenance of normal tissue homeostasis, but functional alterations in the resident macrophage pool as well as newly recruited monocyte-derived macrophages are important drivers in the development of low-grade inflammation. While metabolic dysfunction, insulin resistance and tissue damage may trigger or advance pro-inflammatory responses in macrophages, the inflammation itself contributes to the development of insulin resistance and the resulting hyperinsulinemia. Macrophages express insulin receptors whose downstream signaling networks share a number of knots with the signaling pathways of pattern recognition and cytokine receptors, which shape macrophage polarity. The shared knots allow insulin to enhance or attenuate both pro-inflammatory and anti-inflammatory macrophage responses. This supposedly physiological function may be impaired by hyperinsulinemia or insulin resistance in macrophages. This review discusses the mutual ambiguous relationship of low-grade inflammation, insulin resistance, hyperinsulinemia and the insulin-dependent modulation of macrophage activity with a focus on adipose tissue and liver. KW - NAFLD/MAFLD KW - type 2 diabetes KW - obesity KW - vicious cycle KW - TLR signaling KW - M1/M2 differentiation KW - Akt pathway Y1 - 2022 U6 - https://doi.org/10.3390/jcm11154358 SN - 2077-0383 VL - 11 IS - 15 SP - 1 EP - 30 PB - MDPI CY - Basel, Schweiz ER - TY - GEN A1 - Kilercik, Meltem A1 - Ucal, Yasemin A1 - Serdar, Muhittin A1 - Serteser, Mustafa A1 - Ozpinar, Aysel A1 - Schweigert, Florian J. T1 - Zinc protoporphyrin levels in COVID-19 are indicative of iron deficiency and potential predictor of disease severity T2 - Postprints der Universität Potsdam Mathematisch-Naturwissenschaftliche Reihe N2 - Background Coronavirus disease (COVID-19) has a severe impact on all aspects of patient care. Among the numerous biomarkers of potential validity for diagnostic and clinical management of COVID-19 are biomarkers at the interface of iron metabolism and inflammation. Methods The follow-up study included 54 hospitalized patients with laboratory-confirmed COVID-19 with a moderate and severe/critical form of the disease. Iron deficiency specific biomarkers such as iron, ferritin, transferrin receptor, hepcidin, and zinc protoporphyrin (ZnPP) as well as relevant markers of inflammation were evaluated twice: in the first five days when the patient was admitted to the hospital and during five to 15 days; and their validity to diagnose iron deficiency was further assessed. The regression and Receiver Operating Characteristics (ROC) analyses were performed to evaluate the prognosis and determine the probability for predicting the severity of the disease in the first five days of COVID-19. Results Based on hemoglobin values, anemia was observed in 21 of 54 patients. Of all iron deficiency anemia-related markers, only ZnPP was significantly elevated (P<0.001) in the anemic group. When patients were grouped according to the severity of disease, slight differences in hemoglobin or other anemia-related parameters could be observed. However, the levels of ZnPP were significantly increased in the severely ill group of patients. The ratio of ZnPP to lymphocyte count (ZnPP/L) had a discrimination power stronger than the neutrophil to lymphocyte count ratio (N/L) to determine disease severity. Additionally, only two markers were independently associated with the severity of COVID-19 in logistic regression analysis; D-dimer (OR (5.606)(95% CI 1.019–30.867)) and ZnPP/L ratio (OR (74.313) (95% CI 1.081–5108.103)). Conclusions For the first time ZnPP in COVID-19 patients were reported in this study. Among all iron-related markers tested, ZnPP was the only one that was associated with anemia as based on hemoglobin. The increase in ZnPP might indicate that the underlying cause of anemia in COVID-19 patients is not only due to the inflammation but also of nutritional origin. Additionally, the ZnPP/L ratio might be a valid prognostic marker for the severity of COVID-19. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 1232 KW - COVID 19 KW - Hemoglobin KW - Ferritin KW - Lymphocytes KW - Anemia KW - Reticulocytes KW - Iron deficiency anemia KW - Neutrophils Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-544730 SN - 1866-8372 IS - 2 ER - TY - GEN A1 - Hauffe, Robert A1 - Rath, Michaela A1 - Schell, Mareike A1 - Ritter, Katrin A1 - Kappert, Kai A1 - Deubel, Stefanie A1 - Ott, Christiane A1 - Jähnert, Markus A1 - Jonas, Wenke A1 - Schürmann, Annette A1 - Kleinridders, André T1 - HSP60 reduction protects against diet-induced obesity by modulating energy metabolism in adipose tissue T2 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - Objective Insulin regulates mitochondrial function, thereby propagating an efficient metabolism. Conversely, diabetes and insulin resistance are linked to mitochondrial dysfunction with a decreased expression of the mitochondrial chaperone HSP60. The aim of this investigation was to determine the effect of a reduced HSP60 expression on the development of obesity and insulin resistance. Methods Control and heterozygous whole-body HSP60 knockout (Hsp60+/−) mice were fed a high-fat diet (HFD, 60% calories from fat) for 16 weeks and subjected to extensive metabolic phenotyping. To understand the effect of HSP60 on white adipose tissue, microarray analysis of gonadal WAT was performed, ex vivo experiments were performed, and a lentiviral knockdown of HSP60 in 3T3-L1 cells was conducted to gain detailed insights into the effect of reduced HSP60 levels on adipocyte homeostasis. Results Male Hsp60+/− mice exhibited lower body weight with lower fat mass. These mice exhibited improved insulin sensitivity compared to control, as assessed by Matsuda Index and HOMA-IR. Accordingly, insulin levels were significantly reduced in Hsp60+/− mice in a glucose tolerance test. However, Hsp60+/− mice exhibited an altered adipose tissue metabolism with elevated insulin-independent glucose uptake, adipocyte hyperplasia in the presence of mitochondrial dysfunction, altered autophagy, and local insulin resistance. Conclusions We discovered that the reduction of HSP60 in mice predominantly affects adipose tissue homeostasis, leading to beneficial alterations in body weight, body composition, and adipocyte morphology, albeit exhibiting local insulin resistance. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 1235 KW - Mitochondria KW - Stress response KW - Obesity KW - Glucose homeostasis KW - Insulin resistance KW - Adipose tissue Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-548002 SN - 1866-8372 SP - 1 EP - 14 PB - Universitätsverlag Potsdam CY - Potsdam ER - TY - JOUR A1 - Fechner, Carolin A1 - Hackethal, Christin A1 - Höpfner, Tobias A1 - Dietrich, Jessica A1 - Bloch, Dorit A1 - Lindtner, Oliver A1 - Sarvan, Irmela T1 - Results of the BfR MEAL Study BT - in Germany, mercury is mostly contained in fish and seafood while cadmium, lead, and nickel are present in a broad spectrum of foods JF - Food chemistry: X N2 - The BfR MEAL Study provides representative levels of substances in foods consumed in Germany. Mercury, cadmium, lead, and nickel are contaminants present in foods introduced by environmental and industrial processes. Levels of these elements were investigated in 356 foods. Foods were purchased representatively, prepared as consumed and pooled with similar foods before analysis. Highest mean levels of mercury were determined in fish and seafood, while high levels of cadmium, lead, and nickel were present in cocoa products and legumes, nuts, oilseeds, and spices. The sampling by region, season, and production type showed minor differences in element levels for specific foods, however no tendency over all foods or for some food groups was apparent. The data on mercury, cadmium, lead, and nickel provide a comprehensive basis for chronic dietary exposure assessment of the population in Germany. All levels found were below regulated maximum levels. KW - Total diet study KW - BfR MEAL Study KW - Metals KW - Contaminants KW - Unprepared and KW - prepared foods KW - Regionality KW - Seasonality KW - Organic and conventional type of production Y1 - 2022 U6 - https://doi.org/10.1016/j.fochx.2022.100326 SN - 2590-1575 VL - 14 PB - Elsevier CY - Amsterdam ER - TY - JOUR A1 - Knoche, Lisa A1 - Lisec, Jan A1 - Schwerdtle, Tanja A1 - Koch, Matthias T1 - LC-HRMS-Based identification of transformation products of the drug salinomycin generated by electrochemistry and liver microsome JF - Antibiotics N2 - The drug salinomycin (SAL) is a polyether antibiotic and used in veterinary medicine as coccidiostat and growth promoter. Recently, SAL was suggested as a potential anticancer drug. However, transformation products (TPs) resulting from metabolic and environmental degradation of SAL are incompletely known and structural information is missing. In this study, we therefore systematically investigated the formation and identification of SAL derived TPs using electrochemistry (EC) in an electrochemical reactor and rat and human liver microsome incubation (RLM and HLM) as TP generating methods. Liquid chromatography (LC) coupled to high-resolution mass spectrometry (HRMS) was applied to determine accurate masses in a suspected target analysis to identify TPs and to deduce occurring modification reactions of derived TPs. A total of 14 new, structurally different TPs were found (two EC-TPs, five RLM-TPs, and 11 HLM-TPs). The main modification reactions are decarbonylation for EC-TPs and oxidation (hydroxylation) for RLM/HLM-TPs. Of particular interest are potassium-based TPs identified after liver microsome incubation because these might have been overlooked or declared as oxidated sodium adducts in previous, non-HRMS-based studies due to the small mass difference between K and O + Na of 21 mDa. The MS fragmentation pattern of TPs was used to predict the position of identified modifications in the SAL molecule. The obtained knowledge regarding transformation reactions and novel TPs of SAL will contribute to elucidate SAL-metabolites with regards to structural prediction. KW - salinomycin KW - ionophore antibiotics KW - transformation product KW - electrochemistry KW - rat KW - human liver microsomes KW - HRMS Y1 - 2022 U6 - https://doi.org/10.3390/antibiotics11020155 SN - 2079-6382 VL - 11 IS - 2 PB - MDPI CY - Basel ER - TY - JOUR A1 - Aga-Barfknecht, Heja A1 - Soultoukis, George A. A1 - Stadion, Mandy A1 - Garcia-Carrizo, Francisco A1 - Jähnert, Markus A1 - Gottmann, Pascal A1 - Vogel, Heike A1 - Schulz, Tim Julius A1 - Schürmann, Annette T1 - Distinct adipogenic and fibrogenic differentiation capacities of mesenchymal stromal cells from pancreas and white adipose tissue JF - International journal of molecular sciences N2 - Pancreatic steatosis associates with beta-cell failure and may participate in the development of type-2-diabetes. Our previous studies have shown that diabetes-susceptible mice accumulate more adipocytes in the pancreas than diabetes-resistant mice. In addition, we have demonstrated that the co-culture of pancreatic islets and adipocytes affect insulin secretion. The aim of this current study was to elucidate if and to what extent pancreas-resident mesenchymal stromal cells (MSCs) with adipogenic progenitor potential differ from the corresponding stromal-type cells of the inguinal white adipose tissue (iWAT). miRNA (miRNome) and mRNA expression (transcriptome) analyses of MSCs isolated by flow cytometry of both tissues revealed 121 differentially expressed miRNAs and 1227 differentially expressed genes (DEGs). Target prediction analysis estimated 510 DEGs to be regulated by 58 differentially expressed miRNAs. Pathway analyses of DEGs and miRNA target genes showed unique transcriptional and miRNA signatures in pancreas (pMSCs) and iWAT MSCs (iwatMSCs), for instance fibrogenic and adipogenic differentiation, respectively. Accordingly, iwatMSCs revealed a higher adipogenic lineage commitment, whereas pMSCs showed an elevated fibrogenesis. As a low degree of adipogenesis was also observed in pMSCs of diabetes-susceptible mice, we conclude that the development of pancreatic steatosis has to be induced by other factors not related to cell-autonomous transcriptomic changes and miRNA-based signals. KW - MSCs KW - fatty pancreas KW - WAT KW - lineage commitment KW - transcriptomics KW - miRNAs Y1 - 2022 U6 - https://doi.org/10.3390/ijms23042108 SN - 1422-0067 VL - 23 IS - 4 PB - Molecular Diversity Preservation International CY - Basel ER - TY - GEN A1 - Sagu Tchewonpi, Sorel A1 - Huschek, Gerd A1 - Waldbach Braga, Tess A1 - Rackiewicz, Michal A1 - Homann, Thomas A1 - Rawel, Harshadrai Manilal T1 - Design of Experiment (DoE) for Optimization of HPLC Conditions for the Simultaneous Fractionation of Seven α-Amylase/Trypsin Inhibitors from Wheat (Triticum aestivum L.) T2 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - Wheat alpha-amylase/trypsin inhibitors remain a subject of interest considering the latest findings showing their implication in wheat-related non-celiac sensitivity (NCWS). Understanding their functions in such a disorder is still unclear and for further study, the need for pure ATI molecules is one of the limiting problems. In this work, a simplified approach based on the successive fractionation of ATI extracts by reverse phase and ion exchange chromatography was developed. ATIs were first extracted from wheat flour using a combination of Tris buffer and chloroform/methanol methods. The separation of the extracts on a C18 column generated two main fractions of interest F1 and F2. The response surface methodology with the Doehlert design allowed optimizing the operating parameters of the strong anion exchange chromatography. Finally, the seven major wheat ATIs namely P01083, P17314, P16850, P01085, P16851, P16159, and P83207 were recovered with purity levels (according to the targeted LC-MS/MS analysis) of 98.2 ± 0.7; 98.1 ± 0.8; 97.9 ± 0.5; 95.1 ± 0.8; 98.3 ± 0.4; 96.9 ± 0.5, and 96.2 ± 0.4%, respectively. MALDI-TOF-MS analysis revealed single peaks in each of the pure fractions and the mass analysis yielded deviations of 0.4, 1.9, 0.1, 0.2, 0.2, 0.9, and 0.1% between the theoretical and the determined masses of P01083, P17314, P16850, P01085, P16851, P16159, and P83207, respectively. Overall, the study allowed establishing an efficient purification process of the most important wheat ATIs. This paves the way for further in-depth investigation of the ATIs to gain more knowledge related to their involvement in NCWS disease and to allow the absolute quantification in wheat samples. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 1260 KW - wheat KW - α-amylase/trypsin inhibitors KW - fractionation KW - purification KW - reversed-phase chromatography KW - ion-exchange chromatography KW - design of experiment KW - LC–MS/MS KW - MALDI-TOF-MS Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-559282 SN - 1866-8372 SP - 1 EP - 18 PB - Universitätsverlag Potsdam CY - Potsdam ER - TY - JOUR A1 - Sagu Tchewonpi, Sorel A1 - Huschek, Gerd A1 - Waldbach Braga, Tess A1 - Rackiewicz, Michal A1 - Homann, Thomas A1 - Rawel, Harshadrai Manilal T1 - Design of Experiment (DoE) for Optimization of HPLC Conditions for the Simultaneous Fractionation of Seven α-Amylase/Trypsin Inhibitors from Wheat (Triticum aestivum L.) JF - Processes : open access journal N2 - Wheat alpha-amylase/trypsin inhibitors remain a subject of interest considering the latest findings showing their implication in wheat-related non-celiac sensitivity (NCWS). Understanding their functions in such a disorder is still unclear and for further study, the need for pure ATI molecules is one of the limiting problems. In this work, a simplified approach based on the successive fractionation of ATI extracts by reverse phase and ion exchange chromatography was developed. ATIs were first extracted from wheat flour using a combination of Tris buffer and chloroform/methanol methods. The separation of the extracts on a C18 column generated two main fractions of interest F1 and F2. The response surface methodology with the Doehlert design allowed optimizing the operating parameters of the strong anion exchange chromatography. Finally, the seven major wheat ATIs namely P01083, P17314, P16850, P01085, P16851, P16159, and P83207 were recovered with purity levels (according to the targeted LC-MS/MS analysis) of 98.2 ± 0.7; 98.1 ± 0.8; 97.9 ± 0.5; 95.1 ± 0.8; 98.3 ± 0.4; 96.9 ± 0.5, and 96.2 ± 0.4%, respectively. MALDI-TOF-MS analysis revealed single peaks in each of the pure fractions and the mass analysis yielded deviations of 0.4, 1.9, 0.1, 0.2, 0.2, 0.9, and 0.1% between the theoretical and the determined masses of P01083, P17314, P16850, P01085, P16851, P16159, and P83207, respectively. Overall, the study allowed establishing an efficient purification process of the most important wheat ATIs. This paves the way for further in-depth investigation of the ATIs to gain more knowledge related to their involvement in NCWS disease and to allow the absolute quantification in wheat samples. KW - wheat KW - α-amylase/trypsin inhibitors KW - fractionation KW - purification KW - reversed-phase chromatography KW - ion-exchange chromatography KW - design of experiment KW - LC–MS/MS KW - MALDI-TOF-MS Y1 - 2022 U6 - https://doi.org/10.3390/pr10020259 SN - 2227-9717 VL - 10 SP - 1 EP - 18 PB - MDPI CY - Basel, Schweiz ET - 2 ER - TY - JOUR A1 - Pedro Ernesto, Pinho Tavares Leal A1 - da Silva, Alexandre Alves A1 - Rocha-Gomes, Arthur A1 - Riul, Tania Regina A1 - Cunha, Rennan Augusto A1 - Reichetzeder, Christoph A1 - Villela, Daniel Campos T1 - High-salt diet in the pre- and postweaning periods leads to amygdala oxidative stress and changes in locomotion and anxiety-like behaviors of male wistar rats JF - Frontiers in behavioral neuroscience N2 - High-salt (HS) diets have recently been linked to oxidative stress in the brain, a fact that may be a precursor to behavioral changes, such as those involving anxiety-like behavior. However, to the best of our knowledge, no study has evaluated the amygdala redox status after consuming a HS diet in the pre- or postweaning periods. This study aimed to evaluate the amygdala redox status and anxiety-like behaviors in adulthood, after inclusion of HS diet in two periods: preconception, gestation, and lactation (preweaning); and only after weaning (postweaning). Initially, 18 females and 9 male Wistar rats received a standard (n = 9 females and 4 males) or a HS diet (n = 9 females and 5 males) for 120 days. After mating, females continued to receive the aforementioned diets during gestation and lactation. Weaning occurred at 21-day-old Wistar rats and the male offspring were subdivided: control-control (C-C)-offspring of standard diet fed dams who received a standard diet after weaning (n = 9-11), control-HS (C-HS)-offspring of standard diet fed dams who received a HS diet after weaning (n = 9-11), HS-C-offspring of HS diet fed dams who received a standard diet after weaning (n = 9-11), and HS-HS-offspring of HS diet fed dams who received a HS diet after weaning (n = 9-11). At adulthood, the male offspring performed the elevated plus maze and open field tests. At 152-day-old Wistar rats, the offspring were euthanized and the amygdala was removed for redox state analysis. The HS-HS group showed higher locomotion and rearing frequency in the open field test. These results indicate that this group developed hyperactivity. The C-HS group had a higher ratio of entries and time spent in the open arms of the elevated plus maze test in addition to a higher head-dipping frequency. These results suggest less anxiety-like behaviors. In the analysis of the redox state, less activity of antioxidant enzymes and higher levels of the thiobarbituric acid reactive substances (TBARS) in the amygdala were shown in the amygdala of animals that received a high-salt diet regardless of the period (pre- or postweaning). In conclusion, the high-salt diet promoted hyperactivity when administered in the pre- and postweaning periods. In animals that received only in the postweaning period, the addition of salt induced a reduction in anxiety-like behaviors. Also, regardless of the period, salt provided amygdala oxidative stress, which may be linked to the observed behaviors. KW - high-sodium KW - open-field KW - elevated plus-maze KW - pre-natal KW - post-natal KW - redox state Y1 - 2022 U6 - https://doi.org/10.3389/fnbeh.2021.779080 SN - 1662-5153 VL - 15 PB - Frontiers Media CY - Lausanne ER - TY - THES A1 - Igual Gil, Carla T1 - Role of the GDF15-GFRAL pathway under skeletal muscle mitochondrial stress T1 - Funktion des GDF15-GFRAL Signaltransduktionsweges bei mitochondrialem Stress im Skelettmuskel N2 - Growth differentiation factor 15 (GDF15) is a stress-induced cytokine secreted into the circulation by a number of tissues under different pathological conditions such as cardiovascular disease, cancer or mitochondrial dysfunction, among others. While GDF15 signaling through its recently identified hindbrain-specific receptor GDNF family receptor alpha-like (GFRAL) has been proposed to be involved in the metabolic stress response, its endocrine role under chronic stress conditions is still poorly understood. Mitochondrial dysfunction is characterized by the impairment of oxidative phosphorylation (OXPHOS), leading to inefficient functioning of mitochondria and consequently, to mitochondrial stress. Importantly, mitochondrial dysfunction is among the pathologies to most robustly induce GDF15 as a cytokine in the circulation. The overall aim of this thesis was to elucidate the role of the GDF15-GFRAL pathway under mitochondrial stress conditions. For this purpose, a mouse model of skeletal muscle-specific mitochondrial stress achieved by ectopic expression of uncoupling protein 1 (UCP1), the HSA-Ucp1-transgenic (TG) mouse, was employed. As a consequence of mitochondrial stress, TG mice display a metabolic remodeling consisting of a lean phenotype, an improved glucose metabolism, an increased metabolic flexibility and a metabolic activation of white adipose tissue. Making use of TG mice crossed with whole body Gdf15-knockout (GdKO) and Gfral-knockout (GfKO) mouse models, this thesis demonstrates that skeletal muscle mitochondrial stress induces the integrated stress response (ISR) and GDF15 in skeletal muscle, which is released into the circulation as a myokine (muscle-induced cytokine) in a circadian manner. Further, this work identifies GDF15-GFRAL signaling to be responsible for the systemic metabolic remodeling elicited by mitochondrial stress in TG mice. Moreover, this study reveals a daytime-restricted anorexia induced by the GDF15-GFRAL axis under muscle mitochondrial stress, which is, mechanistically, mediated through the induction of hypothalamic corticotropin releasing hormone (CRH). Finally, this work elucidates a so far unknown physiological outcome of the GDF15-GFRAL pathway: the induction of anxiety-like behavior. In conclusion, this study uncovers a muscle-brain crosstalk under skeletal muscle mitochondrial stress conditions through the induction of GDF15 as a myokine that signals through the hindbrain-specific GFRAL receptor to elicit a stress response leading to metabolic remodeling and modulation of ingestive- and anxiety-like behavior. N2 - Der Wachstum- und Differenzierungsfaktor 15 (GDF15) ist ein stressinduziertes Zytokin, dass bei u.a. Krebs, kardiovaskulären oder mitochondrialer Erkrankungen in den betroffenen Geweben stark induziert und ins Blut sekretiert werden kann. Die endokrine Funktion von GDF15 sowie die Bedeutung des kürzlich identifizierten und spezifisch im Hirnstamm exprimierten GDF15-Rezeptors GFRAL (GDNF family receptor alpha-like) unter chronischen Stressbedingungen ist jedoch noch unzureichend verstanden. Mitochondrialer Stress ist durch eine Fehlfunktion der oxidativen Phosphorylierung (OXPHOS) charakterisiert, was eine ineffiziente ATP-Synthese und eine gestörte zelluläre Energiehomöostase zur Folge hat. Ziel der Doktorarbeit war es, die biologische Funktion des GDF15-GFRAL-Signalwegs unter mitochondrialen Stressbedingungen aufzuklären. Zu diesem Zweck wurde das etablierte transgene HSA-Ucp1-Mausmodel (TG) untersucht, welches durch eine chronisch verringerte OXPHOS-Effizienz spezifisch im Skelettmuskel sowie eine systemische Anpassung des Energiestoffwechsels charakterisiert ist. Dabei konnte in dieser Arbeit zunächst zeigt werden, dass mitochondrialer Stress im Skelettmuskel zell-autonom eine integrierte Stressantwort (ISR) induziert, wodurch die Expression und Sekretion von GDF15 in den Blutkreislauf als Myokin (muskelinduziertes Zytokin) stark erhöht wird. Zudem konnte erstmalig eine tageszeitliche Schwankung der muskulären Gdf15 Genexpression und der im Blut zirkulierenden GDF15-Level bei TG Mäusen identifiziert werden. Durch weiterführende Zuchtkreuzungen der TG-Mäuse mit konstitutiven Knockout-Mäusen (KO) zur Inaktivierung der Gene Gdf15 (GdKO) oder Gfral (GfKO), konnte zudem gezeigt werden, dass sowohl durch das zirkulierende GDF15 als auch die Aktivierung der GFRAL-Signalachse eine Tageszeit-abhängige Anorexie sowie die systemische Anpassung des Energiestoffwechsels im TG Mausmodell vermittelt werden. Mechanistisch konnte dabei erstmalig eine GFRAL-abhängige Induktion von Corticotropin-releasing Hormone (CRH) im Hypothalamus sowie ein erhöhtes, GFRAL-abhängiges Angstverhalten in TG Mäuse beschrieben werden. Zusammenfassend unterstreichen die Ergebnisse die systemische Rolle von GDF15 als Myokin und die Bedeutung der endokrinen Kommunikation zwischen Skelettmuskel und Gehirn, vermittelt durch GDF15-GFRAL Signalachse, für die Energiehomöostase bei mitochondrialer Fehlfunktion. Die gewonnen Erkenntnisse dieser Doktorarbeit können somit zur Entwicklung neuer Therapieansätze für Patienten mit einer mitochondrialen bzw. Stoffwechselerkrankung beitragen. KW - GDF15 KW - mitochondria KW - physiology KW - metabolism KW - GDF15 KW - Stoffwechsel KW - Mitochondrien KW - Physiologie Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-554693 ER - TY - JOUR A1 - Gellner, Anne-Kathrin A1 - Sitter, Aileen A1 - Rackiewicz, Michal A1 - Sylvester, Marc A1 - Philipsen, Alexandra A1 - Zimmer, Andreas A1 - Stein, Valentin T1 - Stress vulnerability shapes disruption of motor cortical neuroplasticity JF - Translational Psychiatry N2 - Chronic stress is a major cause of neuropsychiatric conditions such as depression. Stress vulnerability varies individually in mice and humans, measured by behavioral changes. In contrast to affective symptoms, motor retardation as a consequence of stress is not well understood. We repeatedly imaged dendritic spines of the motor cortex in Thy1-GFP M mice before and after chronic social defeat stress. Susceptible and resilient phenotypes were discriminated by symptom load and their motor learning abilities were assessed by a gross and fine motor task. Stress phenotypes presented individual short- and long-term changes in the hypothalamic-pituitary-adrenal axis as well as distinct patterns of altered motor learning. Importantly, stress was generally accompanied by a marked reduction of spine density in the motor cortex and spine dynamics depended on the stress phenotype. We found astrogliosis and altered microglia morphology along with increased microglia-neuron interaction in the motor cortex of susceptible mice. In cerebrospinal fluid, proteomic fingerprints link the behavioral changes and structural alterations in the brain to neurodegenerative disorders and dysregulated synaptic homeostasis. Our work emphasizes the importance of synaptic integrity and the risk of neurodegeneration within depression as a threat to brain health. Y1 - 2022 U6 - https://doi.org/10.1038/s41398-022-01855-8 SN - 2158-3188 VL - 12 IS - 1 PB - Nature Publishing Group CY - London ER - TY - JOUR A1 - Figueroa Campos, Gustavo Adolfo A1 - G. K. T. Kruizenga, Johannes A1 - Sagu Tchewonpi, Sorel A1 - Schwarz, Steffen A1 - Homann, Thomas A1 - Taubert, Andreas A1 - Rawel, Harshadrai Manilal T1 - Effect of the post-harvest processing on protein modification in green coffee beans by phenolic compounds JF - Foods : open access journal N2 - The protein fraction, important for coffee cup quality, is modified during post-harvest treatment prior to roasting. Proteins may interact with phenolic compounds, which constitute the major metabolites of coffee, where the processing affects these interactions. This allows the hypothesis that the proteins are denatured and modified via enzymatic and/or redox activation steps. The present study was initiated to encompass changes in the protein fraction. The investigations were limited to major storage protein of green coffee beans. Fourteen Coffea arabica samples from various processing methods and countries were used. Different extraction protocols were compared to maintain the status quo of the protein modification. The extracts contained about 4–8 µg of chlorogenic acid derivatives per mg of extracted protein. High-resolution chromatography with multiple reaction monitoring was used to detect lysine modifications in the coffee protein. Marker peptides were allocated for the storage protein of the coffee beans. Among these, the modified peptides K.FFLANGPQQGGK.E and R.LGGK.T of the α-chain and R.ITTVNSQK.I and K.VFDDEVK.Q of β-chain were detected. Results showed a significant increase (p < 0.05) of modified peptides from wet processed green beans as compared to the dry ones. The present study contributes to a better understanding of the influence of the different processing methods on protein quality and its role in the scope of coffee cup quality and aroma. View Full-Text KW - Arabica coffee KW - coffee processing KW - protein modification KW - bound phenolic compounds KW - peptide biomarkers KW - LC-MS/MS Y1 - 2022 U6 - https://doi.org/10.3390/foods11020159 SN - 2304-8158 VL - 11 PB - MDPI CY - Basel, Schweiz ET - 2 ER - TY - JOUR A1 - Schmiedeskamp, Amy A1 - Schreiner, Monika A1 - Baldermann, Susanne T1 - Impact of cultivar selection and thermal processing by air drying, air frying, and deep frying on the carotenoid content and stability and antioxidant capacity in carrots (Daucus carota L.) JF - Journal of agricultural and food chemistry : a publication of the American Chemical Society N2 - Epidemiological data suggest that consuming diets rich in carotenoids can reduce the risk of developing several non-communicable diseases. Thus, we investigated the extent to which carotenoid contents of foods can be increased by the choice of food matrices with naturally high carotenoid contents and thermal processing methods that maintain their stability. For this purpose, carotenoids of 15 carrot (Daucus carota L.) cultivars of different colors were assessed with UHPLC-DAD-ToF-MS. Additionally, the processing effects of air drying, air frying, and deep frying on carotenoid stability were applied. Cultivar selection accounted for up to 12.9-fold differences in total carotenoid content in differently colored carrots and a 2.2-fold difference between orange carrot cultivars. Air frying for 18 and 25 min and deep frying for 10 min led to a significant decrease in total carotenoid contents. TEAC assay of lipophilic extracts showed a correlation between carotenoid content and antioxidant capacity in untreated carrots. KW - air-dried KW - air-fried KW - deep-fried KW - domestic cooking KW - TEAC KW - color KW - Daucus KW - carota L Y1 - 2022 U6 - https://doi.org/10.1021/acs.jafc.1c05718 SN - 0021-8561 SN - 1520-5118 VL - 70 IS - 5 SP - 1629 EP - 1639 PB - American Chemical Society CY - Washington ER - TY - THES A1 - Figueroa Campos, Gustavo Adolfo T1 - Wet-coffee processing production wastes T1 - Produktionsabfälle aus der Nasskaffeeverarbeitung BT - quality, potentials, and valorization opportunities BT - Qualität, Potenziale und Verwertungsmöglichkeiten N2 - Countries processing raw coffee beans are burdened with low economical incomes to fight the serious environmental problems caused by the by-products and wastewater that is generated during the wet-coffee processing. The aim of this work was to develop alternative methods of improving the waste by-product quality and thus making the process economically more attractive with valorization options that can be brought to the coffee producers. The type of processing influences not only the constitution of green coffee but also of by-products and wastewater. Therefore, coffee bean samples as well as by-products and wastewater collected at different production steps of were analyzed. Results show that the composition of wastewater is dependent on how much and how often the wastewater is recycled in the processing. Considering the coffee beans, results indicate that the proteins might be affected during processing and a positive effect of the fermentation on the solubility and accessibility of proteins seems to be probable. The steps of coffee processing influence the different constituents of green coffee beans which, during roasting, give rise to aroma compounds and express the characteristics of roasted coffee beans. Knowing that this group of compounds is involved in the Maillard reaction during roasting, this possibility could be utilized for the coffee producers to improve the quality of green coffee beans and finally the coffee cup quality. The valorization of coffee wastes through modification to activated carbon has been considered as a low-cost option creating an adsorbent with prospective to compete with commercial carbons. Activation protocol using spent coffee and parchment was developed and prepared to assess their adsorption capacity for organic compounds. Spent coffee grounds and parchment proved to have similar adsorption efficiency to commercial activated carbon. The results of this study document a significant information originating from the processing of the de-pulped to green coffee beans. Furthermore, it showed that coffee parchment and spent coffee grounds can be valorized as low-cost option to produce activated carbons. Further work needs to be directed to the optimization of the activation methods to improve the quality of the materials produced and the viability of applying such experiments in-situ to bring the coffee producer further valorization opportunities with environmental perspectives. Coffee producers would profit in establishing appropriate simple technologies to improve green coffee quality, re-use coffee by-products, and wastewater valorization. N2 - Produktionsabfälle aus der Nasskaffeeverarbeitung: Qualität, Potenziale und Verwertungsmöglichkeiten Die Länder, die Rohkaffee verarbeiten, haben nur ein geringes wirtschaftliches Einkommen, um die ernsten Umweltprobleme zu bekämpfen, die durch die bei der Nasskaffeeverarbeitung anfallenden Nebenprodukte und Abwässer verursacht werden. Ziel dieser Arbeit war es, alternative Methoden zu entwickeln, um die Qualität der Nebenprodukte zu verbessern und so den Prozess wirtschaftlich attraktiver zu machen, indem den Kaffeeproduzenten Valorisierungsoptionen geboten werden. Die Art der Verarbeitung beeinflusst nicht nur die Beschaffenheit des Rohkaffees, sondern auch die der Nebenprodukte und des Abwassers. Daher wurden Proben von Kaffeebohnen sowie Nebenprodukte und Abwässer analysiert, die bei verschiedenen Produktionsschritten gesammelt wurden. Die Ergebnisse zeigen, dass die Zusammensetzung des Abwassers davon abhängt, wie viel und wie oft das Abwasser bei der Verarbeitung recycelt wird. In Bezug auf die Kaffeebohnen deuten die Ergebnisse darauf hin, dass die Proteine während der Verarbeitung beeinträchtigt werden könnten, und eine positive Auswirkung der Fermentation auf die Löslichkeit und Zugänglichkeit der Proteine scheint wahrscheinlich zu sein. Die Schritte der Kaffeeverarbeitung beeinflussen die verschiedenen Bestandteile der grünen Kaffeebohnen, die beim Rösten zu Aromastoffen werden und die Eigenschaften der gerösteten Kaffeebohnen zum Ausdruck bringen. Da diese Gruppe von Verbindungen an der Maillard-Reaktion während des Röstens beteiligt ist, könnte diese Möglichkeit von den Kaffeeproduzenten genutzt werden, um die Qualität der grünen Kaffeebohnen und schließlich die Qualität des zubereiteten Kaffees zu verbessern. Die Herstellung von Aktivkohle aus modifizierten Kaffeeabfällen wurde als kostengünstige Option zur Schaffung eines Adsorptionsmittels betrachtet, das mit handelsüblicher Aktivkohle konkurrieren könnte. Es wurde ein Aktivierungsprotokoll für gebrauchten Kaffee und Pergament entwickelt und vorbereitet, um deren Adsorptionskapazität für organische Verbindungen zu bewerten. Es zeigte sich, dass Kaffeesatz und Pergament eine ähnliche Adsorptionseffizienz aufweisen wie kommerzielle Aktivkohle. Die Ergebnisse dieser Studie belegen, dass die Verarbeitung von den entpulpten zu grünen Kaffeebohnen eine wichtige Information darstellt. Darüber hinaus wurde gezeigt, dass Kaffeepergament und Kaffeesatz als kostengünstige Möglichkeit zur Herstellung von Aktivkohle genutzt werden können. Weitere Arbeiten müssen sich mit der Optimierung der Aktivierungsmethoden befassen, um die Qualität der hergestellten Materialien zu verbessern, und mit der Durchführbarkeit solcher Experimente in-situ, um den Kaffeeproduzenten weitere Aufwertungsmöglichkeiten mit Umweltperspektive zu bieten. Die Kaffeeproduzenten würden von der Einführung geeigneter einfacher Technologien zur Verbesserung der Rohkaffeequalität, der Wiederverwendung von Kaffeenebenprodukten und der Aufwertung von Abwässern profitieren. KW - Arabica coffee beans KW - coffee processing KW - coffee by-products KW - protein modification KW - activated carbon KW - Arabica Kaffeebohnen KW - Aktivkohle KW - Kaffeenebenprodukte KW - Kaffeeverarbeitung KW - Protein Modifizierung Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-558828 ER - TY - GEN A1 - Figueroa Campos, Gustavo A. A1 - G. K. T. Kruizenga, Johannes A1 - Sagu Tchewonpi, Sorel A1 - Schwarz, Steffen A1 - Homann, Thomas A1 - Taubert, Andreas A1 - Rawel, Harshadrai T1 - Effect of the Post-Harvest Processing on Protein Modification in Green Coffee Beans by Phenolic Compounds T2 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - The protein fraction, important for coffee cup quality, is modified during post-harvest treatment prior to roasting. Proteins may interact with phenolic compounds, which constitute the major metabolites of coffee, where the processing affects these interactions. This allows the hypothesis that the proteins are denatured and modified via enzymatic and/or redox activation steps. The present study was initiated to encompass changes in the protein fraction. The investigations were limited to major storage protein of green coffee beans. Fourteen Coffea arabica samples from various processing methods and countries were used. Different extraction protocols were compared to maintain the status quo of the protein modification. The extracts contained about 4–8 µg of chlorogenic acid derivatives per mg of extracted protein. High-resolution chromatography with multiple reaction monitoring was used to detect lysine modifications in the coffee protein. Marker peptides were allocated for the storage protein of the coffee beans. Among these, the modified peptides K.FFLANGPQQGGK.E and R.LGGK.T of the α-chain and R.ITTVNSQK.I and K.VFDDEVK.Q of β-chain were detected. Results showed a significant increase (p < 0.05) of modified peptides from wet processed green beans as compared to the dry ones. The present study contributes to a better understanding of the influence of the different processing methods on protein quality and its role in the scope of coffee cup quality and aroma. View Full-Text T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 1256 KW - Arabica coffee KW - coffee processing KW - protein modification KW - bound phenolic compounds KW - peptide biomarkers KW - LC-MS/MS Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-557643 SN - 1866-8372 VL - 11 SP - 1 EP - 19 PB - Universitätsverlag Potsdam CY - Potsdam ET - 2 ER - TY - JOUR A1 - Jonas, Wenke A1 - Kluth, Oliver A1 - Helms, Anett A1 - Voss, Sarah A1 - Jahnert, Markus A1 - Gottmann, Pascal A1 - Speckmann, Thilo A1 - Knebel, Birgit A1 - Chadt, Alexandra A1 - Al-Hasani, Hadi A1 - Schürmann, Annette A1 - Vogel, Heike T1 - Identification of novel genes involved in hyperglycemia in mice JF - International journal of molecular sciences N2 - Current attempts to prevent and manage type 2 diabetes have been moderately effective, and a better understanding of the molecular roots of this complex disease is important to develop more successful and precise treatment options. Recently, we initiated the collective diabetes cross, where four mouse inbred strains differing in their diabetes susceptibility were crossed with the obese and diabetes-prone NZO strain and identified the quantitative trait loci (QTL) Nidd13/NZO, a genomic region on chromosome 13 that correlates with hyperglycemia in NZO allele carriers compared to B6 controls. Subsequent analysis of the critical region, harboring 644 genes, included expression studies in pancreatic islets of congenic Nidd13/NZO mice, integration of single-cell data from parental NZO and B6 islets as well as haplotype analysis. Finally, of the five genes (Acot12, S100z, Ankrd55, Rnf180, and Iqgap2) within the polymorphic haplotype block that are differently expressed in islets of B6 compared to NZO mice, we identified the calcium-binding protein S100z gene to affect islet cell proliferation as well as apoptosis when overexpressed in MINE cells. In summary, we define S100z as the most striking gene to be causal for the diabetes QTL Nidd13/NZO by affecting beta-cell proliferation and apoptosis. Thus, S100z is an entirely novel diabetes gene regulating islet cell function. KW - beta-cell KW - diabetes KW - proliferation KW - apoptosis KW - QTL Y1 - 2022 U6 - https://doi.org/10.3390/ijms23063205 SN - 1661-6596 SN - 1422-0067 VL - 23 IS - 6 PB - MDPI CY - Basel ER - TY - JOUR A1 - Knoche, Lisa A1 - Lisec, Jan A1 - Koch, Matthias T1 - Analysis of electrochemical and liver microsomal transformation products of lasalocid by LC/HRMS JF - Rapid communications in mass spectrometry : RCM N2 - Rationale: Lasalocid (LAS), an ionophore, is used in cattle and poultry farming as feed additive for its antibiotic and growth-promoting properties. Literature on transformation products (TP) resulting from LAS degradation is limited. So far, only hydroxylation is found to occur as the metabolic reaction during the LAS degradation. To investigate potential TPs of LAS, we used electrochemistry (EC) and liver microsome (LM) assays to synthesize TPs, which were identified using liquid chromatography high-resolution mass spectrometry (LC/HRMS). Methods: Electrochemically produced TPs were analyzed online by direct coupling of the electrochemical cell to the electrospray ionization (ESI) source of a Sciex Triple-TOF high resolution mass spectrometer. Then, EC-treated LAS solution was collected and analyzed offline using LC/HRMS to confirm stable TPs and improve their annotation with a chemical structure due to informative MS/MS spectra. In a complementary approach, TPs formed by rat and human microsomal incubation were investigated using LC/HRMS. The resulting data were used to investigate LAS modification reactions and elucidate the chemical structure of obtained TPs. Results: The online measurements identified a broad variety of TPs, resulting from modification reactions like (de-)hydrogenation, hydration, methylation, oxidation as well as adduct formation with methanol. We consistently observed different ion complexations of LAS and LAS-TPs (Na+; 2Na(+) K+; NaNH4+; KNH4+). Two stable methylated EC-TPs were found, structurally annotated, and assigned to a likely modification reaction. Using LM incubation, seven TPs were formed, mostly by oxidation/hydroxylation. After the identification of LM-TPs as Na+-complexes, we identified LM-TPs as K+-complexes. Conclusion: We identified and characterized TPs of LAS using EC- and LM-based methods. Moreover, we found different ion complexes of LAS-based TPs. This knowledge, especially the different ion complexes, may help elucidate the metabolic and environmental degradation pathways of LAS. Y1 - 2022 U6 - https://doi.org/10.1002/rcm.9349 SN - 0951-4198 SN - 1097-0231 VL - 36 IS - 18 PB - Wiley CY - New York, NY ER - TY - JOUR A1 - Kilercik, Meltem A1 - Ucal, Yasemin A1 - Serdar, Muhittin A1 - Serteser, Mustafa A1 - Ozpinar, Aysel A1 - Schweigert, Florian J. T1 - Zinc protoporphyrin levels in COVID-19 are indicative of iron deficiency and potential predictor of disease severity JF - PLoS ONE N2 - Background Coronavirus disease (COVID-19) has a severe impact on all aspects of patient care. Among the numerous biomarkers of potential validity for diagnostic and clinical management of COVID-19 are biomarkers at the interface of iron metabolism and inflammation. Methods The follow-up study included 54 hospitalized patients with laboratory-confirmed COVID-19 with a moderate and severe/critical form of the disease. Iron deficiency specific biomarkers such as iron, ferritin, transferrin receptor, hepcidin, and zinc protoporphyrin (ZnPP) as well as relevant markers of inflammation were evaluated twice: in the first five days when the patient was admitted to the hospital and during five to 15 days; and their validity to diagnose iron deficiency was further assessed. The regression and Receiver Operating Characteristics (ROC) analyses were performed to evaluate the prognosis and determine the probability for predicting the severity of the disease in the first five days of COVID-19. Results Based on hemoglobin values, anemia was observed in 21 of 54 patients. Of all iron deficiency anemia-related markers, only ZnPP was significantly elevated (P<0.001) in the anemic group. When patients were grouped according to the severity of disease, slight differences in hemoglobin or other anemia-related parameters could be observed. However, the levels of ZnPP were significantly increased in the severely ill group of patients. The ratio of ZnPP to lymphocyte count (ZnPP/L) had a discrimination power stronger than the neutrophil to lymphocyte count ratio (N/L) to determine disease severity. Additionally, only two markers were independently associated with the severity of COVID-19 in logistic regression analysis; D-dimer (OR (5.606)(95% CI 1.019–30.867)) and ZnPP/L ratio (OR (74.313) (95% CI 1.081–5108.103)). Conclusions For the first time ZnPP in COVID-19 patients were reported in this study. Among all iron-related markers tested, ZnPP was the only one that was associated with anemia as based on hemoglobin. The increase in ZnPP might indicate that the underlying cause of anemia in COVID-19 patients is not only due to the inflammation but also of nutritional origin. Additionally, the ZnPP/L ratio might be a valid prognostic marker for the severity of COVID-19. KW - COVID 19 KW - Hemoglobin KW - Ferritin KW - Lymphocytes KW - Anemia KW - Reticulocytes KW - Iron deficiency anemia KW - Neutrophils Y1 - 2021 U6 - https://doi.org/10.1371/journal.pone.0262487 SN - 1932-6203 VL - 17 IS - 2 PB - PLOS CY - San Francisco, California, US ER - TY - JOUR A1 - Schjeide, Brit-Maren A1 - Schenke, Maren A1 - Seeger, Bettina A1 - Püschel, Gerhard T1 - Validation of a novel double control quantitative copy number PCR method to quantify off-target transgene integration after CRISPR-induced DNA modification JF - Methods and protocols : M&Ps N2 - In order to improve a recently established cell-based assay to assess the potency of botulinum neurotoxin, neuroblastoma-derived SiMa cells and induced pluripotent stem-cells (iPSC) were modified to incorporate the coding sequence of a reporter luciferase into a genetic safe harbor utilizing CRISPR/Cas9. A novel method, the double-control quantitative copy number PCR (dc-qcnPCR), was developed to detect off-target integrations of donor DNA. The donor DNA insertion success rate and targeted insertion success rate were analyzed in clones of each cell type. The dc-qcnPCR reliably quantified the copy number in both cell lines. The probability of incorrect donor DNA integration was significantly increased in SiMa cells in comparison to the iPSCs. This can possibly be explained by the lower bundled relative gene expression of a number of double-strand repair genes (BRCA1, DNA2, EXO1, MCPH1, MRE11, and RAD51) in SiMa clones than in iPSC clones. The dc-qcnPCR offers an efficient and cost-effective method to detect off-target CRISPR/Cas9-induced donor DNA integrations. KW - CRISPR editing validation KW - copy number analyses KW - homology-directed repair KW - homologous recombination deficiency Y1 - 2022 U6 - https://doi.org/10.3390/mps5030043 SN - 2409-9279 VL - 5 IS - 3 SP - 1 EP - 14 PB - MDPI CY - Basel, Schweiz ER - TY - GEN A1 - Schäfer, Marjänn Helena A1 - Kakularam, Kumar Reddy A1 - Reisch, Florian A1 - Rothe, Michael A1 - Stehling, Sabine A1 - Heydeck, Dagmar A1 - Püschel, Gerhard Paul A1 - Kuhn, Hartmut T1 - Male Knock-in Mice Expressing an Arachidonic Acid Lipoxygenase 15B (Alox15B) with Humanized Reaction Specificity Are Prematurely Growth Arrested When Aging T2 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - Mammalian arachidonic acid lipoxygenases (ALOXs) have been implicated in cell differentiation and in the pathogenesis of inflammation. The mouse genome involves seven functional Alox genes and the encoded enzymes share a high degree of amino acid conservation with their human orthologs. There are, however, functional differences between mouse and human ALOX orthologs. Human ALOX15B oxygenates arachidonic acid exclusively to its 15-hydroperoxy derivative (15S-HpETE), whereas 8S-HpETE is dominantly formed by mouse Alox15b. The structural basis for this functional difference has been explored and in vitro mutagenesis humanized the reaction specificity of the mouse enzyme. To explore whether this mutagenesis strategy may also humanize the reaction specificity of mouse Alox15b in vivo, we created Alox15b knock-in mice expressing the arachidonic acid 15-lipoxygenating Tyr603Asp+His604Val double mutant instead of the 8-lipoxygenating wildtype enzyme. These mice are fertile, display slightly modified plasma oxylipidomes and develop normally up to an age of 24 weeks. At later developmental stages, male Alox15b-KI mice gain significantly less body weight than outbred wildtype controls, but this effect was not observed for female individuals. To explore the possible reasons for the observed gender-specific growth arrest, we determined the basic hematological parameters and found that aged male Alox15b-KI mice exhibited significantly attenuated red blood cell parameters (erythrocyte counts, hematocrit, hemoglobin). Here again, these differences were not observed in female individuals. These data suggest that humanization of the reaction specificity of mouse Alox15b impairs the functionality of the hematopoietic system in males, which is paralleled by a premature growth arrest. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 1295 KW - eicosanoids KW - lipid peroxidation KW - oxidative stress KW - polyenoic fatty acids KW - erythropoiesis Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-576491 SN - 1866-8372 IS - 1295 ER - TY - JOUR A1 - Schäfer, Marjänn Helena A1 - Kakularam, Kumar Reddy A1 - Reisch, Florian A1 - Rothe, Michael A1 - Stehling, Sabine A1 - Heydeck, Dagmar A1 - Püschel, Gerhard Paul A1 - Kuhn, Hartmut T1 - Male Knock-in Mice Expressing an Arachidonic Acid Lipoxygenase 15B (Alox15B) with Humanized Reaction Specificity Are Prematurely Growth Arrested When Aging JF - Biomedicines N2 - Mammalian arachidonic acid lipoxygenases (ALOXs) have been implicated in cell differentiation and in the pathogenesis of inflammation. The mouse genome involves seven functional Alox genes and the encoded enzymes share a high degree of amino acid conservation with their human orthologs. There are, however, functional differences between mouse and human ALOX orthologs. Human ALOX15B oxygenates arachidonic acid exclusively to its 15-hydroperoxy derivative (15S-HpETE), whereas 8S-HpETE is dominantly formed by mouse Alox15b. The structural basis for this functional difference has been explored and in vitro mutagenesis humanized the reaction specificity of the mouse enzyme. To explore whether this mutagenesis strategy may also humanize the reaction specificity of mouse Alox15b in vivo, we created Alox15b knock-in mice expressing the arachidonic acid 15-lipoxygenating Tyr603Asp+His604Val double mutant instead of the 8-lipoxygenating wildtype enzyme. These mice are fertile, display slightly modified plasma oxylipidomes and develop normally up to an age of 24 weeks. At later developmental stages, male Alox15b-KI mice gain significantly less body weight than outbred wildtype controls, but this effect was not observed for female individuals. To explore the possible reasons for the observed gender-specific growth arrest, we determined the basic hematological parameters and found that aged male Alox15b-KI mice exhibited significantly attenuated red blood cell parameters (erythrocyte counts, hematocrit, hemoglobin). Here again, these differences were not observed in female individuals. These data suggest that humanization of the reaction specificity of mouse Alox15b impairs the functionality of the hematopoietic system in males, which is paralleled by a premature growth arrest. KW - eicosanoids KW - lipid peroxidation KW - oxidative stress KW - polyenoic fatty acids KW - erythropoiesis Y1 - 2022 U6 - https://doi.org/10.3390/biomedicines10061379 SN - 2227-9059 VL - 10 SP - 1 EP - 22 PB - MDPI CY - Basel, Schweiz ET - 6 ER - TY - JOUR A1 - Hoffmann, Holger A1 - Ott, Christiane A1 - Raupbach, Jana A1 - Andernach, Lars A1 - Renz, Matthias A1 - Grune, Tilman A1 - Hanschen, Franziska S. T1 - Assessing bioavailability and bioactivity of 4-Hydroxythiazolidine-2-Thiones, newly discovered glucosinolate degradation products formed during domestic boiling of cabbage JF - Frontiers in nutrition N2 - Glucosinolates are plant secondary metabolites found in cruciferous vegetables (Brassicaceae) that are valued for their potential health benefits. Frequently consumed representatives of these vegetables, for example, are white or red cabbage, which are typically boiled before consumption. Recently, 3-alk(en)yl-4-hydroxythiazolidine-2-thiones were identified as a class of thermal glucosinolate degradation products that are formed during the boiling of cabbage. Since these newly discovered compounds are frequently consumed, this raises questions about their potential uptake and their possible bioactive functions. Therefore, 3-allyl-4-hydroxythiazolidine-2-thione (allyl HTT) and 4-hydroxy-3-(4-(methylsulfinyl) butyl)thiazolidine-2-thione (4-MSOB HTT) as degradation products of the respective glucosinolates sinigrin and glucoraphanin were investigated. After consumption of boiled red cabbage broth, recoveries of consumed amounts of the degradation products in urine collected for 24 h were 18 +/- 5% for allyl HTT and 21 +/- 4% for 4-MSOB HTT (mean +/- SD, n = 3). To investigate the stability of the degradation products during uptake and to elucidate the uptake mechanism, both an in vitro stomach and an in vitro intestinal model were applied. The results indicate that the uptake of allyl HTT and 4-MSOB HTT occurs by passive diffusion. Both compounds show no acute cell toxicity, no antioxidant potential, and no change in NAD(P)H dehydrogenase quinone 1 (NQO1) activity up to 100 mu M. However, inhibition of glycogen synthase kinases-3 (GSK-3) in the range of 20% for allyl HTT for the isoform GSK-3 beta and 29% for 4-MSOB HTT for the isoform GSK-3 alpha at a concentration of 100 mu M was found. Neither health-promoting nor toxic effects of 3-alk(en)yl-4-hydroxythiazolidine-2-thiones were found in the four tested assays carried out in this study, which contrasts with the properties of other glucosinolate degradation products, such as isothiocyanates. KW - stomach model KW - glycogen synthase kinase-3 KW - cytotoxicity KW - antioxidant potential KW - intestinal model KW - cellular uptake KW - isothiocyanate Y1 - 2022 U6 - https://doi.org/10.3389/fnut.2022.941286 SN - 2296-861X VL - 9 PB - Frontiers Media CY - Lausanne ER - TY - JOUR A1 - Maharjan, Romi Singh A1 - Singh, Ajay Vikram A1 - Hanif, Javaria A1 - Rosenkranz, Daniel A1 - Haidar, Rashad A1 - Shelar, Amruta A1 - Singh, Shubham Pratap A1 - Dey, Aditya A1 - Patil, Rajendra A1 - Zamboni, Paolo A1 - Laux, Peter A1 - Luch, Andreas T1 - Investigation of the associations between a nanomaterial's microrheology and toxicology JF - ACS omega / American Chemical Society N2 - With the advent of Nanotechnology, the use of nanomaterials in consumer products is increasing on a daily basis, due to which a deep understanding and proper investigation regarding their safety and risk assessment should be a major priority. To date, there is no investigation regarding the microrheological properties of nanomaterials (NMs) in biological media. In our study, we utilized in silico models to select the suitable NMs based on their physicochemical properties such as solubility and lipophilicity. Then, we established a new method based on dynamic light scattering (DLS) microrheology to get the mean square displacement (MSD) and viscoelastic property of two model NMs that are dendrimers and cerium dioxide nanoparticles in Dulbecco's Modified Eagle Medium (DMEM) complete media at three different concentrations for both NMs. Subsequently, we established the cytotoxicological profiling using water-soluble tetrazolium salt-1 (WST-1) and a reactive oxygen species (ROS) assay. To take one step forward, we further looked into the tight junction properties of the cells using immunostaining with Zonula occluden-1 (ZO-1) antibodies and found that the tight junction function or transepithelial resistance (TEER) was affected in response to the microrheology and cytotoxicity. The quantitative polymerase chain reaction (q-PCR) results in the gene expression of ZO-1 after the 24 h treatment with NPs further validates the findings of immunostaining results. This new method that we established will be a reference point for other NM studies which are used in our day-to-day consumer products. Y1 - 2022 U6 - https://doi.org/10.1021/acsomega.2c00472 SN - 2470-1343 VL - 7 IS - 16 SP - 13985 EP - 13997 PB - ACS Publications CY - Washington, DC ER - TY - JOUR A1 - Menzel, Juliane A1 - Longree, Alessa A1 - Abraham, Klaus A1 - Schulze, Matthias Bernd A1 - Weikert, Cornelia T1 - Dietary and plasma phospholipid profiles in vegans and omnivores-results from the RBVD study JF - Nutrients N2 - Over the last few years, the vegan diet has become increasingly popular in Germany. It has been proposed that this diet is generally lower in fat, but less is known about the impact on fatty acid (FA) profiles. Therefore, the cross-sectional "Risks and Benefits of a Vegan Diet" (RBVD) study (n = 72) was used to investigate dietary FA intake as well as plasma phospholipid FA in vegans (n = 36) compared to omnivores (n = 36). Vegans had a significantly lower dietary intake of total fat (median 86 g/day, IQR 64-111) in comparison to omnivores (median 104 g/day, IQR 88-143, p = 0.004). Further, vegans had a lower intake of saturated fatty acids (SFA) (p < 0.0001) and monounsaturated fatty acids (MUFA) (p = 0.001) compared to omnivores. Vegans had a higher intake in total polyunsaturated fatty acids (PUFA), omega-3 and omega-6 PUFA compared to omnivores, but without statistical significance after Bonferroni correction. According to plasma phospholipid profiles, relatively lower proportions of SFA (p < 0.0001), total trans fatty acids (TFA) (p = 0.0004) and omega-3-FA (p < 0.0001), but higher proportions of omega-6-FA (p < 0.0001) were observed in vegans. With the exception of omega-3 PUFA, a vegan diet is associated with a more favorable dietary fat intake and more favorable plasma FA profiles and therefore may reduce cardiovascular risk. KW - SFA KW - TFA KW - MUFA KW - PUFA KW - n-3 fatty acid KW - n-6 fatty acid KW - fatty acids KW - vegan diet Y1 - 2022 U6 - https://doi.org/10.3390/nu14142900 SN - 2072-6643 VL - 14 IS - 14 PB - MDPI CY - Basel ER - TY - THES A1 - Polemiti, Elli T1 - Identifying risk of microvascular and macrovascular complications of type 2 diabetes T1 - Identifizierung des Risikos mikrovaskulärer und makrovaskulärer Komplikationen bei Typ-2-Diabetes BT - findings from the European Prospective Investigation into Cancer and Nutrition-Potsdam Study BT - Ergebnisse der europäischen prospektiven Krebsforschung und Ernährungs-Potsdamer Studie N2 - Diabetes is hallmarked by high blood glucose levels, which cause progressive generalised vascular damage, leading to microvascular and macrovascular complications. Diabetes-related complications cause severe and prolonged morbidity and are a major cause of mortality among people with diabetes. Despite increasing attention to risk factors of type 2 diabetes, existing evidence is scarce or inconclusive regarding vascular complications and research investigating both micro- and macrovascular complications is lacking. This thesis aims to contribute to current knowledge by identifying risk factors – mainly related to lifestyle – of vascular complications, addressing methodological limitations of previous literature and providing comparative data between micro- and macrovascular complications. To address this overall aim, three specific objectives were set. The first was to investigate the effects of diabetes complication burden and lifestyle-related risk factors on the incidence of (further) complications. Studies suggest that diabetes complications are interrelated. However, they have been studied mainly independently of individuals’ complication burden. A five-state time-to-event model was constructed to examine the longitudinal patterns of micro- (kidney disease, neuropathy and retinopathy) and macrovascular complications (myocardial infarction and stroke) and their association with the occurrence of subsequent complications. Applying the same model, the effect of modifiable lifestyle factors, assessed alone and in combination with complication load, on the incidence of diabetes complications was studied. The selected lifestyle factors were body mass index (BMI), waist circumference, smoking status, physical activity, and intake of coffee, red meat, whole grains, and alcohol. Analyses were conducted in a cohort of 1199 participants with incident type 2 diabetes from the European Prospective Investigation into Cancer and Nutrition (EPIC)-Potsdam, who were free of vascular complications at diabetes diagnosis. During a median follow-up time of 11.6 years, 96 cases of macrovascular complications (myocardial infarction and stroke) and 383 microvascular complications (kidney disease, neuropathy and retinopathy) were identified. In multivariable-adjusted models, the occurrence of a microvascular complication was associated with a higher incidence of further micro- (Hazard ratio [HR] 1.90; 95% Confidence interval [CI] 0.90, 3.98) and macrovascular complications (HR 4.72; 95% CI 1.25, 17.68), compared with persons without a complication burden. In addition, participants who developed a macrovascular event had a twofold higher risk of future microvascular complications (HR 2.26; 95% CI 1.05, 4.86). The models were adjusted for age, sex, state duration, education, lifestyle, glucose-lowering medication, and pre-existing conditions of hypertension and dyslipidaemia. Smoking was positively associated with macrovascular disease, while an inverse association was observed with higher coffee intake. Whole grain and alcohol intake were inversely associated with microvascular complications, and a U-shaped association was observed for red meat intake. BMI and waist circumference were positively associated with microvascular events. The associations between lifestyle factors and incidence of complications were not modified by concurrent complication burden, except for red meat intake and smoking status, where the associations were attenuated among individuals with a previous complication. The second objective was to perform an in-depth investigation of the association between BMI and BMI change and risk of micro- and macrovascular complications. There is an ongoing debate on the association between obesity and risk of macrovascular and microvascular outcomes in type 2 diabetes, with studies suggesting a protective effect among people with overweight or obesity. These findings, however, might be limited due to suboptimal control for smoking, pre-existing chronic disease, or short-follow-up. After additional exclusion of persons with cancer history at diabetes onset, the associations between pre-diagnosis BMI and relative annual change between pre- and post-diagnosis BMI and incidence of complications were evaluated in multivariable-adjusted Cox models. The analyses were adjusted for age, sex, education, smoking status and duration, physical activity, alcohol consumption, adherence to the Mediterranean diet, and family history of diabetes and cardiovascular disease (CVD). Among 1083 EPIC-Potsdam participants, 85 macrovascular and 347 microvascular complications were identified during a median follow-up period of 10.8 years. Higher pre-diagnosis BMI was associated with an increased risk of total microvascular complications (HR per 5 kg/m2 1.21; 95% CI 1.07, 1.36), kidney disease (HR 1.39; 95% CI 1.21, 1.60) and neuropathy (HR 1.12; 95% CI 0.96, 1.31); but no association was observed for macrovascular complications (HR 1.05; 95% CI 0.81, 1.36). Effect modification was not evident by sex, smoking status, or age groups. In analyses according to BMI change categories, BMI loss of more than 1% indicated a decreased risk of total microvascular complications (HR 0.62; 95% CI 0.47, 0.80), kidney disease (HR 0.57; 95% CI 0.40, 0.81) and neuropathy (HR 0.73; 95% CI 0.52, 1.03), compared with participants with a stable BMI. No clear association was observed for macrovascular complications (HR 1.04; 95% CI 0.62, 1.74). The impact of BMI gain on diabetes-related vascular disease was less evident. Associations were consistent across strata of age, sex, pre-diagnosis BMI, or medication but appeared stronger among never-smokers than current or former smokers. The last objective was to evaluate whether individuals with a high-risk profile for diabetes and cardiovascular disease (CVD) also have a greater risk of complications. Within the EPIC-Potsdam study, two accurate prognostic tools were developed, the German Diabetes Risk Score (GDRS) and the CVD Risk Score (CVDRS), which predict the 5-year type 2 diabetes risk and 10-year CVD risk, respectively. Both scores provide a non-clinical and clinical version. Components of the risk scores include age, sex, waist circumference, prevalence of hypertension, family history of diabetes or CVD, lifestyle factors, and clinical factors (only in clinical versions). The association of the risk scores with diabetes complications and their discriminatory performance for complications were assessed. In crude Cox models, both versions of GDRS and CVDRS were positively associated with macrovascular complications and total microvascular complications, kidney disease and neuropathy. Higher GDRS was also associated with an elevated risk of retinopathy. The discrimination of the scores (clinical and non-clinical) was poor for all complications, with the C-index ranging from 0.58 to 0.66 for macrovascular complications and from 0.60 to 0.62 for microvascular complications. In conclusion, this work illustrates that the risk of complication development among individuals with type 2 diabetes is related to the existing complication load, and attention should be given to regular monitoring for future complications. It underlines the importance of weight management and adherence to healthy lifestyle behaviours, including high intake of whole grains, moderation in red meat and alcohol consumption and avoidance of smoking to prevent major diabetes-associated complications, regardless of complication burden. Risk scores predictive for type 2 diabetes and CVD were related to elevated risks of complications. By optimising several lifestyle and clinical factors, the risk score can be improved and may assist in lowering complication risk. N2 - Diabetes ist durch einen hohen Blutzuckerspiegel gekennzeichnet, der eine fortschreitende allgemeine Gefäßschädigung verursacht, die zu mikro- und makrovaskulären Komplikationen führt. Diabetesbedingte Komplikationen verursachen eine schwere und langanhaltende Morbidität und sind eine der Hauptursachen für die Mortalität von Menschen mit Diabetes. Trotz der zunehmenden Aufmerksamkeit der Erforschung der Risikofaktoren des Typ-2-Diabetes, ist die vorhandene Studienlage in Bezug auf vaskuläre Komplikationen nicht ein-deutig und nicht ausreichend. Diese Arbeit soll zum aktuellen Wissensstand beitragen, indem sie Risikofaktoren – hauptsächlich lebensstilbedingte Faktoren – für vaskuläre Komplikationen identifiziert, methodische Schwächen bisheriger Studien adressiert und vergleichende Daten zwischen mikro- und makrovaskulären Komplikationen liefert. Um dieses übergeordnete Ziel zu erreichen, wurden drei spezifische Ziele gesetzt. Das erste war die Untersuchung des Einflusses der Diabetes-Komplikationslast und lebensstilbezogener Risikofaktoren auf das Auftreten weiterer Komplikationen. Studien legen nahe, dass Diabeteskomplikationen in Wechselbeziehung zueinanderstehen. Allerdings wurden sie bisher hauptsächlich unabhängig von der individuellen Komplikationslast untersucht. Es wurde daher ein fünfstufiges Time-to-Event-Modell konstruiert, um die longitudinalen Muster von mikro- und makrovaskulären Komplikationen und deren Zusammenhang mit dem Auftreten von Folgekomplikationen zu untersuchen. Unter Anwendung desselben Modells wurde die Auswirkung modifizierbarer Lebensstilfaktoren, die allein und in Kombination mit der Komplikationslast untersucht wurden, auf das Auftreten von Diabeteskomplikatio-nen untersucht. Die ausgewählten Risikofaktoren waren der Body-Mass-Index (BMI), der Taillenumfang, der Raucherstatus, die körperliche Aktivität und der Konsum von Kaffee, rotem Fleisch, Vollkornprodukten und Alkohol. Die Analysen wurden in einer Kohorte von 1199 Teilnehmern mit neu diagnostiziertem Typ-2-Diabetes aus der European Prospective Investigation into Cancer and Nutrition (EPIC)-Potsdam durchgeführt, die zum Zeitpunkt der Diabetesdiagnose frei von vaskulären Komplikationen waren. Während einer Nachbeobachtungszeit von 11,6 Jahren wurden 96 Fälle mit makrovaskulären Komplikati-onen (Myokardinfarkt und Schlaganfall) und 383 Fälle mit mikrovaskulären Komplikationen (Nierenerkrankungen, Neuropathie und Retinopathie) identifiziert. Das Auftreten einer mikrovaskulären Komplikation war mit einer höheren Inzidenz weiterer mikrovaskulärer Ereignisse (Hazard Ratio [HR] 1,90; 95% Konfidenzintervall [CI] 0,90, 3,98) und makrovaskulärer Komplikationen (HR 4,72; 95% CI 1,25, 17,68) assoziiert, verglichen mit Personen ohne Komplikationen. Darüber hinaus hatten Teilnehmende, die ein makrovaskuläres Ereignis entwickelten, ein doppelt so hohes Risiko für mikrovaskuläre Komplikationen (HR 2,26; 95% CI 1,05, 4,86). Die Modelle wurden für Alter, Geschlecht, Komplikationsdauer, Bildung, Lebensstil, glukosesenkende Medikamente und Vorerkrankungen wie Bluthochdruck und Dyslipidämie adjustiert. Rauchen war posi-tiv mit makrovaskulären Erkrankungen assoziiert, während eine inverse Assoziation für einen höheren Kaffeekonsum beobachtet wurde. Vollkorn- und Alkoholkonsum waren invers mit mikrovaskulären Komplikationen assoziiert, und eine U-förmige Assoziation wurde für den Konsum von rotem Fleisch beobachtet. BMI und Taillenumfang waren positiv mit mikrovaskulären Ereignissen assoziiert. Die Zusammenhänge zwischen Lebensstilfaktoren und Komplikationen wurden durch gleichzeitige Komplikationsbelastung nicht verändert, mit Ausnahme für den Verzehr von rotem Fleisch und dem Raucherstatus, dort waren die Assoziationen bei Personen mit Komplikationen abgeschwächt. Das zweite Ziel war die Untersuchung des Zusammenhangs zwischen BMI und BMI-Änderung und dem Risiko für mikro- und makrovaskuläre Komplikationen. Es gibt eine anhaltende Debatte über den Zusammenhang zwischen Adipositas und dem Risiko für makrovaskuläre und mikrovaskuläre Folgeerkrankungen bei Typ-2-Diabetes, bei der einige Studien einen protektiven Zusammenhang bei Menschen mit Übergewicht oder Adipositas nahelegen. Diese Ergebnisse könnten auf methodische Schwächen zurückzuführen sein, einschließlich einer suboptimalen Adjustierung für Rauchen, bestehende chronische Erkrankungen und eine kurze Nachbeobachtungszeit. Nach zusätzlichem Ausschluss von Personen mit einer bestehenden Krebserkrankung zu Diabetesbeginn, wurden die Zusam-menhänge zwischen BMI vor der Diagnose und die relative jährliche Veränderung zwischen BMI vor und nach der Diagnose hinsichtlich der Inzidenz von Komplikationen in Cox-Modellen ausgewertet. Die Analysen wurden für Alter, Geschlecht, Bildung, Raucherstatus und -dauer, körperliche Aktivität, Alkoholkonsum, Einhaltung der mediterranen Ernährung und Familienanamnese von Diabetes und kardiovaskulären Erkrankungen (CVD) adjustiert. Unter den 1083 Teilnehmern wurden 85 makrovaskuläre und 347 mikrovaskuläre Komplikationen während einer Nachbeobachtungszeit von 10,8 Jahren identifiziert. Ein höherer BMI vor der Diagnose war mit einem erhöhten Risiko für mikrovaskuläre Komplikationen insgesamt (HR pro 5 kg/m2 1,21; 95% CI 1,07, 1,36), Nierenerkrankungen (HR 1,39; 95% CI 1,21, 1,60) und Neuropathie (HR 1,12; 95% CI 0,96, 1,31) assozi-iert; für makrovaskuläre Komplikationen wurde jedoch kein Zusammenhang beobachtet (HR 1,05; 95% CI 0,81, 1,36). Analysen nach BMI-Kategorien bestätigten diese Ergebnisse. Es gab keine Hinweise für Effektmodifikation mit Geschlecht, Raucherstatus oder Alter. In den Analysen für BMI-Änderung zeigte sich, dass eine BMI-Abnahme von mehr als 1 % mit einem verringerten Risiko für mikrovaskuläre Komplikationen (HR 0,62; 95% CI 0,47, 0,80), Nierenerkrankungen (HR 0,57; 95% CI 0,40, 0,81) und Neuropathie (HR 0,73; 95% CI 0,52, 1,03) verbunden war, verglichen mit Teilnehmern mit einem stabilen BMI. Für makrovaskuläre Komplikationen wurde kein eindeutiger Zusammenhang beobachtet (HR 1,04; 95% CI 0,62, 1,74). Die Assoziationen waren in den Strata nach Alter, Ge-schlecht, BMI vor der Diagnose oder Medikation hinweg konsistent, schienen aber bei lebenslangen Nichtrauchern stärker zu sein als bei Rauchern oder ehemaligen Rauchern. Das letzte Ziel war es zu untersuchen, ob Personen mit einem Hochrisikoprofil für Di-abetes und CVD auch ein höheres Risiko für Komplikationen haben. Im Rahmen der EPIC-Potsdam-Studie wurden zwei präzise Prognoseinstrumente entwickelt, der German Diabetes Risk Score (GDRS) und der CVD Risk Score (CVDRS), die das 5-Jahres-Risiko für Typ-2-Diabetes bzw. das 10-Jahres-Risiko für CVD vorhersagen. Beide Scores sind als nicht-klinische und klinische Version verfügbar. Zu den Komponenten der Risikoscores gehören Alter, Geschlecht, Taillenumfang, Prävalenz von Bluthochdruck, familiäre Krankheitsvorgeschichte (Diabetes oder CVD), modifizierbare Lebensstilfaktoren und klinische Parameter (nur in den klinischen Versionen). Die Assoziation der Risikoscores mit Diabeteskomplikationen und ihre Diskriminierungsfähigkeit für Komplikationen wurden bewertet. In unadjustierten Cox-Modellen waren beide Versionen (GDRS und CVDRS) positiv mit makrovaskulären Komplikationen und insgesamt mit mikrovaskulären Komplikatio-nen, Nierenerkrankungen und Neuropathie in Personen mit Typ-2-Diabetes assoziiert. Ein höherer GDRS war auch mit einem erhöhten Risiko für eine Retinopathie assoziiert. Die Diskriminierung der Scores (klinisch und nicht-klinisch) war für alle Komplikationen gering, wobei der C-Index für makrovaskuläre Komplikationen von 0,58 bis 0,66 und für mikrovaskuläre Komplikationen von 0,60 bis 0,62 reichte. Zusammenfassend zeigt diese Arbeit, dass das Risiko für die Entwicklung von Komplikati-onen bei Personen mit Typ-2-Diabetes mit der bestehenden Komplikationslast zusammenhängt und dass eine regelmäßige Überwachung von zukünftigen Komplikationen wichtig ist. Sie unterstreicht die Bedeutung des Gewichtsmanagements und der Einhaltung gesunder Lebensgewohnheiten, einschließlich eines hohen Verzehrs von Vollkornprodukten, eines moderaten Konsums von rotem Fleisch und Alkohol, sowie des Verzichts auf das Rauchen, um schwere diabetesassoziierte Komplikationen, unabhängig von der Komplikationslast, zu verhindern. Die Risiko-Scores für Typ-2-Diabetes und Herz-Kreislauf-Erkrankungen waren mit einem erhöhten Komplikations-Risiko assoziiert. Durch die Optimierung des Lebens-stils und der klinischen Faktoren kann der Risikoscore verbessert werden, was das Auftreten von diabetesassoziierten Komplikationen verringern könnte. KW - type 2 diabetes KW - microvascular complications KW - macrovascular complications KW - nephropathy KW - neuropathy KW - retinopathy KW - CVD KW - myocardial infarction KW - stroke KW - lifestyle KW - diet KW - obesity KW - BMI KW - weight loss KW - risk scores KW - coffee KW - whole grains KW - physical activity KW - red meat KW - smoking KW - alcohol intake KW - Body-Mass-Index KW - Herzkreislauferkrankungen KW - Alkoholkonsum KW - Kaffee KW - Diät KW - Lebensstil KW - makrovaskuläre Komplikationen KW - mikrovaskuläre Komplikationen KW - Herzinfarkt KW - Nephropathie KW - Neuropathie KW - Adipositas KW - körperliche Aktivität KW - rotes Fleisch KW - Retinopathie KW - Risikobewertungen KW - Rauchen KW - Schlaganfall KW - Typ 2 Diabetes KW - Gewichtsverlust KW - Vollkorn Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-571038 ER - TY - JOUR A1 - Schiborn, Catarina A1 - Schulze, Matthias Bernd T1 - Precision prognostics for the development of complications in diabetes JF - Diabetologia : journal of the European Association for the Study of Diabetes (EASD) N2 - Individuals with diabetes face higher risks for macro- and microvascular complications than their non-diabetic counterparts. The concept of precision medicine in diabetes aims to optimise treatment decisions for individual patients to reduce the risk of major diabetic complications, including cardiovascular outcomes, retinopathy, nephropathy, neuropathy and overall mortality. In this context, prognostic models can be used to estimate an individual's risk for relevant complications based on individual risk profiles. This review aims to place the concept of prediction modelling into the context of precision prognostics. As opposed to identification of diabetes subsets, the development of prediction models, including the selection of predictors based on their longitudinal association with the outcome of interest and their discriminatory ability, allows estimation of an individual's absolute risk of complications. As a consequence, such models provide information about potential patient subgroups and their treatment needs. This review provides insight into the methodological issues specifically related to the development and validation of prediction models for diabetes complications. We summarise existing prediction models for macro- and microvascular complications, commonly included predictors, and examples of available validation studies. The review also discusses the potential of non-classical risk markers and omics-based predictors. Finally, it gives insight into the requirements and challenges related to the clinical applications and implementation of developed predictions models to optimise medical decision making. KW - Cardiovascular diseases KW - Complications in diabetes KW - Macrovascular KW - complications KW - Microvascular complications KW - Personalised medicine KW - Precision medicine KW - Precision prognostics KW - Review KW - Risk prediction KW - Risk KW - scores Y1 - 2022 U6 - https://doi.org/10.1007/s00125-022-05731-4 SN - 0012-186X SN - 1432-0428 PB - Springer CY - New York ER - TY - JOUR A1 - Eichelmann, Fabian A1 - Sellem, Laury A1 - Wittenbecher, Clemens A1 - Jäger, Susanne A1 - Kuxhaus, Olga A1 - Prada, Marcela A1 - Cuadrat, Rafael A1 - Jackson, Kim G. A1 - Lovegrove, Julie A. A1 - Schulze, Matthias Bernd T1 - Deep lipidomics in human plasma: cardiometabolic disease risk and effect of dietary fat modulation JF - Circulation N2 - Background: In blood and tissues, dietary and endogenously generated fatty acids (FAs) occur in free form or as part of complex lipid molecules that collectively represent the lipidome of the respective tissue. We assessed associations of plasma lipids derived from high-resolution lipidomics with incident cardiometabolic diseases and subsequently tested if the identified risk-associated lipids were sensitive to dietary fat modification. Methods: The EPIC Potsdam cohort study (European Prospective Investigation into Cancer and Nutrition) comprises 27 548 participants recruited within an age range of 35 to 65 years from the general population around Potsdam, Germany. We generated 2 disease-specific case cohorts on the basis of a fixed random subsample (n=1262) and all respective cohort-wide identified incident primary cardiovascular disease (composite of fatal and nonfatal myocardial infarction and stroke; n=551) and type 2 diabetes (n=775) cases. We estimated the associations of baseline plasma concentrations of 282 class-specific FA abundances (calculated from 940 distinct molecular species across 15 lipid classes) with the outcomes in multivariable-adjusted Cox models. We tested the effect of an isoenergetic dietary fat modification on risk-associated lipids in the DIVAS randomized controlled trial (Dietary Intervention and Vascular Function; n=113). Participants consumed either a diet rich in saturated FAs (control), monounsaturated FAs, or a mixture of monounsaturated and n-6 polyunsaturated FAs for 16 weeks. Results: Sixty-nine lipids associated (false discovery rate<0.05) with at least 1 outcome (both, 8; only cardiovascular disease, 49; only type 2 diabetes, 12). In brief, several monoacylglycerols and FA16:0 and FA18:0 in diacylglycerols were associated with both outcomes; cholesteryl esters, free fatty acids, and sphingolipids were largely cardiovascular disease specific; and several (glycero)phospholipids were type 2 diabetes specific. In addition, 19 risk-associated lipids were affected (false discovery rate<0.05) by the diets rich in unsaturated dietary FAs compared with the saturated fat diet (17 in a direction consistent with a potential beneficial effect on long-term cardiometabolic risk). For example, the monounsaturated FA-rich diet decreased diacylglycerol(FA16:0) by 0.4 (95% CI, 0.5-0.3) SD units and increased triacylglycerol(FA22:1) by 0.5 (95% CI, 0.4-0.7) SD units. Conclusions: We identified several lipids associated with cardiometabolic disease risk. A subset was beneficially altered by a dietary fat intervention that supports the substitution of dietary saturated FAs with unsaturated FAs as a potential tool for primary disease prevention. KW - cardiovascular diseases KW - cholesterol KW - diabetes mellitus KW - type 2 KW - diet KW - food KW - and nutrition KW - epidemiology KW - lipids Y1 - 2022 U6 - https://doi.org/10.1161/CIRCULATIONAHA.121.056805 SN - 0009-7322 SN - 1524-4539 VL - 146 IS - 1 SP - 21 EP - 35 PB - Lippincott Williams & Wilkins CY - Philadelphia ER - TY - JOUR A1 - Birukov, Anna A1 - Polemiti, Elli A1 - Jaeger, Susanne A1 - Stefan, Norbert A1 - Schulze, Matthias Bernd T1 - Fetuin-A and risk of diabetes-related vascular complications BT - a prospective study JF - Cardiovascular diabetology N2 - Background Fetuin-A is a hepatokine which has the capacity to prevent vascular calcification. Moreover, it is linked to the induction of metabolic dysfunction, insulin resistance and associated with increased risk of diabetes. It has not been clarified whether fetuin-A associates with risk of vascular, specifically microvascular, complications in patients with diabetes. We aimed to investigate whether pre-diagnostic plasma fetuin-A is associated with risk of complications once diabetes develops. Methods Participants with incident type 2 diabetes and free of micro- and macrovascular disease from the European Prospective Investigation into Cancer and Nutrition (EPIC)-Potsdam cohort (n = 587) were followed for microvascular and macrovascular complications (n = 203 and n = 60, respectively, median follow-up: 13 years). Plasma fetuin-A was measured approximately 4 years prior to diabetes diagnosis. Prospective associations between baseline fetuin-A and risk of complications were assessed with Cox regression. Results In multivariable models, fetuin-A was linearly inversely associated with incident total and microvascular complications, hazard ratio (HR, 95% CI) per standard deviation (SD) increase: 0.86 (0.74; 0.99) for total, 0.84 (0.71; 0.98) for microvascular and 0.92 (0.68; 1.24) for macrovascular complications. After additional adjustment for cardiometabolic plasma biomarkers, including triglycerides and high-density lipoprotein, the associations were slightly attenuated: 0.88 (0.75; 1.02) for total, 0.85 (0.72; 1.01) for microvascular and 0.95 (0.67; 1.34) for macrovascular complications. No interaction by sex could be observed (p > 0.10 for all endpoints). Conclusions Our data show that lower plasma fetuin-A levels measured prior to the diagnosis of diabetes may be etiologically implicated in the development of diabetes-associated microvascular disease. KW - Fetuin-A KW - biomarkers KW - epidemiology KW - Type 2 diabetes KW - vascular disease; KW - vascular calcification KW - microvascular complications Y1 - 2022 U6 - https://doi.org/10.1186/s12933-021-01439-8 SN - 1475-2840 VL - 21 IS - 1 PB - BMC CY - London ER - TY - JOUR A1 - Sellem, Laury A1 - Antoni, Rona A1 - Koutsos, Athanasios A1 - Ozen, Ezgi A1 - Wong, Gloria A1 - Ayyad, Hasnaa A1 - Weech, Michelle A1 - Schulze, Matthias Bernd A1 - Wernitz, Andreas A1 - Fielding, Barbara A. A1 - Robertson, M. Denise A1 - Jackson, Kim G. A1 - Griffin, Bruce A. A1 - Lovegrove, Julie A. T1 - Impact of a food-based dietary fat exchange model for replacing dietary saturated with unsaturated fatty acids in healthy men on plasma phospholipids fatty acid profiles and dietary patterns JF - European journal of nutrition N2 - Purpose UK guidelines recommend dietary saturated fatty acids (SFAs) should not exceed 10% total energy (%TE) for cardiovascular disease prevention, with benefits observed when SFAs are replaced with unsaturated fatty acids (UFAs). This study aimed to assess the efficacy of a dietary exchange model using commercially available foods to replace SFAs with UFAs. Methods Healthy men (n = 109, age 48, SD 11 year) recruited to the Reading, Imperial, Surrey, Saturated fat Cholesterol Intervention-1 (RISSCI-1) study (ClinicalTrials.Gov n degrees NCT03270527) followed two sequential 4-week isoenergetic moderate-fat (34%TE) diets: high-SFA (18%TE SFAs, 16%TE UFAs) and low-SFA (10%TE SFAs, 24%TE UFAs). Dietary intakes were assessed using 4-day weighed diet diaries. Nutrient intakes were analysed using paired t-tests, fasting plasma phospholipid fatty acid (PL-FA) profiles and dietary patterns were analysed using orthogonal partial least square discriminant analyses. Results Participants exchanged 10.2%TE (SD 4.1) SFAs for 9.7%TE (SD 3.9) UFAs between the high and low-SFA diets, reaching target intakes with minimal effect on other nutrients or energy intakes. Analyses of dietary patterns confirmed successful incorporation of recommended foods from commercially available sources (e.g. dairy products, snacks, oils, and fats), without affecting participants' overall dietary intakes. Analyses of plasma PL-FAs indicated good compliance to the dietary intervention and foods of varying SFA content. Conclusions RISSCI-1 dietary exchange model successfully replaced dietary SFAs with UFAs in free-living healthy men using commercially available foods, and without altering their dietary patterns. Further intervention studies are required to confirm utility and feasibility of such food-based dietary fat replacement models at a population level. KW - Dietary fat composition KW - Food-exchange model KW - Dietary compliance KW - Dairy biomarkers KW - Dietary fat replacement Y1 - 2022 U6 - https://doi.org/10.1007/s00394-022-02910-2 SN - 1436-6207 SN - 1436-6215 VL - 61 IS - 7 SP - 3669 EP - 3684 PB - Springer CY - Heidelberg ER - TY - JOUR A1 - Seidel-Jacobs, Esther A1 - Kohl, Fiona A1 - Tamayo, Miguel A1 - Rosenbauer, Joachim A1 - Schulze, Matthias Bernd A1 - Kuss, Oliver A1 - Rathmann, Wolfgang T1 - Impact of applying a diabetes risk score in primary care on change in physical activity BT - a pragmatic cluster randomised trial JF - Acta diabetologica N2 - Aim There is little evidence of the impact of diabetes risk scores on individual diabetes risk factors, motivation for behaviour changes and mental health. The aim of this study was to investigate the effect of applying a noninvasive diabetes risk score in primary care as component of routine health checks on physical activity and secondary outcomes. Methods Cluster randomised trial, in which primary care physicians (PCPs), randomised (1:1) by minimisation, enrolled participants with statutory health insurance without known diabetes, >= 35 years of age with a body mass index >= 27.0 kg/m(2). The German Diabetes Risk Score was applied as add-on to the standard routine health check, conducted in the controls. Primary outcome was the difference in participants' physical activity (International Physical Activity Questionnaire) after 12 months. Secondary outcomes included body mass index, perceived health, anxiety, depression, and motivation for lifestyle change. Analysis was by intention-to-treat principle using mixed models. Results 36 PCPs were randomised; remaining 30 PCPs (intervention: n = 16; control: n = 14) recruited 315 participants (intervention: n = 153; controls: n = 162). A slight increase in physical activity was observed in the intervention group with an adjusted mean change of 388 (95% confidence interval: - 235; 1011) metabolic equivalents minutes per week. There were no relevant changes in secondary outcomes. Conclusions The application of a noninvasive diabetes risk score alone is not effective in promoting physical activity in primary care. Clinical Trial Registration: ClinicalTrials.gov (NCT03234322, registration date: July 31, 2017). KW - Risk score KW - Risk prediction model KW - Type 2 diabetes KW - Prevention KW - Physical activity KW - Primary care Y1 - 2022 U6 - https://doi.org/10.1007/s00592-022-01895-y SN - 0940-5429 SN - 1432-5233 VL - 59 IS - 8 SP - 1031 EP - 1040 PB - Springer CY - Mailand ER - TY - JOUR A1 - Bishop, Christopher Allen A1 - Machate, Tina A1 - Henning, Thorsten A1 - Henkel-Oberländer, Janin A1 - Püschel, Gerhard A1 - Weber, Daniela A1 - Grune, Tilman A1 - Klaus, Susanne A1 - Weitkunat, Karolin T1 - Detrimental effects of branched-chain amino acids in glucose tolerance can be attributed to valine induced glucotoxicity in skeletal muscle JF - Nutrition & Diabetes N2 - Objective: Current data regarding the roles of branched-chain amino acids (BCAA) in metabolic health are rather conflicting, as positive and negative effects have been attributed to their intake. Methods: To address this, individual effects of leucine and valine were elucidated in vivo (C57BL/6JRj mice) with a detailed phenotyping of these supplementations in high-fat (HF) diets and further characterization with in vitro approaches (C2C12 myocytes). Results: Here, we demonstrate that under HF conditions, leucine mediates beneficial effects on adiposity and insulin sensitivity, in part due to increasing energy expenditure-likely contributing partially to the beneficial effects of a higher milk protein intake. On the other hand, valine feeding leads to a worsening of HF-induced health impairments, specifically reducing glucose tolerance/ insulin sensitivity. These negative effects are driven by an accumulation of the valine-derived metabolite 3-hydroxyisobutyrate (3HIB). Higher plasma 3-HIB levels increase basal skeletal muscle glucose uptake which drives glucotoxicity and impairs myocyte insulin signaling. Conclusion: These data demonstrate the detrimental role of valine in an HF context and elucidate additional targetable pathways in the etiology of BCAA-induced obesity and insulin resistance. Y1 - 2022 U6 - https://doi.org/10.1038/s41387-022-00200-8 SN - 2044-4052 VL - 12 IS - 1 PB - Nature Publishing Group CY - London ER - TY - JOUR A1 - Herpich, Catrin A1 - Müller-Werdan, Ursula A1 - Norman, Kristina T1 - Role of plant-based diets in promoting health and longevity JF - Maturitas : The European menopause journal N2 - Western-style obesity-promoting diets are associated with increased inflammation, higher disease incidence and mortality. In contrast, plant-based diets (PBDs), which incorporate large amounts of vegetables and fruit, legumes, whole grains and only a small amount of meat, are generally associated with better health and lower mortality. This narrative review summarizes the evidence on health and life span in adults adhering to PBDs and discusses the potentially longevity-promoting mechanism of PBDs as well as limitations due to nutrient deficiencies. Epidemiologic studies consistently report lower mortality rates in adults who adhering to PBDs when compared with people whose diet regularly includes meat. PBDs are associated with many health benefits, such as improved metabolic and inflammatory profile. In turn, the incidence of cardiovascular disease is lower in adults consuming PBDs, which contributes to their better health. The health-promoting effects of PBDs are still not entirely clear but most likely multifactorial and include modulation of the gut microbiome. The interest in possible longevity-promoting mechanisms of PBDs has increased in recent years, as many characteristics of PBDs such as protein restriction and restriction of certain amino acids are known to extend the life span. While there is ample evidence from animal studies, large-scale human studies, which also provide insight into the specific mechanisms of the effect of PBDs on longevity, are missing. However, due to the lower protein content of PBDs, there appears to be an age limit for the anticipated health effects, as adults over 65 require larger amounts of protein. KW - plant-based diets KW - mortality KW - health span KW - longevity Y1 - 2022 U6 - https://doi.org/10.1016/j.maturitas.2022.07.003 SN - 0378-5122 SN - 1873-4111 VL - 165 SP - 47 EP - 51 PB - Elsevier Science CY - Amsterdam [u.a.] ER - TY - JOUR A1 - Nicolai, Merle Marie A1 - Witt, Barbara A1 - Friese, Sharleen A1 - Michaelis, Vivien A1 - Hölz-Armstrong, Lisa A1 - Martin, Maximilian A1 - Ebert, Franziska A1 - Schwerdtle, Tanja A1 - Bornhorst, Julia T1 - Mechanistic studies on the adverse effects of manganese overexposure in differentiated LUHMES cells JF - Food and chemical toxicology N2 - Manganese (Mn) is an essential trace element, but overexposure is associated with toxicity and neurological dysfunction. Accumulation of Mn can be observed in dopamine-rich regions of the brain in vivo and Mn-induced oxidative stress has been discussed extensively. Nevertheless, Mn-induced DNA damage, adverse effects of DNA repair, and possible resulting consequences for the neurite network are not yet characterized. For this, LUHMES cells were used, as they differentiate into dopaminergic-like neurons and form extensive neurite networks. Experiments were conducted to analyze Mn bioavailability and cytotoxicity of MnCl2, indicating a dose-dependent uptake and substantial cytotoxic effects. DNA damage, analyzed by means of 8-oxo-7,8-dihydro-2'-guanine (8oxodG) and single DNA strand break formation, showed significant dose- and time-dependent increase of DNA damage upon 48 h Mn exposure. Furthermore, the DNA damage response was increased which was assessed by analytical quantification of poly(ADP-ribosyl)ation (PARylation). Gene expression of the respective DNA repair genes was not significantly affected. Degradation of the neuronal network is significantly altered by 48 h Mn exposure. Altogether, this study contributes to the characterization of Mn-induced neurotoxicity, by analyzing the adverse effects of Mn on genome integrity in dopaminergic-like neurons and respective outcomes. KW - Manganese KW - Dopaminergic neurons KW - DNA integrity KW - DNA repair KW - Neurodegeneration KW - Oxidative stress KW - Genotoxicity Y1 - 2022 U6 - https://doi.org/10.1016/j.fct.2022.112822 SN - 0278-6915 SN - 1873-6351 VL - 161 PB - Elsevier CY - Oxford ER - TY - JOUR A1 - Ijomone, Omamuyovwi M. A1 - Iroegbu, Joy D. A1 - Morcillo, Patricia A1 - Ayodele, Akinyemi J. A1 - Ijomone, Olayemi K. A1 - Bornhorst, Julia A1 - Schwerdtle, Tanja A1 - Aschner, Michael T1 - Sex-dependent metal accumulation and immunoexpression of Hsp70 and Nrf2 in rats' brain following manganese exposure JF - Environmental toxicology N2 - Manganese (Mn), although important for multiple cellular processes, has posed environmental health concerns due to its neurotoxic effects. In recent years, there have been extensive studies on the mechanism of Mn-induced neuropathology, as well as the sex-dependent vulnerability to its neurotoxic effects. Nonetheless, cellular mechanisms influenced by sex differences in susceptibility to Mn have yet to be adequately characterized. Since oxidative stress is a key mechanism of Mn neurotoxicity, here, we have probed Hsp70 and Nrf2 proteins to investigate the sex-dependent changes following exposure to Mn. Male and female rats were administered intraperitoneal injections of MnCl2 (10 mg/kg and 25 mg/kg) 48 hourly for a total of eight injections (15 days). We evaluated changes in body weight, as well as Mn accumulation, Nrf2 and Hsp70 expression across four brain regions; striatum, cortex, hippocampus and cerebellum in both sexes. Our results showed sex-specific changes in body-weight, specifically in males but not in females. Additionally, we noted sex-dependent accumulation of Mn in the brain, as well as in expression levels of Nrf2 and Hsp70 proteins. These findings revealed sex-dependent susceptibility to Mn-induced neurotoxicity corresponding to differential Mn accumulation, and expression of Hsp70 and Nrf2 across several brain regions. KW - brain KW - female KW - male KW - manganese KW - oxidative stress Y1 - 2022 U6 - https://doi.org/10.1002/tox.23583 SN - 1520-4081 SN - 1522-7278 VL - 37 IS - 9 SP - 2167 EP - 2177 PB - Wiley CY - New York, NY ER - TY - THES A1 - Knoche, Lisa T1 - Untersuchung von Transformationsprodukten ausgewählter Tierarzneimittel generiert durch Elektrochemie, Mikrosomal Assay, Hydrolyse und Photolyse T1 - Investigation of transformation products of selected veterinary drugs generated by electrochemistry, microsomal assays, hydrolysis & photolysis N2 - The knowledge of transformation pathways and transformation products of veterinary drugs is important for health, food and environmental matters. Residues, consisting of original veterinary drug and transformation products, are found in food products of animal origin as well as the environment (e.g., soil or surface water). Several transformation processes can alter the original veterinary drug, ranging from biotransformation in living organism to environmental degradation processes like photolysis, hydrolysis, or microbial processes. In this thesis, four veterinary drugs were investigated, three ionophore antibiotics Monensin, Salinomycin and Lasalocid and the macrocyclic lactone Moxidectin. Ionophore antibiotics are mainly used to cure and prevent coccidiosis in poultry especially prophylactic in broiler farming. Moxidectin is an antiparasitic drug that is used for the treatment of internal and external parasites in food-producing and companion animals. The main objective of this work is to employ different laboratory approaches to generate and identify transformation products. The identification was conducted using high-resolution mass spectrometry (HRMS). A major focus was placed on the application of electrochemistry for simulation of transformation processes. The electrochemical reactor – equipped with a three-electrode flow-through cell – enabled the oxidation or reduction by applying a potential. The transformation products derived were analyzed by online coupling of the electrochemical reactor and a HRMS and offline by liquid chromatography (LC) combined with HRMS. The main modification reaction of the identified transformation products differed for each investigated veterinary drug. Monensin showed decarboxylation and demethylation as the main modification reactions, for Salinomycin mostly decarbonylation occurred and for Lasalocid methylation was prevalent. For Moxidectin, I observed an oxidation (hydroxylation) reaction and adduct formation with solvent. In general, for Salinomycin and Lasalocid, more transient transformation products (online measurement) than stable transformation products (offline measurements) were detected. By contrast, the number of transformation products using online and offline measurements were identical for Monensin and Moxidectin. As a complementary approach, metabolism tests with rat or human liver microsomes were conducted for the ionophore antibiotics. Monensin was investigated by using rat liver microsomes and the transformation products identified were based on decarboxylation and demethylation. Salinomycin and Lasalocid were converted by human and rat liver microsomes. For both substances, more transformation products were found by using human liver microsomes. The transformation products of the rat liver microsome conversion were redundant, and the transformation products were also found at the human liver microsome assay. Oxidation (hydroxylation) was found to be the main modification reaction for both. In addition, a frequent ion exchange between sodium and potassium was identified. The final two experiments were performed for one substance each, whereby the hydrolysis of Monensin and the photolysis of Moxidectin was investigated. The transformation products of the pH-dependent hydrolysis were based on ring-opening and dehydration. Moxidectin formed several transformation products by irradiation with UV-C light and the main modification reactions were isomeric changes, (de-)hydration and changes of the methoxime moiety. In summary, transformation products of the four investigated veterinary drugs were generated by the different laboratory approaches. Most of the transformation products were identified for the first time. The resulting findings provide an improved understanding of clarifying the transformation behavior. N2 - Das Wissen über die Entstehung und Identifizierung von Transformationsprodukten von Tierarzneimitteln ist wichtig für Gesundheit, Lebensmittel und Umwelt. Rückstände, dazu zählen die Ausgangssubstanzen und gebildete Transformationsprodukte, werden in tierischen Produkten und in Umweltproben (zum Beispiel im Boden oder in Oberflächengewässern) nachgewiesen. Verschiedenste Transformationsprozesse verändern die Ausgangssubstanz, dazu zählen Biotransformationsprozesse von Lebewesen bis hin zu Abbauprozesse in der Umwelt, wie Photolyse, Hydrolyse oder mikrobielle Umwandlungen. Die Tierarzneimittel, die im Rahmen dieser Arbeit untersucht wurden, sind drei Ionophore Antibiotika: Monensin, Salinomycin und Lasalocid. Des Weiteren war das makrozyklische Lakton Moxidectin Teil der Untersuchung. Ionophore Antibiotika werden gegen Kokzidiose vor allem in der Geflügelzucht genutzt. Der oftmals prophylaktische Einsatz erfolgt als Futtermittelzusatz. Das Antiparasitikum Moxidectin wird hingegen für die Behandlung gegen interne and externe Parasiten bei Nutz- und Haustieren eingesetzt. Das Ziel dieser Arbeit war es, Transformationsprodukte zu identifizieren, welche durch verschiedene Experimente im Labor generiert werden. Zur Identifizierung wurde hochaufgelöste Massenspektrometrie genutzt, zur Strukturaufklärung wurden MS/MS-Spektren ausgewertet. Hauptaugenmerk lag auf der Simulation von Transformationsprozessen durch Elektrochemie. In der Durchflusszelle des elektrochemischen Reaktors werden Oxidations- oder Reduktionsprozesse durch Anlegung eines Potentials ermöglicht. Die Analyse der entstehenden Transformationsprodukte erfolgt entweder durch die direkte Kopplung zwischen dem elektrochemischen Reaktor und dem Massenspektrometer oder offline, wobei das Eluat des elektrochemischen Reaktors mittels Flüssigkeitschromatographie-Massenspektrometrie analysiert wird. Für jedes Tierarzneimittel kann eine typische Modifizierung, welche zur Bildung des Transformationsproduktes führt, identifiziert werden. Die elektrochemisch induzierte Modifikation von Monensin ist Decarboxylierung und Demethylierung. Salinomycin weist Decarbonylierung auf und Lasalocid Methylierung. Für Moxidectin wurden Oxidation (Hydroxylierung) und Adduktbildung mit Lösemittelmolekülen gefunden. Im Allgemeinen wurden bei Salinomycin und Lasalocid mehr instabile Transformationsprodukte (online Kopplung) gefunden als stabile Transformationsprodukte (offline Messung). Im Gegensatz dazu ist die Zahl der detektierten Transformationsprodukte (online und offline) gleich für Monensin und Moxidectin. Als Weiteres wurden für die Ionophore Antibiotika Metabolismustests mit Ratten- bzw. menschlichen Lebermikrosomen durchgeführt. Monensin wurde nur mit Rattenlebermikrosomen umgesetzt und die entstandenen Transformations-produkte basieren auf Decarboxylierung und Demethylierung. Transformations-produkte von Salinomycin und Lasalocid wurden durch Tests mit Ratten- und menschlichen Lebermikrosomen generiert. Bei der Umsetzung mit den Rattenlebermikrosomen wurden identische Transformationsprodukte gefunden im Vergleich zur Umsetzung mit den menschlichen Lebermikrosomen. Neben der Oxidation (Hydroxylierung), als am meisten vorkommende Modifizierung, wurde für beide Ionophore ein Ionenaustausch zwischen Natrium und Kalium festgestellt. Zuletzt wurde die Hydrolyse von Monensin und die Photolyse von Moxidectin untersucht. Die gebildeten Transformationsprodukte der pH-abhängigen Hydrolyse von Monensin basieren auf Ringöffnungsreaktionen und Wasserabspaltung. Eine Vielzahl an Transformationsprodukten von Moxidectin zeigt sich nach der Bestrahlung mit UV-C Licht. Als Modifizierung treten Veränderungen der Stereochemie auf, Wasseranlagerung bzw. Abspaltung, und Veränderungen an der Methyloxim-Gruppe auf. Zusammengefasst wurden verschiedenste Transformationsprodukte der vier gewählten Tierarzneimittel durch unterschiedliche Experimente gebildet. Die meisten Transformationsprodukte wurden im Rahmen dieser Arbeit erstmals identifiziert, vor allem die elektrochemische Erzeugung der Transformationsprodukte wurde erstmals untersucht. Die resultierenden Ergebnisse führen zu einem weiterführenden Verständnis zur Aufklärung des Transformationsverhaltens. KW - Transformation product KW - Veterinary drugs KW - Electrochemistry KW - Microsomal KW - Assay High-resolution mass spectrometry KW - Transformationsprodukt KW - Tierarzneimittel KW - Elektrochemie KW - Mikrosomal KW - Assay hochauflösende Massenspektrometrie Y1 - 2022 ER - TY - THES A1 - Grimmer, Benjamin T1 - Pannexin 1 BT - a novel regulator of hypoxic pulmonary vasoconstriction BT - ein neuer Regulator der hypoxischen pulmonalen Vasokonstriktion N2 - Hypoxic pulmonary vasoconstriction is an active alveolar hypoxia-caused physiological response redirecting pulmonary blood flow from poorly ventilated areas to better oxygenated lung regions in order to optimize oxygen supply. However, the signaling pathways underlying this pulmonary vascular response remain an area under investigation. In the present study I investigated the functional relevance of Pannexin 1 (Panx1)-mediated ATP release in hypoxic pulmonary vasoconstriction and chronic hypoxic pulmonary hypertension using murine isolated perfused lungs, chronic hypoxic mice, and pulmonary artery smooth muscle cell culture. In isolated mouse lungs, switch to hypoxic gas induced a marked increase in pulmonary artery pressure. Pharmacological inhibition of Panx1 using probenecid, Panx1 specific inhibitory peptide (10Panx1) or spironolactone as well as genetic deletion of Panx1 in smooth muscle cells diminished hypoxic pulmonary vasoconstriction in isolated perfused mouse lungs. Fura-2 imaging revealed a reduced Ca2+ response to hypoxia in pulmonary artery smooth muscle cells treated with spironolactone or 10Panx1. Although these findings suggested an important role of Panx1 in HPV, neither smooth muscle cell nor endothelial cell specific genetic deletion of Panx1 prevented the development of pulmonary hypertension in chronic hypoxic mice. Surprisingly, hypoxia did not induce ATP release and inhibition of purinergic receptors or ATP degradation by ATPase failed to decrease the pulmonary vasoconstriction response to hypoxia in isolated perfused mouse lungs. However, Panx1 antagonism as well as TRPV4 inhibition prevented the hypoxia-induced increase in intracellular Ca2+ concentration in pulmonary artery smooth muscle cells in an additive manner suggesting that Panx1 might modulate intracellular Ca2+ signaling independently of the ATP-P2-TRPV4 signaling axis. In line with this assumption, overexpression of Panx1 in HeLa cells increased intracellular Ca2+ concentrations in response to acute hypoxia. Conclusion: In this study I identifiy Panx1 as novel regulator of HPV.. Yet, the role of Panx1 was not attributable to the release of ATP and downstream P2 signaling pathways or activation of TRPV4 but rathter relates to a role of Panx1 as indirect or direct modulator of the Ca2+ response to hypoxia in PASMCs. Genetic deletion of Panx1 did not influence the development of chronic hypoxic pulmonary hypertension in mice. N2 - Die hypoxische pulmonale Vasokonstriktion ist ein durch alveoläre Hypoxie ausgelöster aktiver physiologischer Mechanismus, der den pulmonalen Blutfluss aus sauerstoffärmeren Bereichen der Lunge in besser ventilierte Regionen umleitet, um die Sauerstoffversorgung zu optimieren. Die molekularen Signalwege, welche die hypoxische pulmonale Vasokonstriktion regulieren, sind noch immer teilweise unverstanden. In der vorliegenden Studie wurde die Bedeutung des durch Pannexin 1 (Panx1) vermittelten ATP-Transports in der hypoxischen pulmonnalen Vasokonstriktion und der chronisch hypoxischen pulmonalen Hypertonie am Modell der isoliert perfundierten Lunge, im Mausmodells der chronisch hypoxischen pulmonalen Hypertonie und in Zellkulturversuchen mit pulmonal-arteriellen glatten Muskelzellen untersucht. In der isolierten Mauslunge induzierte der Wechsel zu hypoxischem Gas bei der Ventilation einen deutlichen Anstieg des pulmonal-arteriellen Drucks. Sowohl die pharmakologische Inhibition von Panx1 mit Probenecid, mit dem Panx1-spezifischen inhibitorischen Peptid (10Panx1) und mit Spironolacton als auch die genetische Deletion von Panx1 in glatten Muskelzellen schwächten die hypoxische pulmonale Vasokonstriktion in der Mauslunge ab. Parallel dazu zeigten Fura 2 Messungen eine verminderte Hypoxie-induzierte Kalziumantwort in pulmonal-arteriellen glatten Muskelzellen, die mit Spironolacton oder 10Panx1 behandelt wurden. Obwohl diese Ergebnisse auf eine wichtige Rolle für Panx1 in der hypoxischen pulmonalen Vasokonstriktion schließen lassen, hatte die genetische Deletion von Panx1 in glatten Muskelzellen oder Endothelzellen in Mäusen keinen Einfluss auf die Entwicklung einer chronisch hypoxischen pulmonalen Hypertonie. Überraschenderweise induzierte Hypoxie nicht die Freisetzung von ATP und die Hemmung purinerger Rezeptoren oder der Abbau von ATP durch ATPasen führte nicht zu einer Abschwächung der hypoxischen pulmonalen Vasokonstriktion. Die gleichzeitige Hemmung von Panx1 und TRPV4 verursachte einen additiven Effekt bei der Reduktion des Anstiegs der intrazellulären Kalziumkonzentration unter akut hypoxischen Bedingungen, was darauf schließen lässt, dass Panx1 die intrazelluläre Kalziumkonzentration unabhängig von der ATP-P2-TRPV4 Signalachse reguliert. Entsprechend führte eine Überexpression von Panx1 in HeLa-Zellen zu einer verstärkten Kalziumantwort, was ebenfalls auf eine unabhängige Regulierung der intrazellulären Ca2+-Konzentration durch Panx1 schließen lässt. Schlussfolgerung: In der vorliegenden Studie identifiziere ich Panx1 als einen neuen Regulator der HPV. Die Rolle von Panx1 in der HPV war jedoch nicht auf die Freisetzung von ATP und nachgerichtete P2-Signalwege oder die Aktivierung von TRPV4 zuruckzuführen. Viel mehr scheint Panx1 die durch Hypoxie induzierte intrazelluläre Kalziumantwort von PASMCs indirekt oder direkt zu modulieren. Die genetische Deletion von Panx1 hatte keinen Einfluss auf die Ausbildung einer chronisch hypoxischen pulmonalen Hypertonie in Mäusen. T2 - Pannexin 1 KW - hypoxic pulmonary vasoconstriction KW - Pannexin 1 KW - pulmonary artery smooth muscle cells KW - calcium KW - hypoxische pulmonale Vasokonstriktion KW - pulmonalarterielle glatte Muskelzellen KW - Kalzium Y1 - 2022 ER - TY - JOUR A1 - Jannasch, Franziska A1 - Nickel, Daniela V. A1 - Bergmann, Manuela M. A1 - Schulze, Matthias Bernd T1 - A new evidence-based diet score to capture associations of food consumption and chronic disease risk JF - Nutrients / Molecular Diversity Preservation International (MDPI) N2 - Previously, the attempt to compile German dietary guidelines into a diet score was predominantly not successful with regards to preventing chronic diseases in the EPIC-Potsdam study. Current guidelines were supplemented by the latest evidence from systematic reviews and expert papers published between 2010 and 2020 on the prevention potential of food groups on chronic diseases such as type 2 diabetes, cardiovascular diseases and cancer. A diet score was developed by scoring the food groups according to a recommended low, moderate or high intake. The relative validity and reliability of the diet score, assessed by a food frequency questionnaire, was investigated. The consideration of current evidence resulted in 10 key food groups being preventive of the chronic diseases of interest. They served as components in the diet score and were scored from 0 to 1 point, depending on their recommended intake, resulting in a maximum of 10 points. Both the reliability (r = 0.53) and relative validity (r = 0.43) were deemed sufficient to consider the diet score as a stable construct in future investigations. This new diet score can be a promising tool to investigate dietary intake in etiological research by concentrating on 10 key dietary determinants with evidence-based prevention potential for chronic diseases. KW - diet score KW - dietary guidelines KW - food groups KW - chronic disease KW - type 2 KW - diabetes KW - cardiovascular disease KW - cancer KW - prevention KW - reliability; KW - validity Y1 - 2022 U6 - https://doi.org/10.3390/nu14112359 SN - 2072-6643 VL - 14 IS - 11 PB - MDPI CY - Basel ER - TY - JOUR A1 - Koelman, Liselot A. A1 - Huybrechts, Inge A1 - Biesbroek, Sander A1 - van 't Veer, Pieter A1 - Schulze, Matthias Bernd A1 - Aleksandrova, Krasimira T1 - Dietary choices impact on greenhouse gas emissions BT - determinants and correlates in a sample of adults from Eastern Germany JF - Sustainability / Multidisciplinary Digital Publishing Institute (MDPI) N2 - The present study estimated diet-related greenhouse gas emissions (GHGE) and land use (LU) in a sample of adults, examined main dietary contributors of GHGE, and evaluated socio demographic, lifestyle, and wellbeing factors as potential determinants of high environmental impact. A cross-sectional design based on data collected from the European Prospective Investigation into Cancer and Nutrition (EPIC)-Potsdam cohort (2010-2012) was used. Usual diet was assessed using food frequency questionnaires. Diet-related GHGE and LU were calculated using a European-average lifecycle analyses-food-item database (SHARP-ID). Information on potential determinants were collected using self-administered questionnaires. Men (n = 404) and women (n = 401) at an average age of 66.0 +/- 8.4 years were included. Dietary-related energy-adjusted GHGE in men was 6.6 +/- 0.9 and in women was 7.0 +/- 1.1 kg CO2 eq per 2000 kcal. LU in men was 7.8 +/- 1.2 and in women was 7.7 +/- 1.2 m(2)/year per 2000 kcal. Food groups contributing to most GHGE included dairy, meat and non-alcoholic beverages. Among women, being single, having a job, being a smoker and having higher BMI were characteristics associated with higher GHGE, whereas for men these included being married, longer sleeping duration and higher BMI. Further studies are warranted to provide insights into population-specific determinants of sustainable dietary choices. KW - dietary choices KW - environmental impact KW - greenhouse gas emissions KW - land use KW - determinants Y1 - 2022 U6 - https://doi.org/10.3390/su14073854 SN - 2071-1050 VL - 14 IS - 7 PB - MDPI CY - Basel ER - TY - JOUR A1 - Hocher, Berthold A1 - Lu, Yong-Ping A1 - Reichetzeder, Christoph A1 - Zhang, Xiaoli A1 - Tsuprykov, Oleg A1 - Rahnenführer, Jan A1 - Xie, Li A1 - Li, Jian A1 - Hu, Liang A1 - Krämer, Bernhard K. A1 - Hasan, Ahmed A. T1 - Paternal eNOS deficiency in mice affects glucose homeostasis and liver glycogen in male offspring without inheritance of eNOS deficiency itself JF - Diabetologia N2 - Aims/hypothesis It was shown that maternal endothelial nitric oxide synthase (eNOS) deficiency causes fatty liver disease and numerically lower fasting glucose in female wild-type offspring, suggesting that parental genetic variants may influence the offspring's phenotype via epigenetic modifications in the offspring despite the absence of a primary genetic defect. The aim of the current study was to analyse whether paternal eNOS deficiency may cause the same phenotype as seen with maternal eNOS deficiency. Methods Heterozygous (+/-) male eNOS (Nos3) knockout mice or wild-type male mice were bred with female wild-type mice. The phenotype of wild-type offspring of heterozygous male eNOS knockout mice was compared with offspring from wild-type parents. Results Global sperm DNA methylation decreased and sperm microRNA pattern altered substantially. Fasting glucose and liver glycogen storage were increased when analysing wild-type male and female offspring of +/- eNOS fathers. Wild-type male but not female offspring of +/- eNOS fathers had increased fasting insulin and increased insulin after glucose load. Analysing candidate genes for liver fat and carbohydrate metabolism revealed that the expression of genes encoding glucocorticoid receptor (Gr; also known as Nr3c1) and peroxisome proliferator-activated receptor gamma coactivator 1-alpha (Pgc1a; also known as Ppargc1a) was increased while DNA methylation of Gr exon 1A and Pgc1a promoter was decreased in the liver of male wild-type offspring of +/- eNOS fathers. The endocrine pancreas in wild-type offspring was not affected.
Conclusions/interpretation Our study suggests that paternal genetic defects such as eNOS deficiency may alter the epigenome of the sperm without transmission of the paternal genetic defect itself. In later life wild-type male offspring of +/- eNOS fathers developed increased fasting insulin and increased insulin after glucose load. These effects are associated with increased Gr and Pgc1a gene expression due to altered methylation of these genes. KW - eNOS KW - Glucocorticoid receptor KW - Insulin resistance KW - Paternal programming; KW - PGC1a Y1 - 2022 U6 - https://doi.org/10.1007/s00125-022-05700-x SN - 0012-186X SN - 1432-0428 VL - 65 IS - 7 SP - 1222 EP - 1236 PB - Springer CY - New York ER - TY - JOUR A1 - Varão Moura, Alexandre A1 - Aparecido Rosini Silva, Alex A1 - Domingos Santo da Silva, José A1 - Aleixo Leal Pedroza, Lucas A1 - Bornhorst, Julia A1 - Stiboller, Michael A1 - Schwerdtle, Tanja A1 - Gubert, Priscila T1 - Determination of ions in Caenorhabditis elegans by ion chromatography JF - Journal of chromatography. B N2 - The Caenorhabditis elegans (C. elegans) is a model organism that has been increasingly used in health and environmental toxicity assessments. The quantification of such elements in vivo can assist in studies that seek to relate the exposure concentration to possible biological effects. Therefore, this study is the first to propose a method of quantitative analysis of 21 ions by ion chromatography (IC), which can be applied in different toxicity studies in C. elegans. The developed method was validated for 12 anionic species (fluoride, acetate, chloride, nitrite, bromide, nitrate, sulfate, oxalate, molybdate, dichromate, phosphate, and perchlorate), and 9 cationic species (lithium, sodium, ammonium, thallium, potassium, magnesium, manganese, calcium, and barium). The method did not present the presence of interfering species, with R2 varying between 0.9991 and 0.9999, with a linear range from 1 to 100 mu g L-1. Limits of detection (LOD) and limits of quantification (LOQ) values ranged from 0.2319 mu g L-1 to 1.7160 mu g L-1 and 0.7028 mu g L-1 to 5.1999 mu g L-1, respectively. The intraday and interday precision tests showed an Relative Standard Deviation (RSD) below 10.0 % and recovery ranging from 71.0 % to 118.0 % with a maximum RSD of 5.5 %. The method was applied to real samples of C. elegans treated with 200 uM of thallium acetate solution, determining the uptake and bioaccumulated Tl+ content during acute exposure. KW - ion chromatography KW - C. elegans KW - method development KW - method validation KW - ion quantification Y1 - 2022 U6 - https://doi.org/10.1016/j.jchromb.2022.123312 SN - 1570-0232 SN - 1873-376X VL - 1204 PB - Elsevier CY - Amsterdam [u.a.] ER - TY - JOUR A1 - Delpero, Manuel A1 - Arends, Danny A1 - Sprechert, Maximilian A1 - Krause, Florian A1 - Kluth, Oliver A1 - Schürmann, Annette A1 - Brockmann, Gudrun A. A1 - Hesse, Deike T1 - Identification of four novel QTL linked to the metabolic syndrome in the Berlin Fat Mouse JF - International journal of obesity / North American Association for the Study of Obesity N2 - Background The Berlin Fat Mouse Inbred line (BFMI) is a model for obesity and the metabolic syndrome. This study aimed to identify genetic variants associated with impaired glucose metabolism using the obese lines BFMI861-S1 and BFMI861-S2, which are genetically closely related, but differ in several traits. BFMI861-S1 is insulin resistant and stores ectopic fat in the liver, whereas BFMI861-S2 is insulin sensitive. Methods In generation 10, 397 males of an advanced intercross line (AIL) BFMI861-S1 x BFMI861-S2 were challenged with a high-fat, high-carbohydrate diet and phenotyped over 25 weeks. QTL-analysis was performed after selective genotyping of 200 mice using the GigaMUGA Genotyping Array. Additional 197 males were genotyped for 7 top SNPs in QTL regions. For the prioritization of positional candidate genes whole genome sequencing and gene expression data of the parental lines were used. Results Overlapping QTL for gonadal adipose tissue weight and blood glucose concentration were detected on chromosome (Chr) 3 (95.8-100.1 Mb), and for gonadal adipose tissue weight, liver weight, and blood glucose concentration on Chr 17 (9.5-26.1 Mb). Causal modeling suggested for Chr 3-QTL direct effects on adipose tissue weight, but indirect effects on blood glucose concentration. Direct effects on adipose tissue weight, liver weight, and blood glucose concentration were suggested for Chr 17-QTL. Prioritized positional candidate genes for the identified QTL were Notch2 and Fmo5 (Chr 3) and Plg and Acat2 (Chr 17). Two additional QTL were detected for gonadal adipose tissue weight on Chr 15 (67.9-74.6 Mb) and for body weight on Chr 16 (3.9-21.4 Mb). Conclusions QTL mapping together with a detailed prioritization approach allowed us to identify candidate genes associated with traits of the metabolic syndrome. In addition, we provided evidence for direct and indirect genetic effects on blood glucose concentration in the insulin-resistant mouse line BFMI861-S1. Y1 - 2022 U6 - https://doi.org/10.1038/s41366-021-00991-3 SN - 0307-0565 SN - 1476-5497 VL - 46 IS - 2 SP - 307 EP - 315 PB - Nature Publ. Group CY - Avenel, NJ ER - TY - JOUR A1 - Li, Jian A1 - Shen, Jinhua A1 - Zhang, Xiaoli A1 - Peng, Yangqin A1 - Zhang, Qin A1 - Hu, Liang A1 - Reichetzeder, Christoph A1 - Zeng, Suimin A1 - Li, Jing A1 - Tian, Mei A1 - Gong, Fei A1 - Lin, Ge A1 - Hocher, Berthold T1 - Risk factors associated with preterm birth after IVF/ICSI JF - Scientific reports N2 - In vitro fertilization/intracytoplasmic sperm injection (IVF/ICSI) is associated with an increased risk of preterm (33rd-37th gestational week) and early preterm birth (20th-32nd gestational week). The underlying general and procedure related risk factors are not well understood so far. 4328 infertile women undergoing IVF/ICSI were entered into this study. The study population was divided into three groups: (a) early preterm birth group (n = 66), (b) preterm birth group (n = 675) and (c) full-term birth group (n = 3653). Odds for preterm birth were calculated by stepwise multivariate logistic regression analysis. We identified seven independent risk factors for preterm birth and four independent risk factors for early preterm birth. Older (> 39) or younger (< 25) maternal age (OR: 1.504, 95% CI 1.108-2.042, P = 0.009; OR: 2.125, 95% CI 1.049-4.304, P = 0.036, respectively), multiple pregnancy (OR: 9.780, 95% CI 8.014-11.935, P < 0.001; OR: 8.588, 95% CI 4.866-15.157, P < 0.001, respectively), placenta previa (OR: 14.954, 95% CI 8.053-27.767, P < 0.001; OR: 16.479, 95% CI 4.381-61.976, P < 0.001, respectively), and embryo reduction (OR: 3.547, 95% CI 1.736-7.249, P = 0.001; OR: 7.145, 95% CI 1.990-25.663, P = 0.003, respectively) were associated with preterm birth and early preterm birth, whereas gestational hypertension (OR: 2.494, 95% CI 1.770-3.514, P < 0.001), elevated triglycerides (OR: 1.120, 95% CI 1.011-1.240, P = 0.030) and shorter activated partial thromboplastin time (OR: 0.967, 95% CI 0.949-0.985, P < 0.001) were associated only with preterm birth. In conclusion, preterm and early preterm birth risk factors in patients undergoing assisted IVF/ICSI are in general similar to those in natural pregnancy. The lack of some associations in the early preterm group was most likely due to the lower number of early preterm birth cases. Only embryo reduction represents an IVF/ICSI specific risk factor. Y1 - 2022 U6 - https://doi.org/10.1038/s41598-022-12149-w SN - 2045-2322 VL - 12 IS - 1 PB - Nature Research CY - Berlin ER - TY - THES A1 - Baeseler, Jessica T1 - Trace element effects on longevity and neurodegeneration with focus on C. elegans T1 - Effekte von Spurenelementen auf die Lebensdauer und Neurodegeneration mit Fokus auf C. elegans N2 - The trace elements zinc and manganese are essential for human health, especially due to their enzymatic and protein stabilizing functions. If these elements are ingested in amounts exceeding the requirements, regulatory processes for maintaining their physiological concentrations (homeostasis) can be disturbed. Those homeostatic dysregulations can cause severe health effects including the emergence of neurodegenerative disorders such as Parkinson’s disease (PD). The concentrations of essential trace elements also change during the aging process. However, the relations of cause and consequence between increased manganese and zinc uptake and its influence on the aging process and the emergence of the aging-associated PD are still rarely understood. This doctoral thesis therefore aimed to investigate the influence of a nutritive zinc and/or manganese oversupply on the metal homeostasis during the aging process. For that, the model organism Caenorhabditis elegans (C. elegans) was applied. This nematode suits well as an aging and PD model due to properties such as its short life cycle and its completely sequenced, genetically amenable genome. Different protocols for the propagation of zinc- and/or manganese-supplemented young, middle-aged and aged C. elegans were established. Therefore, wildtypes, as well as genetically modified worm strains modeling inheritable forms of parkinsonism were applied. To identify homeostatic and neurological alterations, the nematodes were investigated with different methods including the analysis of total metal contents via inductively-coupled plasma tandem mass spectrometry, a specific probe-based method for quantifying labile zinc, survival assays, gene expression analysis as well as fluorescence microscopy for the identification and quantification of dopaminergic neurodegeneration.. During aging, the levels of iron, as well as zinc and manganese increased.. Furthermore, the simultaneous oversupply with zinc and manganese increased the total zinc and manganese contents to a higher extend than the single metal supplementation. In this relation the C. elegans metallothionein 1 (MTL-1) was identified as an important regulator of metal homeostasis. The total zinc content and the concentration of labile zinc were age-dependently, but differently regulated. This elucidates the importance of distinguishing these parameters as two independent biomarkers for the zinc status. Not the metal oversupply, but aging increased the levels of dopaminergic neurodegeneration. Additionally, nearly all these results yielded differences in the aging-dependent regulation of trace element homeostasis between wildtypes and PD models. This confirms that an increased zinc and manganese intake can influence the aging process as well as parkinsonism by altering homeostasis although the underlying mechanisms need to be clarified in further studies. N2 - Die Spurenelemente Zink und Mangan sind vor allem aufgrund ihrer enzymatischen und Protein-stabilisierenden Funktionen essentiell für die menschliche Gesundheit. Werden sie allerdings in Mengen aufgenommen, die den Bedarf übersteigen, können regulatorische Prozesse für die Aufrechterhaltung physiologischer Konzentrationen dieser Metalle (Homöostase) aus dem Gleichgewicht geraten. Das kann ernsthafte gesundheitliche Konsequenzen nach sich ziehen, unter anderem die Entstehung neurodegenerativer Krankheiten, wie zum Beispiel der Parkinson’schen Erkrankung. Auch während des Alterungsprozesses verändern sich die Gehalte an lebensnotwendigen Spurenelementen im Körper. Jedoch sind die Zusammenhänge zwischen Ursache und Wirkung einer erhöhten Aufnahme an Zink und Mangan und deren Einfluss auf den Alterungsprozess und die Entstehung der altersassoziierten Parkinson’schen Erkrankung bisher nur unzureichend verstanden. Im Rahmen dieser Doktorarbeit wurde deshalb der Einfluss einer nutritiven Zink- und/oder Manganüberversorgung auf die Metallhomöostase während der Alterung untersucht. Dazu wurde Caenorhabditis elegans (C. elegans) als Modellorganismus verwendet. Diese Fadenwürmer eignen sich aufgrund verschiedener Eigenschaften, wie einem kurzen Lebenszyklus und einem komplett sequenzierten und leicht manipulierbarem Genom, hervorragend als Alters- und Parkinson-Modelle. Es wurden verschiedene Protokolle etabliert, die die Anzucht von Zink- und/oder Mangan-supplementierten jungen, mittelalten bzw. gealterten C. elegans erlaubten. Neben Wildtypen wurden auch Wurmstämme untersucht, die genetische Modifikationen aufweisen, die mit vererbbaren Formen des Parkinsonismus assoziiert werden können. Die Würmer wurden mithilfe verschiedener Methoden, wie der analytischen Bestimmung des Gesamtmetallgehaltes mittels Massenspektrometrie mit induktiv-gekoppeltem Plasma, einer Sonden-spezifischen Methode zur Bestimmung von freiem Zink, Letalitätsassays, Genexpressionsanalysen und der Fluoreszenz-mikroskopischen Untersuchung der dopaminergen Neurodegeneration auf verschiedene Parameter untersucht, die Aufschluss über homöostatische und neurologische Veränderungen geben. Es wurde eine altersbedingte Zunahme von Eisen, sowie Zink und Mangan in den Würmern beobachtet. Weiterhin stellte sich heraus, dass vor allem die simultane Überversorgung mit Zink und Mangan den Gesamtmetallgehalt dieser Metalle in C. elegans in einem Maß steigerte, das das der Einzelmetallsupplementierung überstieg. Dabei konnte vor allem das C. elegans Metallothionein 1 (MTL-1) als wichtiger Faktor in der Regulation der Metallhomöostase identifiziert werden. Außerdem wurde die Wichtigkeit verdeutlicht, zwischen dem Gesamtzinkgehalt und der Konzentration an freiem Zink als Biomarkern für den Zinkstatus eines Organismus zu unterscheiden. Beide Parameter wurden altersabhängig unterschiedlich reguliert. Im Gegensatz zur Alterung, wurde durch die Überversorgung mit Metallen keine zusätzliche Schädigung der dopaminergen Neuronen beobachtet. In nahezu all diesen Ergebnissen verdeutlichten sich weiterhin Unterschiede in der altersabhängigen Regulation der Spurenelementhomöostase zwischen Wildtypen und Parkinson-Modellen. Dies bestätigt die Annahme, dass sich eine erhöhte Aufnahme von Mangan und Zink durch die Beeinflussung der Homöostase sowohl auf die Alterung, als auch den Parkinsonismus auswirken kann, jedoch müssen die mechanistischen Grundlagen dessen in zukünftigen Studien aufgeklärt werden. KW - Caenorhabditis elegans KW - aging KW - trace element KW - zinc KW - manganese KW - Caenorhabditis elegans KW - Alterung KW - Spurenelement KW - Zink KW - Mangan Y1 - 2021 ER - TY - THES A1 - Vogel, Heike T1 - Genetics of obesity and type 2 diabetes N2 - By using mouse outcross populations in combination with bioinformatic approaches, it was possible to identify and characterize novel genes regulating body weight, fat mass and β-cell function, which all contribute to the pathogenesis of obesity and T2D. In detail, the presented studies identified 1. Ifi202b/IFI16 as adipogenic gene involved in adipocyte commitment, maintenance of white adipocyte identity, fat cell size and the inflammatory state of adipose tissue. 2. Pla2g4a/PLA2G4A as gene linked to increased body weight and fat mass with a higher expression in adipose tissue of obese mice and pigs as well as in obese human subjects. 3. Ifgga2/IRGM as novel regulator of lipophagy protecting from excess hepatic lipid accumulation. 4. Nidd/DBA as a diabetogenic locus containing Kti12, Osbpl9, Ttc39a and Calr4 with differential expression in pancreatic islets and/or genetic variants. 5. miR-31 to be higher expressed in adipose tissue of obese and diabetic mice and humans targeting PPARy and GLUT4 and thereby involved in adipogenesis and insulin signaling. 6. Gjb4 as novel gene triggering the development of T2D by reducing insulin secretion, inducing apoptosis and inhibiting proliferation. The performed studies confirmed the complexity and strong genetic heritability character of obesity and T2D. A high number of genetic variations, each with a small effect, are collectively influencing the degree and severity of the disease. The use of mouse outcross populations is a valid tool for disease gene identification; however, to facilitate and accelerate the process of gene identification the combination of mouse cross data with advanced sequencing resources and the publicly available data sets are essential. The main goal for future studies should be the translation of these novel molecular discoveries to useful treatment therapies. More recently, several classes of novel unimolecular combination therapeutics have emerged with superior efficacy than currently prescribed options and pose the potential to reverse obesity and T2D (Finan et al., 2015). The glucagon-like peptide-1 (GLP-1)- estrogen conjugate, which targets estrogen into cells expressing GLP-1 receptors, was shown to improve energy, glucose and lipid metabolism as well as to reduce food reward (Finan et al., 2012; Schwenk et al., 2014; Vogel et al., 2016). Another possibility is the development of miRNA-based therapeutics to prevent obesity and T2D, such as miRNA mimetics, anti-miRNA oligonucleotides and exosomes loaded with miRNAs (Ji and Guo, 2019; Gottmann et al., 2020). As already described, genome-wide association studies for polygenic obesity and T2D traits in humans have also led to the identification of numerous gene variants with modest effect, most of them having an unknown function (Yazdi et al., 2015). These discoveries resulted in novel animal models and have illuminated new biologic pathways. Therefore, the integration of mouse-human genetic approaches and the utilization of the synergistic effects have the potential to lead to the identification of more genes responsible for common Mendelian forms of obesity and T2D, as well as gene × gene and gene × environment interactions (Yazdi et al., 2015; Ingelsson and McCarthy, 2018). This combination may help to unravel the missing heritability of obesity and T2D, to identify novel drug targets and to design more efficient and personalized obesity prevention and management programs. Y1 - 2021 CY - Potsdam ER - TY - JOUR A1 - Tchewonpi Sagu, Sorel A1 - Landgräber, Eva A1 - Henkel, Ina M. A1 - Huschek, Gerd A1 - Homann, Thomas A1 - Bußler, Sara A1 - Schlüter, Oliver K. A1 - Rawel, Harshadrai Manilal T1 - Effect of cereal α-amylase/trypsin inhibitors on developmental characteristics and abundance of digestive enzymes of mealworm larvae (Tenebrio molitor L.) JF - Insects N2 - The objective of this work was to investigate the potential effect of cereal α-amylase/trypsin inhibitors (ATIs) on growth parameters and selective digestive enzymes of Tenebrio molitor L. larvae. The approach consisted of feeding the larvae with wheat, sorghum and rice meals containing different levels and composition of α-amylase/trypsin inhibitors. The developmental and biochemical characteristics of the larvae were assessed over feeding periods of 5 h, 5 days and 10 days, and the relative abundance of α-amylase and selected proteases in larvae were determined using liquid chromatography tandem mass spectrometry. Overall, weight gains ranged from 21% to 42% after five days of feeding. The larval death rate significantly increased in all groups after 10 days of feeding (p < 0.05), whereas the pupation rate was about 25% among larvae fed with rice (Oryza sativa L.) and Siyazan/Esperya wheat meals, and only 8% and 14% among those fed with Damougari and S35 sorghum meals. As determined using the Lowry method, the protein contents of the sodium phosphate extracts ranged from 7.80 ± 0.09 to 9.42 ± 0.19 mg/mL and those of the ammonium bicarbonate/urea reached 19.78 ± 0.16 to 37.47 ± 1.38 mg/mL. The total protein contents of the larvae according to the Kjeldahl method ranged from 44.0 and 49.9 g/100 g. The relative abundance of α-amylase, CLIP domain-containing serine protease, modular serine protease zymogen and C1 family cathepsin significantly decreased in the larvae, whereas dipeptidylpeptidase I and chymotrypsin increased within the first hours after feeding (p < 0.05). Trypsin content was found to be constant independently of time or feed material. Finally, based on the results we obtained, it was difficult to substantively draw conclusions on the likely effects of meal ATI composition on larval developmental characteristics, but their effects on the digestive enzyme expression remain relevant. KW - growth behavior KW - Tenebrio molitor larvae KW - feeding KW - cereal meals KW - α-amylase/trypsin inhibitors KW - digestive enzymes quantification KW - LC-MS/MS Y1 - 2021 U6 - https://doi.org/10.3390/insects12050454 SN - 2075-4450 VL - 12 IS - 5 PB - MDPI CY - Basel ER - TY - JOUR A1 - Sagu Tchewonpi, Sorel A1 - Huschek, Gerd A1 - Homann, Thomas A1 - Rawel, Harshadrai Manilal T1 - Effect of sample preparation on the detection and quantification of selected nuts allergenic proteins by LC-MS/MS JF - Molecules : a journal of synthetic chemistry and natural product chemistry / Molecular Diversity Preservation International N2 - The detection and quantification of nut allergens remains a major challenge. The liquid chroma-tography tandem mass spectrometry (LC-MS/MS) is emerging as one of the most widely used methods, but sample preparation prior to the analysis is still a key issue. The objective of this work was to establish optimized protocols for extraction, tryptic digestion and LC-MS analysis of almond, cashew, hazelnut, peanut, pistachio and walnut samples. Ammonium bicar-bonate/urea extraction (Ambi/urea), SDS buffer extraction (SDS), polyvinylpolypyrroli-done (PVPP) extraction, trichloroacetic acid/acetone extraction (TCA/acetone) and chloro-form/methanol/sodium chloride precipitation (CM/NaCl) as well as the performances of con-ventional tryptic digestion and microwave-assisted breakdown were investigated. Overall, the protein extraction yields ranged from 14.9 ± 0.5 (almond extract from CM/NaCl) to 76.5 ± 1.3% (hazelnut extract from Ambi/urea). Electrophoretic profiling showed that the SDS extraction method clearly presented a high amount of extracted proteins in the range of 0–15 kDa, 15–35 kDa, 35–70 kDa and 70–250 kDa compared to the other methods. The linearity of the LC-MS methods in the range of 0 to 0.4 µg equivalent defatted nut flour was assessed and recovery of internal standards GWGG and DPLNV(d8)LKPR ranged from 80 to 120%. The identified bi-omarkers peptides were used to relatively quantifier selected allergenic protein form the inves-tigated nut samples. Considering the overall results, it can be concluded that SDS buffer allows a better protein extraction from almond, peanut and walnut samples while PVPP buffer is more appropriate for cashew, pistachio and hazelnut samples. It was also found that conventional overnight digestion is indicated for cashew, pistachio and hazelnut samples, while microwave assisted tryptic digestion is recommended for almond, hazelnut and peanut extracts. KW - nut allergenic proteins KW - protein extraction KW - sample preparation KW - tryptic digestion KW - microwave assisted digestion KW - SDS PAGE KW - LC-MS/MS Y1 - 2021 U6 - https://doi.org/10.3390/molecules26154698 SN - 1420-3049 VL - 26 IS - 15 PB - MDPI CY - Basel ER - TY - JOUR A1 - de Pinho Tavares Leal, Pedro Ernesto A1 - da Silva, Alexandre Alves A1 - Rocha-Gomes, Arthur A1 - Riul, Tania Regina A1 - Cunha, Rennan Augusto A1 - Reichetzeder, Christoph A1 - Villela, Daniel Campos T1 - High-Salt Diet in the Pre- and Postweaning Periods Leads to Amygdala Oxidative Stress and Changes in Locomotion and Anxiety-Like Behaviors of Male Wistar Rats JF - Frontiers in Behavioral Neuroscience N2 - High-salt (HS) diets have recently been linked to oxidative stress in the brain, a fact that may be a precursor to behavioral changes, such as those involving anxiety-like behavior. However, to the best of our knowledge, no study has evaluated the amygdala redox status after consuming a HS diet in the pre- or postweaning periods. This study aimed to evaluate the amygdala redox status and anxiety-like behaviors in adulthood, after inclusion of HS diet in two periods: preconception, gestation, and lactation (preweaning); and only after weaning (postweaning). Initially, 18 females and 9 male Wistar rats received a standard (n = 9 females and 4 males) or a HS diet (n = 9 females and 5 males) for 120 days. After mating, females continued to receive the aforementioned diets during gestation and lactation. Weaning occurred at 21-day-old Wistar rats and the male offspring were subdivided: control-control (C-C)—offspring of standard diet fed dams who received a standard diet after weaning (n = 9–11), control-HS (C-HS)—offspring of standard diet fed dams who received a HS diet after weaning (n = 9–11), HS-C—offspring of HS diet fed dams who received a standard diet after weaning (n = 9–11), and HS-HS—offspring of HS diet fed dams who received a HS diet after weaning (n = 9–11). At adulthood, the male offspring performed the elevated plus maze and open field tests. At 152-day-old Wistar rats, the offspring were euthanized and the amygdala was removed for redox state analysis. The HS-HS group showed higher locomotion and rearing frequency in the open field test. These results indicate that this group developed hyperactivity. The C-HS group had a higher ratio of entries and time spent in the open arms of the elevated plus maze test in addition to a higher head-dipping frequency. These results suggest less anxiety-like behaviors. In the analysis of the redox state, less activity of antioxidant enzymes and higher levels of the thiobarbituric acid reactive substances (TBARS) in the amygdala were shown in the amygdala of animals that received a high-salt diet regardless of the period (pre- or postweaning). In conclusion, the high-salt diet promoted hyperactivity when administered in the pre- and postweaning periods. In animals that received only in the postweaning period, the addition of salt induced a reduction in anxiety-like behaviors. Also, regardless of the period, salt provided amygdala oxidative stress, which may be linked to the observed behaviors. KW - high-sodium KW - open-field KW - elevated plus-maze KW - pre-natal KW - post-natal KW - redox state Y1 - 2022 U6 - https://doi.org/10.3389/fnbeh.2021.779080 SN - 1662-5153 VL - 15 SP - 1 EP - 12 PB - Frontiers Research Foundation CY - Lausanne, Schweiz ER - TY - THES A1 - Reichmann, Robin T1 - Novel applications of machine learning techniques in epidemiology of age-related diseases BT - from multidimensional data modelling to risk prediction Y1 - 2021 ER - TY - THES A1 - Laeger, Thomas T1 - Protein-dependent regulation of feeding, metabolism, and development of type 2 diabetes T1 - Proteinabhängige Regulation der Nahrungsaufnahme und des Metabolismus sowie Entstehung des Typ-2-Diabetes BT - FGF21’s biological role BT - die Rolle von FGF21 N2 - Food intake is driven by the need for energy but also by the demand for essential nutrients such as protein. Whereas it was well known how diets high in protein mediate satiety, it remained unclear how diets low in protein induce appetite. Therefore, this thesis aims to contribute to the research area of the detection of restricted dietary protein and adaptive responses. This thesis provides clear evidence that the liver-derived hormone fibroblast growth factor 21 (FGF21) is an endocrine signal of a dietary protein restriction, with the cellular amino acid sensor general control nonderepressible 2 (GCN2) kinase acting as an upstream regulator of FGF21 during protein restriction. In the brain, FGF21 is mediating the protein-restricted metabolic responses, e.g. increased energy expenditure, food intake, insulin sensitivity, and improved glucose homeostasis. Furthermore, endogenous FGF21 induced by dietary protein or methionine restriction is preventing the onset of type 2 diabetes in the New Zealand Obese mouse. Overall, FGF21 plays an important role in the detection of protein restriction and macronutrient imbalance in rodents and humans, and mediates both the behavioral and metabolic responses to dietary protein restriction. This makes FGF21 a critical physiological signal of dietary protein restriction, highlighting the important but often overlooked impact of dietary protein on metabolism and eating behavior, independent of dietary energy content. N2 - Die Nahrungsaufnahme wird nicht nur durch den Bedarf an Energie, sondern auch durch den Bedarf an essenziellen Nährstoffen wie z. B. Protein bestimmt. Es war zwar bekannt, wie proteinreiche Nahrung eine Sättigung vermittelt, jedoch war unklar, wie eine proteinarme Ernährung den Appetit anregt. Ziel dieser Arbeit ist es daher, zu untersuchen, wie Nahrung mit einem niedrigen Proteingehalt detektiert wird und die Anpassung des Organismus im Hinblick auf den Metabolismus und das Ernährungsverhalten erfolgt. Diese Arbeit liefert klare Beweise dafür, dass das aus der Leber stammende Hormon Fibroblast growth factor 21 (FGF21) ein endokrines Signal einer Nahrungsproteinrestriktion ist, wobei der zelluläre Aminosäuresensor general control nonderepressible 2 kinase (GCN2) als Regulator von FGF21 während der Proteinrestriktion fungiert. Im Gehirn vermittelt FGF21 die durch Proteinrestriktion induzierten Stoffwechselreaktionen, z.B. den Anstieg des Energieverbrauches, die Erhöhung der Nahrungsaufnahme und eine Verbesserung der Insulinsensitivität sowie der Glukosehomöostase. Darüber hinaus schützt das durch eine protein- oder methioninarme Diät induzierte FGF21 New Zealand Obese (NZO)-Mäuse, einem Tiermodell für den humanen Typ-2-Diabetes, vor einer Diabetesentstehung. FGF21 spielt bei Nagetieren und Menschen eine wichtige Rolle hinsichtlich der Detektion einer diätetischen Proteinrestriktion sowie eines Ungleichgewichtes der Makronährstoffe zueinander und vermittelt die adaptiven Verhaltens- und Stoffwechselreaktionen. Dies macht FGF21 zu einem kritischen physiologischen Signal der Nahrungsproteinrestriktion und unterstreicht den wichtigen, aber oft übersehenen Einfluss der Nahrungsproteine auf den Stoffwechsel und das Nahrungsaufnahmeverhalten, unabhängig vom Energiegehalt der Nahrung. KW - protein restriction KW - autophagy KW - thermogenesis KW - appetite KW - hyperglycemia KW - methionine restriction KW - bone KW - FGF21 KW - energy expenditure KW - GCN2 KW - metabolism KW - food choice KW - type 2 diabetes Y1 - 2021 ER - TY - THES A1 - Herpich, Catrin T1 - Fibroblast growth factor 21 and its association with nutritional stimuli in older age N2 - Fibroblast growth differentiation factor 21 (FGF21) is known as a pivotal regulator of the glucose and lipid metabolism. As such, it is considered beneficial and has even been labelled a longevity hormone. Nevertheless, recent observational studies have shown that FGF21 is increased in higher age with possible negative effects such as loss of lean and bone mass as well as decreased survival. Hepatic FGF21 secretion can be induced by various nutritional stimuli such as starvation, high carbohydrate and fat intake as well as protein deficiency.. So far it is still unclear whether the FGF21 response to different macronutrients is altered in older age. An altered response would potentially contribute to explain the higher FGF21 concentrations found in older age. In this publication-based doctoral dissertation, a cross-sectional study as well as a dietary challenge were conducted to investigate the influence of nutrition on FGF21 concentrations and response in older age. In a cross-sectional study, FGF21 concentrations were assessed in older patients with and without cachexia anorexia syndrome anorexia syndrome compared to an older community-dwelling control group. Cachexia anorexia syndrome is a multifactorial syndrome frequently occurring in old age or in the context of an underlying disease. It is characterized by a severe involuntary weight loss, loss of appetite (anorexia) and reduced food intake, therefore representing a state of severe nutrient deficiency, in some aspects similar to starvation. The highest FGF21 concentrations were found in patients with cachexia anorexia syndrome. Moreover, FGF21 was positively correlated with weight loss and loss of appetite. In addition, cachexia anorexia syndrome itself was associated with FGF21 independent of sex, age and body mass index. As cachectic patients presumably exhibit protein malnutrition and FGF21 has been proposed a marker for protein insufficiency, the higher levels of FGF21 in patients with cachexia anorexia syndrome might be partly explained by insufficient protein intake. In order to investigate the acute response of FGF21 to different nutritional stimuli, a dietary challenge with a parallel group design was conducted. Here, healthy older (65-85 years) and younger (18-35 years) adults were randomized to one of four test meals: a dextrose drink, a high carbohydrate, high fat or high protein meal. Over the course of four hours, postprandial FGF21 concentrations (dynamics) were assessed and the FGF21 response (incremental area under the curve) to each test meal was examined.. In a sub-group of older and younger women, also the adiponectin response was investigated, as adiponectin is a known mediator of FGF21 effects on glucose and lipid metabolism. The dietary meal challenge revealed that dextrose and high carbohydrate intake result in higher FGF21 concentrations after four hours in older adults. This was partly explained by higher postprandial glucose concentrations in the old. For high fat ingestion no age differences were found. For the first time, acute FGF21 response to high protein intake was shown. Here, protein ingestion resulted in lower FGF21 concentrations in younger compared to older adults. Furthermore, sufficient protein intake, according to age-dependent recommendations, of the previous day, was associated with lower FGF21 concentrations in both age groups. The higher FGF21 response to dextrose ingestion resulted in a higher adiponectin response in older women, independent of fat mass, insulin resistance, triglyceride concentrations, inflammation and oxidative stress. Following the high fat meal, adiponectin concentrations declined in older women. Adiponectin response was not affected by meal composition in younger women. In summary, this thesis showed a positive association of FGF21 and cachexia anorexia syndrome with concomitant anorexia in older patients. Regarding the acute FGF21 response, a higher response following dextrose and carbohydrate ingestion was found in older compared with younger subjects. This might be attributed to a higher glucose response in older age. Furthermore, it was shown that the higher FGF21 response after dextrose ingestion possibly contributes to a higher adiponectin response in older women, independent of potential metabolic and inflammatory confounders. Acute protein ingestion resulted in a significant decrease in FGF21 concentrations. Moreover, protein intake of the previous day was inversely associated with fasting FGF21 concentrations. This might explain why FGF21 concentrations are higher in cachexia anorexia syndrome. These results therefore support the role of FGF21 as a sensor of protein restriction. N2 - Der Fibroblasten Wachstumsfaktor 21 (FGF21) gilt als wichtiger Regulator des Glukose- und Fettstoffwechsels. Es werden ihm verschiedene förderliche Eigenschaften zugeschrieben und er wurde darüber hinaus als Langlebigkeitshormon bezeichnet. Nichtsdestotrotz konnten Beobachtungsstudien zeigen, dass FGF21 Konzentration im Alter erhöht sind und möglicherweise mit negativen Auswirkungen, wie dem Verlust von Muskel- und Knochenmasse sowie einer geringeren Überlebenswahrscheinlichkeit, verbunden sind. FGF21 Sekretion in der Leber kann durch Hungern und verschiedene Makronährstoffe, wie hohe Kohlenhydrat- und Fettaufnahme, sowie einem Proteinmangel, induziert werden. Bisher ist jedoch unklar, ob sich die FGF21 Response auf verschiedene Makronährstoffe zwischen älteren und jüngeren Erwachsenen unterscheidet. Eine veränderte Response, könnte dazu beitragen die höheren FGF21 Konzentrationen im Alter zu erklären. In dieser vorliegenden kumulativen Dissertation wurden eine Querschnittsstudie sowie ein experimenteller Mahlzeitentest durchgeführt, um den Einfluss von Ernährung auf FGF21 Konzentrationen und die FGF21 Response im Alter zu untersuchen. In der Querschnittsstudie wurden FGF21 Konzentration von älteren PatientInnen mit und ohne Kachexie-Anorexie Syndrom sowie einer älteren Kontrollgruppe verglichen. Kachexie-Anorexie Syndrom ist ein multifaktorielles Syndrom, welches häufig im Alter und im Rahmen verschiedener Erkrankungen auftritt. Charakteristisch hierfür ist ein starker ungewollter Gewichtsverlust, Appetitverlust (Anorexie) sowie eine verminderte Nahrungsaufnahme. Daher repräsentiert das Kachexie-Anorexie Syndrom einen Zustand des schwerwiegenden Nährstoffmangels, der mit Unterernährung bei langanhaltenden Hungerphasen vergleichbar ist. Die höchsten FGF21 Konzentrationen wiesen PatientInnen mit Kachexie-Anorexie Syndrom auf. Des Weiteren korrelierte FGF21 positiv mit Gewichts- und Appetitverlust. Zusätzlich war das Kachexie-Anorexie Syndrom unabhängig von Alter, Geschlecht und BMI mit FGF21 assoziiert. Es ist davon auszugehen, dass PatientInnen mit Kachexie-Anorexie Syndrom eine unzureichende Proteinzufuhr aufweisen. Da FGF21 als Marker für Proteinrestriktion gilt, könnten die hohen FGF21 Konzentrationen bei Kachexie-Anorexie Syndrom teilweise durch eine zu geringe Proteinzufuhr erklärt werden. Um die akute Response von FGF21 auf verschiedene Makronährstoffe zu untersuchen, wurde ein Mahlzeitentest mit parallelen Gruppen durchgeführt. Hierfür erhielten ältere (65-85 Jahre) und jüngere (18-35 Jahre) Erwachsene eine von vier verschiedenen Testmahlzeiten (Dextrose Getränk, Kohlenhydrat-, Fett- und Proteinreiche Mahlzeit). Über vier Stunden wurden postprandiale FGF21 Konzentrationen (Dynamik) bestimmt und die FGF21 Response (inkrementelle Fläche unter der Kurve) auf jede Testmahlzeit untersucht. In einer Subgruppe von älteren und jüngeren Frauen wurde außerdem die Adiponektin Response bestimmt, da Adiponektin bekanntermaßen die Effekte von FGF21 auf den Glukose- und Fettstoffwechsel mediiert. Der Mahlzeitentest konnte zeigen, dass Dextrose und die kohlenhydratreiche Mahlzeit bei älteren Erwachsenen zu höheren FGF21 Konzentrationen nach vier Stunden führten. Dies könnte durch die höheren postprandialen Glukose Konzentrationen der Älteren erklärt werden. Die FGF21 Response auf die fettreiche Mahlzeit wies keine Altersunterschiede auf. Zum ersten Mal konnte die akute FGF21 Response auf eine proteinreiche Mahlzeit gezeigt werden. Hierbei führte die Mahlzeit bei jüngeren im Vergleich zu älteren Erwachsenen zu niedrigeren FGF21 Konzentration nach vier Stunden. Des Weiteren, war das Erreichen der altersspezifischen Proteinzufuhr des Vortrags bei beiden Altersgruppen mit niedrigeren nüchtern FGF21 Konzentrationen assoziiert. Bei älteren Frauen führte die höhere FGF21 Response nach Dextrose Aufnahme zu einer höheren Adiponektin Response, unabhängig von Fettmasse, Insulinresistenz, Triglyzeride Konzentrationen, Inflammation und oxidativem Stress. Nach Einnahme der fettreichen Mahlzeit sanken die Adiponektin Konzentrationen bei älteren Frauen, während bei jüngeren Frauen die Adiponektin Response nicht durch die Zusammensetzung der Mahlzeit beeinflusst wurde. Zusammenfassend konnte diese Dissertation eine positive Assoziation von FGF21 mit Kachexie-Anorexie Syndrom bei gleichzeitiger Anorexie bei älteren PatientInnen zeigen. Bezüglich der akuten Response von FGF21 zeigte sich eine höhere Response auf Dextrose und Kohlenhydrat-Aufnahme bei älteren im Vergleich zu jüngeren ProbandInnen. Dies ist vermutlich auf die erhöhte Glukose Response im Alter zurückzuführen. Des Weiteren konnte gezeigt werden, dass eine höhere FGF21 Response auf Dextrose bei älteren Frauen mit einer veränderten Adiponektin Response einhergingen, unabhängig von potentiellen metabolischen und inflammatorischen Einflussfaktoren. Eine akute hohe Proteinaufnahme führte zu einem deutlichen Abfall der postprandialen FGF21 Konzentrationen. Zudem bestand eine inverse Assoziation zwischen FGF21 Nüchternkonzentrationen und der Proteinzufuhr des Vortags. Dies könnte zum Teil erklären, warum FGF21 Konzentrationen bei Kachexie-Anorexie Syndrom erhöht sind. Demnach unterstützen diese Ergebnisse auch die Rolle von FGF21 als Sensor für Proteinrestriktion. KW - Ageing KW - FGF21 KW - protein KW - postprandial response Y1 - 2021 ER - TY - JOUR A1 - Reichetzeder, Christoph T1 - Overweight and obesity in pregnancy BT - their impact on epigenetics JF - European journal of clinical nutrition N2 - Over the last few decades, the prevalence of obesity has risen to epidemic proportions worldwide. Consequently, the number of obesity in pregnancy has risen drastically. Gestational overweight and obesity are associated with impaired outcomes for mother and child. Furthermore, studies show that maternal obesity can lead to long-term consequences in the offspring, increasing the risk for obesity and cardiometabolic disease in later life. In addition to genetic mechanisms, mounting evidence demonstrates the induction of epigenetic alterations by maternal obesity, which can affect the offspring's phenotype, thereby influencing the later risk of obesity and cardiometabolic disease. Clear evidence in this regard comes from various animal models of maternal obesity. Evidence derived from clinical studies remains limited. The current article gives an overview of pathophysiological changes associated with maternal obesity and their consequences on placental structure and function. Furthermore, a short excurse is given on epigenetic mechanisms and emerging data regarding a putative interaction between metabolism and epigenetics. Finally, a summary of important findings of animal and clinical studies investigating maternal obesity-related epigenetic effects is presented also addressing current limitations of clinical studies. Y1 - 2021 U6 - https://doi.org/10.1038/s41430-021-00905-6 SN - 0954-3007 SN - 1476-5640 VL - 75 IS - 12 SP - 1710 EP - 1722 PB - Springer Nature CY - London ER - TY - JOUR A1 - Pathe-Neuschäfer-Rube, Andrea A1 - Neuschäfer-Rube, Frank A1 - Püschel, Gerhard Paul T1 - Cell-based reporter release assay to determine the activity of calcium-dependent neurotoxins and neuroactive pharmaceuticals JF - Toxins / Molecular Diversity Preservation International (MDPI) N2 - The suitability of a newly developed cell-based functional assay was tested for the detection of the activity of a range of neurotoxins and neuroactive pharmaceuticals which act by stimulation or inhibition of calcium-dependent neurotransmitter release. In this functional assay, a reporter enzyme is released concomitantly with the neurotransmitter from neurosecretory vesicles. The current study showed that the release of a luciferase from a differentiated human neuroblastoma-based reporter cell line (SIMA-hPOMC1-26-GLuc cells) can be stimulated by a carbachol-mediated activation of the Gq-coupled muscarinic-acetylcholine receptor and by the Ca2+-channel forming spider toxin α-latrotoxin. Carbachol-stimulated luciferase release was completely inhibited by the muscarinic acetylcholine receptor antagonist atropine and α-latrotoxin-mediated release by the Ca2+-chelator EGTA, demonstrating the specificity of luciferase-release stimulation. SIMA-hPOMC1-26-GLuc cells express mainly L- and N-type and to a lesser extent T-type VGCC on the mRNA and protein level. In accordance with the expression profile a depolarization-stimulated luciferase release by a high K+-buffer was effectively and dose-dependently inhibited by L-type VGCC inhibitors and to a lesser extent by N-type and T-type inhibitors. P/Q- and R-type inhibitors did not affect the K+-stimulated luciferase release. In summary, the newly established cell-based assay may represent a versatile tool to analyze the biological efficiency of a range of neurotoxins and neuroactive pharmaceuticals which mediate their activity by the modulation of calcium-dependent neurotransmitter release. KW - cell-based assay KW - neurotoxins KW - muscarinic acetylcholine receptor KW - voltage-dependent calcium channels KW - VGCC Y1 - 2021 U6 - https://doi.org/10.3390/toxins13040247 SN - 2072-6651 VL - 13 IS - 4 PB - MDPI CY - Basel ER - TY - THES A1 - Hauffe, Robert T1 - Investigating metabolic consequences of an HSP60 reduction during diet-induced obesity T1 - Metabolische Folgen einer HSP60 Reduktion während des Diät-induzierten Übergewichts N2 - The mitochondrial chaperone complex HSP60/HSP10 facilitates mitochondrial protein homeostasis by folding more than 300 mitochondrial matrix proteins. It has been shown previously that HSP60 is downregulated in brains of type 2 diabetic (T2D) mice and patients, causing mitochondrial dysfunction and insulin resistance. As HSP60 is also decreased in peripheral tissues in T2D animals, this thesis investigated the effect of overall reduced HSP60 in the development of obesity and associated co-morbidities. To this end, both female and male C57Bl/6N control (i.e. without further alterations in their genome, Ctrl) and heterozygous whole-body Hsp60 knock-out (Hsp60+/-) mice, which exhibit a 50 % reduction of HSP60 in all tissues, were fed a normal chow diet (NCD) or a highfat diet (HFD, 60 % calories from fat) for 16 weeks and were subjected to extensive metabolic phenotyping including indirect calorimetry, NMR spectroscopy, insulin, glucose and pyruvate tolerance tests, vena cava insulin injections, as well as histological and molecular analysis. Interestingly, NCD feeding did not result in any striking phenotype, only a mild increase in energy expenditure in Hsp60+/- mice. Exposing mice to a HFD however revealed an increased body weight due to higher muscle mass in female Hsp60+/- mice, with a simultaneous decrease in energy expenditure. Additionally, these mice displayed decreased fasting glycemia. Opposingly, male Hsp60+/- compared to control mice showed lower body weight gain due to decreased fat mass and an increased energy expenditure, strikingly independent of lean mass. Further, only male Hsp60+/- mice display improved HOMA-IR and Matsuda insulin sensitivity indices. Despite the opposite phenotype in regards to body weight development, Hsp60+/- mice of both sexes show a significantly higher cell number, as well as a reduction in adipocyte size in the subcutaneous and gonadal white adipose tissue (sc/gWAT). Curiously, this adipocyte hyperplasia – usually associated with positive aspects of WAT function – is disconnected from metabolic improvements, as the gWAT of male Hsp60+/- mice shows mitochondrial dysfunction, oxidative stress, and insulin resistance. Transcriptomic analysis of gWAT shows an up regulation of genes involved in macroautophagy. Confirmatory, expression of microtubuleassociated protein 1A/1B light chain 3B (LC3), as a protein marker of autophagy, and direct measurement of lysosomal activity is increased in the gWAT of male Hsp60+/- mice. In summary, this thesis revealed a novel gene-nutrient interaction. The reduction of the crucial chaperone HSP60 did not have large effects in mice fed a NCD, but impacted metabolism during DIO in a sex-specific manner, where, despite opposing body weight and body composition phenotypes, both female and male Hsp60+/- mice show signs of protection from high fat diet-induced systemic insulin resistance. N2 - Der mitochondriale Chaperonkomplex HSP60/10 ist für die korrekte Faltung von über 300 mitochondrialen Matrixproteinen verantwortlich. Es wurde bereits gezeigt, dass HSP60 in Gehirnen von Patienten sowie Mäusen mit Typ 2 Diabetes (T2D) reduziert ist, was zu mitochondrialer Dysfunktion und Insulinresistenz führt. HSP60 ist darüber hinaus auch in peripheren Organen von T2D Mäusen reduziert. Die hier vorliegende Arbeit hat daher den Einfluss einer generellen Reduktion von HSP60 auf die Entwicklung von Übergewicht und die damit assoziierten Komorbiditäten untersucht. Hierfür wurden weibliche und männliche C57Bl/6N Kontroll Mäuse (d.h. ohne wietere Veränderung ihres Genoms, Ctrl), sowie C57Bl/6N Mäuse mit einer heterozygoten Deletion von HSP60 (Hsp60+/-) genutzt. Die Hsp60+/- Maus zeigt eine 50 % Reduktion von HSP60 in allen Geweben. Allen Tieren wurde in der Folge entweder eine normale Haltungsdiät (NCD) oder eine 60 % Hochfettdiät (HFD) gefüttert und einer intensiven metabolischen Charakterisierung unterzogen. Dies beinhaltete indirekte Kalorimetrie, NMR Spektroskopie, Insulin, Glukose und Pyruvat Toleranztests, direkte vena cava Insulinapplikation, sowie eingehende histologische und molekulare Untersuchungen. Interessanterweise zeigte die Fütterung mit der NCD keine stark ausgeprägten Phänotypen, lediglich ein leichter Anstieg im Energieverbrauch war zu beobachten. Die Fütterung mit der HFD dagegen führte auf Grund von größerer Muskelmasse zu einem erhöhten Körpergewicht in weiblichen Hsp60+/- Mäusen, was mit gleichzeitig verringertem Energieverbrauch einherging. Zusätzlich war bei diesen Mäusen der gefastete Bluzuckerspiegel verringert. Im Gegensatz dazu zeigten männliche Hsp60+/- Mäuse ein verringertes Körpergewicht, bedingt durch eine geringere Fettmasse sowie erhöhtem Energieverbrauch. Darüber hinaus war bei männlichen Hsp60+/- Mäusen eine Verbesserung der Insulin Sensitivitätsindizes HOMA-IR und Matsuda Index zu verzeichnen. Trotz dieses gegenteiligen Phänotyps zeigten beide Geschlechter eine erhöhte Zellzahl, sowie eine verringerte Zellgröße der Adipozyten im subkutanen und gonadalen weißen Fettgewebe (sc/gWAT (engl: white adipose tissue)). Überraschenderweise ist diese Adipozytenhyperplasie – normalerweise assoziiert mit verbesserter Fettgewebsfunktion – losgelöst von verbesserter WAT Funktion, da das gWAT männlicher Hsp60+/- Mäuse mitochondriale Dysfunktion, oxidativen Stress und Insulinresistenz zeigt. Eine folgende Transkriptomanalyse gab Hinweise auf eine Induktion der Makroautophagie. Bestätigend hierfür ist im gWAT der heterozygoten Mäuse die Expression des Autophagie Markers microtubule-associated protein 1A/1B light chain 3B (LC3), sowie die direkt gemessene lysosomale Aktivität erhöht. Zusammenfassend konnte in dieser Arbeit eine neuartige Gen-Nährstoff Interaktion gezeigt werden. So zeigte die Reduktion des wichtigen Chaperons HSP60 unter NCD Fütterung nur schwache Effekte, während unter Hochfettdiätfütterung der Stoffwechsel geschlechtsspezifisch beinflusst wurde. Obwohl die beiden Geschlechter der Hsp60+/- Mäuse gegenteilige Phänotypen im Bezug auf Körpergewicht und Körperzusammensetzung aufwiesen, zeigen beide Anzeichen eines Schutzes vor Hochfettdiät-induzierter Insulinresistenz. KW - Obesity KW - Adipose tissue KW - Insulin resistance KW - Mitochondria KW - Fettgewebe KW - Insulinresistenz KW - Mitochondrien KW - Adipositas Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-509294 ER - TY - THES A1 - Schjeide, Brit-Maren T1 - Development and characterization of the MoN-Light BoNT assay to determine the toxicity of botulinum neurotoxin in motor neurons differentiated from CRISPR-modified induced pluripotent stem cells T1 - Entwicklung und Charakterisierung des MoN-Light BoNT-Tests zur Bestimmung der Toxizität von Botulinum-Neurotoxin in Motorneuronen, die aus CRISPR-modifizierten induzierten pluripotenten Stammzellen differenziert wurden N2 - Botulinum neurotoxin (BoNT) is produced by the anaerobic bacterium Clostridium botulinum. It is one of the most potent toxins found in nature and can enter motor neurons (MN) to cleave proteins necessary for neurotransmission, resulting in flaccid paralysis. The toxin has applications in both traditional and esthetic medicine. Since BoNT activity varies between batches despite identical protein concentrations, the activity of each lot must be assessed. The gold standard method is the mouse lethality assay, in which mice are injected with a BoNT dilution series to determine the dose at which half of the animals suffer death from peripheral asphyxia. Ethical concerns surrounding the use of animals in toxicity testing necessitate the creation of alternative model systems to measure the potency of BoNT. Prerequisites of a successful model are that it is human specific; it monitors the complete toxic pathway of BoNT; and it is highly sensitive, at least in the range of the mouse lethality assay. One model system was developed by our group, in which human SIMA neuroblastoma cells were genetically modified to express a reporter protein (GLuc), which is packaged into neurosecretory vesicles, and which, upon cellular depolarization, can be released – or inhibited by BoNT – simultaneously with neurotransmitters. This assay has great potential, but includes the inherent disadvantages that the GLuc sequence was randomly inserted into the genome and the tumor cells only have limited sensitivity and specificity to BoNT. This project aims to improve these deficits, whereby induced pluripotent stem cells (iPSCs) were genetically modified by the CRISPR/Cas9 method to insert the GLuc sequence into the AAVS1 genomic safe harbor locus, precluding genetic disruption through non-specific integrations. Furthermore, GLuc was modified to associate with signal peptides that direct to the lumen of both large dense core vesicles (LDCV), which transport neuropeptides, and synaptic vesicles (SV), which package neurotransmitters. Finally, the modified iPSCs were differentiated into motor neurons (MNs), the true physiological target of BoNT, and hypothetically the most sensitive and specific cells available for the MoN-Light BoNT assay. iPSCs were transfected to incorporate one of three constructs to direct GLuc into LDCVs, one construct to direct GLuc into SVs, and one “no tag” GLuc control construct. The LDCV constructs fused GLuc with the signal peptides for proopiomelanocortin (hPOMC-GLuc), chromogranin-A (CgA-GLuc), and secretogranin II (SgII-GLuc), which are all proteins found in the LDCV lumen. The SV construct comprises a VAMP2-GLuc fusion sequence, exploiting the SV membrane-associated protein synaptobrevin (VAMP2). The no tag GLuc expresses GLuc non-specifically throughout the cell and was created to compare the localization of vesicle-directed GLuc. The clones were characterized to ensure that the GLuc sequence was only incorporated into the AAVS1 safe harbor locus and that the signal peptides directed GLuc to the correct vesicles. The accurate insertion of GLuc was confirmed by PCR with primers flanking the AAVS1 safe harbor locus, capable of simultaneously amplifying wildtype and modified alleles. The PCR amplicons, along with an insert-specific amplicon from candidate clones were Sanger sequenced to confirm the correct genomic region and sequence of the inserted DNA. Off-target integrations were analyzed with the newly developed dc-qcnPCR method, whereby the insert DNA was quantified by qPCR against autosomal and sex-chromosome encoded genes. While the majority of clones had off-target inserts, at least one on-target clone was identified for each construct. Finally, immunofluorescence was utilized to localize GLuc in the selected clones. In iPSCs, the vesicle-directed GLuc should travel through the Golgi apparatus along the neurosecretory pathway, while the no tag GLuc should not follow this pathway. Initial analyses excluded the CgA-GLuc and SgII-GLuc clones due to poor quality protein visualization. The colocalization of GLuc with the Golgi was analyzed by confocal microscopy and quantified. GLuc was strongly colocalized with the Golgi in the hPOMC-GLuc clone (r = 0.85±0.09), moderately in the VAMP2-GLuc clone (r = 0.65±0.01), and, as expected, only weakly in the no tag GLuc clone (r = 0.44±0.10). Confocal microscopy of differentiated MNs was used to analyze the colocalization of GLuc with proteins associated with LDCVs and SVs, SgII in the hPOMC-GLuc clone (r = 0.85±0.08) and synaptophysin in the VAMP2-GLuc clone (r = 0.65±0.07). GLuc was also expressed in the same cells as the MN-associated protein, Islet1. A significant portion of GLuc was found in the correct cell type and compartment. However, in the MoN-Light BoNT assay, the hPOMC-GLuc clone could not be provoked to reliably release GLuc upon cellular depolarization. The depolarization protocol for hPOMC-GLuc must be further optimized to produce reliable and specific release of GLuc upon exposure to a stimulus. On the other hand, the VAMP2-GLuc clone could be provoked to release GLuc upon exposure to the muscarinic and nicotinic agonist carbachol. Furthermore, upon simultaneous exposure to the calcium chelator EGTA, the carbachol-provoked release of GLuc could be significantly repressed, indicating the detection of GLuc was likely associated with vesicular fusion at the presynaptic terminal. The application of the VAMP2-GLuc clone in the MoN-Light BoNT assay must still be verified, but the results thus far indicate that this clone could be appropriate for the application of BoNT toxicity assessment. N2 - Botulinum neurotoxin (BoNT) wird von dem obligat anaeroben Bakterium Clostridium botulinum produziert. Es ist eines der giftigsten natürlich vorkommenden Toxine. Nach Aufnahme in den Körper dringt es in Motorneurone ein und spaltet spezifische Proteine, die für die Freisetzung des Neurotransmitters Acetylcholin notwendig sind. Dadurch kommt es zu einer schlaffen Lähmung der Muskulatur, die zu einer peripheren Asphyxie führt. Trotz seiner hohen Toxizität wird BoNT als Therapeutikum in der klassischen und kosmetischen Medizin genutzt. Da die Aktivität des biosynthetisch gewonnenen Toxins zwischen einzelnen Chargen trotz gleicher Proteinkonzentration stark variiert, muss die Aktivität jeder Präparation getestet werden. Dafür ist der Goldstandard der Mausletalitäts-Test, bei dem den Tieren unterschiedliche Dosen des Toxins injiziert werden und die Dosis ermittelt wird, bei der die Hälfte der Tiere verstirbt. Wegen der damit verbundenen ethischen Probleme wird nach Ersatzverfahren für diesen Tierversuch gesucht. Ein Ersatzverfahren muss folgende Bedingungen erfüllen: Es muss humanspezifisch sein; alle Teilschritte der BoNT-Wirkung messen; und eine hohe Empfindlichkeit haben, die in der gleichen Größenordnung wie der Maus-Letalitätstest liegt. Es wurde bereits ein Testsystem von unserer Gruppe entwickelt, bei dem humane SIMA-Neuroblastomzellen genetisch so modifiziert wurden, dass sie ein Reporterprotein (GLuc) exprimieren. Dieses wurde in neurosekretorische Vesikel verpackt und durch Depolarisation der Zellen gleichzeitig mit Neurotransmittern freigesetzt. Die Freisetzung wurde durch BoNT gehemmt. Obwohl dieser Assay großes Potential hat, wird seine Anwendbarkeit durch inhärente Nachteile eingeschränkt, da die GLuc-Sequenz zufällig in das Genom eingefügt wurde und die Tumorzellen nur eine begrenzte Sensitivität und Spezifität gegenüber BoNT haben. Diese Dissertation hatte zum Ziel, diese Defizite zu verbessern. Zu diesem Zweck wurden induzierte pluripotente Stammzellen (iPSCs) durch die CRISPR/Cas9-Methode genetisch modifiziert, um die GLuc-Sequenz in den genomischen Safe-Harbor-Lokus AAVS1 einzufügen, wodurch ausgeschlossen wird, dass durch unspezifische Integrationen ins Genom die Funktion anderer Gene gestört wird. Darüber hinaus wurde GLuc so modifiziert, dass sie mit Signalpeptiden versehen wurde, die sie zum Lumen sowohl von „Large Dense Core“ Vesikeln (LDCV), die Neuropeptide transportieren, als auch von synaptischen Vesikeln (SV), die Neurotransmitter verpacken, führen. Schließlich wurden die modifizierten iPSCs in Motorneurone (MNs) differenziert, der eigentlichen physiologischen Zielstruktur von BoNT, die mutmaßlich am empfindlichsten und spezifischsten auf BoNT reagieren und daher für den MoN-Light BoNT-Assay am geeignetsten sein sollten. iPSCs wurden transfiziert, um eines von drei Konstrukten zu integrieren. 1) ein Konstrukt, das GLuc in LDCVs leitet, 2) ein Konstrukt, das GLuc durch Fusion mit VAMP2 in SVs leitet und 3) ein "no tag" GLuc-Kontrollkonstrukt. Die LDCV-Konstrukte enthielten die Signalpeptide Proopiomelanocortin (hPOMC), Chromogranin-A (CgA) und Secretogranin II (SgII). Die VAMP2-GLuc-Fusion transportiert GLuc in SVs, so dass Neurotransmitter und GLuc gemeinsam und nicht, wie bei den anderen Konstrukten parallel, aus unterschiedlichen Vesikeln freigesetzt werden. Die "no tag GLuc"-Kontrolle wurde erstellt, um die Lokalisation von GLuc, die ohne Sortierungssignal in der Zelle exprimiert wird, mit der GLuc mit Sortierungssignalen für die unterschiedlichen Vesikel zu vergleichen. Die Klone wurden charakterisiert, um sicherzustellen, dass die GLuc-Sequenz ausschließlich in den AAVS1-Safe-Harbor-Lokus eingebaut wurde und dass die Signalpeptide GLuc zu den richtigen Vesikeln leiten. Die korrekte Insertion von GLuc wurde durch PCR mit Primern bestätigt, die den AAVS1-Lokus flankieren und in der Lage sind, gleichzeitig Wildtyp- und modifizierte Allele zu amplifizieren. Mögliche Integrationen außerhalb der Zielregion wurden mit der neu entwickelten dc-qcnPCR analysiert, wobei die Insert-DNA mittels qPCR gegen autosomal und geschlechts-chromosomal kodierte Gene quantifiziert wurde. Auch wenn die Mehrzahl der analysierten Klone Off-Target-Integrationen enthielt, konnte für jedes Konstrukt mindestens ein vollständig On-Target-homozygoter Klon identifiziert werden. Schließlich wurden die GLuc in ausgewählten Klonen durch Immunfluoreszenz lokalisiert. In iPSCs sollte die GLuc mit Sortierungssequenzen für Vesikel durch den Golgi-Apparat entlang des neurosekretorischen Weges wandern, während die „no tag“ GLuc diesem Weg nicht folgen sollte. Anfängliche Analysen schlossen die CgA-GLuc- und SgII-GLuc-Klone aufgrund der schlechten Qualität der Proteinvisualisierung aus. Die Kolokalisation von GLuc mit dem Golgi-Apparat wurde mittels konfokaler Mikroskopie analysiert und quantifiziert. GLuc war im hPOMC-GLuc-Klon sehr stark (r = 0,85±0,09), im VAMP2-GLuc-Klon mäßig (r = 0,65±0,01) und im no tag GLuc-Klon erwartungsgemäß nur schwach (r = 0,44±0,10) mit Golgi-Markern assoziiert. Nach der Differenzierung in MNs wurde die Koexpression von GLuc mit dem MN-assoziierten Protein Islet1 bestätigt. Konfokale Mikroskopie von MNs wurde angewandt, um die Kolokalisation von GLuc mit Proteinen zu quantifizieren, die mit LDCVs und SVs assoziiert sind, nämlich SgII mit der hPOMC-GLuc (r = 0,85±0,08) und Synaptophysin mit VAMP2-GLuc (r = 0,65±0,07). Ein signifikanter Anteil von GLuc wurde im richtigen Zelltyp und Kompartiment gefunden. Im MoN-Light BoNT-Assay wurde die GLuc jedoch nicht zuverlässig durch Depolarisation aus dem hPOMC-GLuc-Klon freigesetzt. Das für die SIMA-hPOMC-Gluc-Zellen entwickelte Depolarisationsprotokoll muss für hPOMC-GLuc weiter optimiert werden, um eine zuverlässige und spezifische Freisetzung von GLuc bei Exposition gegenüber einem Stimulus zu erreichen. Andererseits konnte die GLuc aus dem VAMP2-GLuc-Klon durch Stimulation mit dem muskarinischen und nikotinischen Agonisten Carbachol freigesetzt werden. Die Carbachol-abhängige Freisetzung der GLuc konnte mit dem Calcium-Chelator EGTA unterdrückt werden, was darauf hindeutet, dass die Freisetzung der GLuc wahrscheinlich von der Fusion synaptischer Vesikel am präsynaptischen Terminal abhängig ist. Die Anwendung des VAMP2-GLuc-Klons im MoN-Light BoNT-Assay muss noch verifiziert werden, aber die bisherigen Ergebnisse deuten darauf hin, dass dieser Klon für die Anwendung der BoNT-Toxizitätsbewertung geeignet sein könnte. KW - Induced pluripotent stem cells KW - Alternative to animal testing KW - Botulinum neurotoxin KW - Motor neurons KW - CRISPR/Cas9 KW - induzierte pluripotente Stammzellen KW - alternative zu Tierversuchen KW - Botulinumtoxine KW - Motorneurone KW - CRISPR/Cas9 Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-516278 ER - TY - GEN A1 - Pathe-Neuschäfer-Rube, Andrea A1 - Neuschäfer-Rube, Frank A1 - Püschel, Gerhard Paul T1 - Cell-based reporter release assay to determine the activity of calcium-dependent neurotoxins and neuroactive pharmaceuticals T2 - Postprints der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - The suitability of a newly developed cell-based functional assay was tested for the detection of the activity of a range of neurotoxins and neuroactive pharmaceuticals which act by stimulation or inhibition of calcium-dependent neurotransmitter release. In this functional assay, a reporter enzyme is released concomitantly with the neurotransmitter from neurosecretory vesicles. The current study showed that the release of a luciferase from a differentiated human neuroblastoma-based reporter cell line (SIMA-hPOMC1-26-GLuc cells) can be stimulated by a carbachol-mediated activation of the Gq-coupled muscarinic-acetylcholine receptor and by the Ca2+-channel forming spider toxin α-latrotoxin. Carbachol-stimulated luciferase release was completely inhibited by the muscarinic acetylcholine receptor antagonist atropine and α-latrotoxin-mediated release by the Ca2+-chelator EGTA, demonstrating the specificity of luciferase-release stimulation. SIMA-hPOMC1-26-GLuc cells express mainly L- and N-type and to a lesser extent T-type VGCC on the mRNA and protein level. In accordance with the expression profile a depolarization-stimulated luciferase release by a high K+-buffer was effectively and dose-dependently inhibited by L-type VGCC inhibitors and to a lesser extent by N-type and T-type inhibitors. P/Q- and R-type inhibitors did not affect the K+-stimulated luciferase release. In summary, the newly established cell-based assay may represent a versatile tool to analyze the biological efficiency of a range of neurotoxins and neuroactive pharmaceuticals which mediate their activity by the modulation of calcium-dependent neurotransmitter release. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 1139 KW - cell-based assay KW - neurotoxins KW - muscarinic acetylcholine receptor KW - voltage-dependent calcium channels KW - VGCC Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-503225 SN - 1866-8372 IS - 1139 ER - TY - THES A1 - Saussenthaler, Sophie T1 - The impact of DNA methylation on susceptibility to typ 2 diabetes in NZO mice N2 - The development of type 2 diabetes (T2D) is driven by genetic as well as life style factors. However, even genetically identical female NZO mice on a high-fat diet show a broad variation in T2D onset. The main objective of this study was to elucidate and investigate early epigenetic determinants of type 2 diabetes. Prior to other experiments, early fat content of the liver (<55.2 HU) in combination with blood glucose concentrations (>8.8 mM) were evaluated as best predictors of diabetes in NZO females. Then, DNA methylome and transcriptome were profiled to identify molecular pathophysiological changes in the liver before diabetes onset. The major finding of this thesis is that alterations in the hepatic DNA methylome precede diabetes onset. Of particular interest were 702 differentially methylated regions (DMRs), of which 506 DMRs had genic localization. These inter-individual DMRs were enriched by fivefold in the KEGG pathway type 2 diabetes mellitus, independent of the level of gene expression, demonstrating an epigenetic predisposition toward diabetes. Interestingly, among the list of hepatic DMRs, eleven DMRs were associated with known imprinted genes in the mouse genome. Thereby, six DMRs (Nap1l5, Mest, Plagl1, Gnas, Grb10 and Slc38a4) localized to imprinting control regions, including five iDMRs that exhibited hypermethylation in livers of diabetes-prone mice. This suggests that gain of DNA methylation in multiple loci of the paternal alleles has unfavourable metabolic consequences for the offspring. Further, the comparative liver transcriptome analysis demonstrated differences in expression levels of 1492 genes related to metabolically relevant pathways, such as citrate cycle and fatty acid metabolism. The integration of hepatic transcriptome and DNA methylome indicated that 449 differentially expressed genes were potentially regulated by DNA methylation, including genes implicated in insulin signaling. In addition, liver transcriptomic profiling of diabetes-resistant and diabetes-prone mice revealed a potential transcriptional dysregulation of 17 hepatokines, in particular Hamp. The hepatic expression of Hamp was decreased by 52% in diabetes-prone mice, on account of an increase in DNA methylation of promoter CpG-118. Hence, HAMP protein levels were lower in mice prone to develop diabetes, which correlated to higher liver triglyceride levels.. In sum, the identified DNA methylation changes appear to collectively favor the initiation and progression of diabetes in female NZO mice. In near future, epigenetic biomarkers are likely to contribute to improved diagnosis for T2D. KW - epigenetics KW - DNA methylation KW - RNAseq KW - fatty liver KW - type 2 diabetes KW - HAMP Y1 - 2021 ER - TY - JOUR A1 - Rausch, Ann-Kristin A1 - Brockmeyer, Robert A1 - Schwerdtle, Tanja T1 - Development and validation of a liquid chromatography tandem mass spectrometry multi-method for the determination of 41 free and modified mycotoxins in beer JF - Food chemistry N2 - A fast high performance liquid chromatography tandem mass spectrometry multi-method based on an ACN-precipitation extraction was developed for the analysis of 41 (modified) mycotoxins in beer. Validation according to the performance criteria defined by the European Commission (EC) in Commission Decision no. 657/2002 revealed good linearity (R2 > 0.99), repeatability (RSDr < 15%), reproducibility (RSDR < 15%), and recovery (79–100%). Limits of quantification ranging from 0.04 to 75 µg/L were obtained. Matrix effects varied from −67 to +319% and were compensated for using standard addition. In total, 87 beer samples, produced worldwide, were analyzed for the presence of mycotoxins with a focus on modified mycotoxins, whereof 76% of the samples were contaminated with at least one mycotoxin. The most prevalent mycotoxins were deoxynivalenol-3-glucoside (63%), HT-2 toxin (15%), and tenuazonic acid (13%). Exposure estimates of deoxynivalenol and its metabolites for German beer revealed no significant contribution to intake of deoxynivalenol. KW - Multi-mycotoxin analysis KW - Modified mycotoxins KW - LC–MS/MS KW - Beer KW - Validation Y1 - 2020 U6 - https://doi.org/10.1016/j.foodchem.2020.127801 SN - 1873-7072 SN - 0308-8146 VL - 338 PB - Elsevier CY - New York, NY ER - TY - GEN A1 - de Pinho Tavares Leal, Pedro Ernesto A1 - da Silva, Alexandre Alves A1 - Rocha-Gomes, Arthur A1 - Riul, Tania Regina A1 - Cunha, Rennan Augusto A1 - Reichetzeder, Christoph A1 - Villela, Daniel Campos T1 - High-Salt Diet in the Pre- and Postweaning Periods Leads to Amygdala Oxidative Stress and Changes in Locomotion and Anxiety-Like Behaviors of Male Wistar Rats T2 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - High-salt (HS) diets have recently been linked to oxidative stress in the brain, a fact that may be a precursor to behavioral changes, such as those involving anxiety-like behavior. However, to the best of our knowledge, no study has evaluated the amygdala redox status after consuming a HS diet in the pre- or postweaning periods. This study aimed to evaluate the amygdala redox status and anxiety-like behaviors in adulthood, after inclusion of HS diet in two periods: preconception, gestation, and lactation (preweaning); and only after weaning (postweaning). Initially, 18 females and 9 male Wistar rats received a standard (n = 9 females and 4 males) or a HS diet (n = 9 females and 5 males) for 120 days. After mating, females continued to receive the aforementioned diets during gestation and lactation. Weaning occurred at 21-day-old Wistar rats and the male offspring were subdivided: control-control (C-C)—offspring of standard diet fed dams who received a standard diet after weaning (n = 9–11), control-HS (C-HS)—offspring of standard diet fed dams who received a HS diet after weaning (n = 9–11), HS-C—offspring of HS diet fed dams who received a standard diet after weaning (n = 9–11), and HS-HS—offspring of HS diet fed dams who received a HS diet after weaning (n = 9–11). At adulthood, the male offspring performed the elevated plus maze and open field tests. At 152-day-old Wistar rats, the offspring were euthanized and the amygdala was removed for redox state analysis. The HS-HS group showed higher locomotion and rearing frequency in the open field test. These results indicate that this group developed hyperactivity. The C-HS group had a higher ratio of entries and time spent in the open arms of the elevated plus maze test in addition to a higher head-dipping frequency. These results suggest less anxiety-like behaviors. In the analysis of the redox state, less activity of antioxidant enzymes and higher levels of the thiobarbituric acid reactive substances (TBARS) in the amygdala were shown in the amygdala of animals that received a high-salt diet regardless of the period (pre- or postweaning). In conclusion, the high-salt diet promoted hyperactivity when administered in the pre- and postweaning periods. In animals that received only in the postweaning period, the addition of salt induced a reduction in anxiety-like behaviors. Also, regardless of the period, salt provided amygdala oxidative stress, which may be linked to the observed behaviors. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 1253 KW - high-sodium KW - open-field KW - elevated plus-maze KW - pre-natal KW - post-natal KW - redox state Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-557432 SN - 1866-8372 SP - 1 EP - 12 PB - Universitätsverlag Potsdam CY - Potsdam ER - TY - GEN A1 - Tchewonpi Sagu, Sorel A1 - Landgräber, Eva A1 - Henkel, Ina M. A1 - Huschek, Gerd A1 - Homann, Thomas A1 - Bußler, Sara A1 - Schlüter, Oliver K. A1 - Rawel, Harshadrai Manilal T1 - Effect of cereal α-amylase/trypsin inhibitors on developmental characteristics and abundance of digestive enzymes of mealworm larvae (Tenebrio molitor L.) T2 - Postprints der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - The objective of this work was to investigate the potential effect of cereal α-amylase/trypsin inhibitors (ATIs) on growth parameters and selective digestive enzymes of Tenebrio molitor L. larvae. The approach consisted of feeding the larvae with wheat, sorghum and rice meals containing different levels and composition of α-amylase/trypsin inhibitors. The developmental and biochemical characteristics of the larvae were assessed over feeding periods of 5 h, 5 days and 10 days, and the relative abundance of α-amylase and selected proteases in larvae were determined using liquid chromatography tandem mass spectrometry. Overall, weight gains ranged from 21% to 42% after five days of feeding. The larval death rate significantly increased in all groups after 10 days of feeding (p < 0.05), whereas the pupation rate was about 25% among larvae fed with rice (Oryza sativa L.) and Siyazan/Esperya wheat meals, and only 8% and 14% among those fed with Damougari and S35 sorghum meals. As determined using the Lowry method, the protein contents of the sodium phosphate extracts ranged from 7.80 ± 0.09 to 9.42 ± 0.19 mg/mL and those of the ammonium bicarbonate/urea reached 19.78 ± 0.16 to 37.47 ± 1.38 mg/mL. The total protein contents of the larvae according to the Kjeldahl method ranged from 44.0 and 49.9 g/100 g. The relative abundance of α-amylase, CLIP domain-containing serine protease, modular serine protease zymogen and C1 family cathepsin significantly decreased in the larvae, whereas dipeptidylpeptidase I and chymotrypsin increased within the first hours after feeding (p < 0.05). Trypsin content was found to be constant independently of time or feed material. Finally, based on the results we obtained, it was difficult to substantively draw conclusions on the likely effects of meal ATI composition on larval developmental characteristics, but their effects on the digestive enzyme expression remain relevant. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 1153 KW - growth behavior KW - Tenebrio molitor larvae KW - feeding KW - cereal meals KW - α-amylase/trypsin inhibitors KW - digestive enzymes quantification KW - LC-MS/MS Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-520924 SN - 1866-8372 IS - 5 ER - TY - GEN A1 - Tchewonpi Sagu, Sorel A1 - Huschek, Gerd A1 - Homann, Thomas A1 - Rawel, Harshadrai Manilal T1 - Effect of sample preparation on the detection and quantification of selected nuts allergenic proteins by LC-MS/MS T2 - Postprints der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - The detection and quantification of nut allergens remains a major challenge. The liquid chroma-tography tandem mass spectrometry (LC-MS/MS) is emerging as one of the most widely used methods, but sample preparation prior to the analysis is still a key issue. The objective of this work was to establish optimized protocols for extraction, tryptic digestion and LC-MS analysis of almond, cashew, hazelnut, peanut, pistachio and walnut samples. Ammonium bicar-bonate/urea extraction (Ambi/urea), SDS buffer extraction (SDS), polyvinylpolypyrroli-done (PVPP) extraction, trichloroacetic acid/acetone extraction (TCA/acetone) and chloro-form/methanol/sodium chloride precipitation (CM/NaCl) as well as the performances of con-ventional tryptic digestion and microwave-assisted breakdown were investigated. Overall, the protein extraction yields ranged from 14.9 ± 0.5 (almond extract from CM/NaCl) to 76.5 ± 1.3% (hazelnut extract from Ambi/urea). Electrophoretic profiling showed that the SDS extraction method clearly presented a high amount of extracted proteins in the range of 0–15 kDa, 15–35 kDa, 35–70 kDa and 70–250 kDa compared to the other methods. The linearity of the LC-MS methods in the range of 0 to 0.4 µg equivalent defatted nut flour was assessed and recovery of internal standards GWGG and DPLNV(d8)LKPR ranged from 80 to 120%. The identified bi-omarkers peptides were used to relatively quantifier selected allergenic protein form the inves-tigated nut samples. Considering the overall results, it can be concluded that SDS buffer allows a better protein extraction from almond, peanut and walnut samples while PVPP buffer is more appropriate for cashew, pistachio and hazelnut samples. It was also found that conventional overnight digestion is indicated for cashew, pistachio and hazelnut samples, while microwave assisted tryptic digestion is recommended for almond, hazelnut and peanut extracts. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 1157 KW - nut allergenic proteins KW - sample preparation KW - protein extraction KW - tryptic digestion KW - microwave assisted digestion KW - SDS PAGE KW - LC-MS/MS Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-521871 SN - 1866-8372 IS - 15 ER - TY - GEN A1 - Henkel-Oberländer, Janin A1 - Klauder, Julia A1 - Statz, Meike A1 - Wohlenberg, Anne-Sophie A1 - Kuipers, Sonja A1 - Vahrenbrink, Madita T1 - Enhanced Palmitate-Induced Interleukin-8 Formation in Human Macrophages by Insulin or Prostaglandin E₂ T2 - Postprints der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - Macrophages in pathologically expanded dysfunctional white adipose tissue are exposed to a mix of potential modulators of inflammatory response, including fatty acids released from insulin-resistant adipocytes, increased levels of insulin produced to compensate insulin resistance, and prostaglandin E₂ (PGE₂) released from activated macrophages. The current study addressed the question of how palmitate might interact with insulin or PGE₂ to induce the formation of the chemotactic pro-inflammatory cytokine interleukin-8 (IL-8). Human THP-1 cells were differentiated into macrophages. In these macrophages, palmitate induced IL-8 formation. Insulin enhanced the induction of IL-8 formation by palmitate as well as the palmitate-dependent stimulation of PGE₂ synthesis. PGE₂ in turn elicited IL-8 formation on its own and enhanced the induction of IL-8 release by palmitate, most likely by activating the EP4 receptor. Since IL-8 causes insulin resistance and fosters inflammation, the increase in palmitate-induced IL-8 formation that is caused by hyperinsulinemia and locally produced PGE₂ in chronically inflamed adipose tissue might favor disease progression in a vicious feed-forward cycle. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 1149 KW - macrophages KW - insulin KW - prostaglandin E2 KW - interleukin-8 KW - inflammation Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-518377 SN - 1866-8372 IS - 1149 ER - TY - JOUR A1 - Henkel-Oberländer, Janin A1 - Klauder, Julia A1 - Statz, Meike A1 - Wohlenberg, Anne-Sophie A1 - Kuipers, Sonja A1 - Vahrenbrink, Madita A1 - Püschel, Gerhard T1 - Enhanced Palmitate-Induced Interleukin-8 Formation in Human Macrophages by Insulin or Prostaglandin E₂ JF - Biomedicines : open access journal N2 - Macrophages in pathologically expanded dysfunctional white adipose tissue are exposed to a mix of potential modulators of inflammatory response, including fatty acids released from insulin-resistant adipocytes, increased levels of insulin produced to compensate insulin resistance, and prostaglandin E₂ (PGE₂) released from activated macrophages. The current study addressed the question of how palmitate might interact with insulin or PGE₂ to induce the formation of the chemotactic pro-inflammatory cytokine interleukin-8 (IL-8). Human THP-1 cells were differentiated into macrophages. In these macrophages, palmitate induced IL-8 formation. Insulin enhanced the induction of IL-8 formation by palmitate as well as the palmitate-dependent stimulation of PGE₂ synthesis. PGE₂ in turn elicited IL-8 formation on its own and enhanced the induction of IL-8 release by palmitate, most likely by activating the EP4 receptor. Since IL-8 causes insulin resistance and fosters inflammation, the increase in palmitate-induced IL-8 formation that is caused by hyperinsulinemia and locally produced PGE₂ in chronically inflamed adipose tissue might favor disease progression in a vicious feed-forward cycle. KW - macrophages KW - insulin KW - prostaglandin E2 KW - interleukin-8 KW - inflammation Y1 - 2021 U6 - https://doi.org/10.3390/biomedicines9050449 SN - 2227-9059 VL - 9 IS - 5 PB - MDPI CY - Basel ER - TY - JOUR A1 - Hauffe, Robert A1 - Rath, Michaela A1 - Schell, Mareike A1 - Ritter, Katrin A1 - Kappert, Kai A1 - Deubel, Stefanie A1 - Ott, Christiane A1 - Jähnert, Markus A1 - Jonas, Wenke A1 - Schürmann, Annette A1 - Kleinridders, André T1 - HSP60 reduction protects against diet-induced obesity by modulating energy metabolism in adipose tissue JF - Molecular Metabolism N2 - Objective Insulin regulates mitochondrial function, thereby propagating an efficient metabolism. Conversely, diabetes and insulin resistance are linked to mitochondrial dysfunction with a decreased expression of the mitochondrial chaperone HSP60. The aim of this investigation was to determine the effect of a reduced HSP60 expression on the development of obesity and insulin resistance. Methods Control and heterozygous whole-body HSP60 knockout (Hsp60+/−) mice were fed a high-fat diet (HFD, 60% calories from fat) for 16 weeks and subjected to extensive metabolic phenotyping. To understand the effect of HSP60 on white adipose tissue, microarray analysis of gonadal WAT was performed, ex vivo experiments were performed, and a lentiviral knockdown of HSP60 in 3T3-L1 cells was conducted to gain detailed insights into the effect of reduced HSP60 levels on adipocyte homeostasis. Results Male Hsp60+/− mice exhibited lower body weight with lower fat mass. These mice exhibited improved insulin sensitivity compared to control, as assessed by Matsuda Index and HOMA-IR. Accordingly, insulin levels were significantly reduced in Hsp60+/− mice in a glucose tolerance test. However, Hsp60+/− mice exhibited an altered adipose tissue metabolism with elevated insulin-independent glucose uptake, adipocyte hyperplasia in the presence of mitochondrial dysfunction, altered autophagy, and local insulin resistance. Conclusions We discovered that the reduction of HSP60 in mice predominantly affects adipose tissue homeostasis, leading to beneficial alterations in body weight, body composition, and adipocyte morphology, albeit exhibiting local insulin resistance. KW - Mitochondria KW - Stress response KW - Obesity KW - Glucose homeostasis KW - Insulin resistance KW - Adipose tissue Y1 - 2021 U6 - https://doi.org/10.1016/j.molmet.2021.101276 SN - 2212-8778 VL - 53 SP - 1 EP - 14 PB - Elsevier CY - Amsterdam, Niederlande ER - TY - JOUR A1 - Rausch, Ann-Kristin A1 - Brockmeyer, Robert A1 - Schwerdtle, Tanja T1 - Development, validation, and application of a multi-method for the determination of mycotoxins, plant growth regulators, tropane alkaloids, and pesticides in cereals by two-dimensional liquid chromatography tandem mass spectrometry JF - Analytical & bioanalytical chemistry : a merger of Fresenius' journal of analytical chemistry, Analusis and Quimica analitica N2 - Mycotoxins and pesticides regularly co-occur in agricultural products worldwide. Thus, humans can be exposed to both toxic contaminants and pesticides simultaneously, and multi-methods assessing the occurrence of various food contaminants and residues in a single method are necessary. A two-dimensional high performance liquid chromatography tandem mass spectrometry method for the analysis of 40 (modified) mycotoxins, two plant growth regulators, two tropane alkaloids, and 334 pesticides in cereals was developed. After an acetonitrile/water/formic acid (79:20:1, v/v/v) multi-analyte extraction procedure, extracts were injected into the two-dimensional setup, and an online clean-up was performed. The method was validated according to Commission Decision (EC) no. 657/2002 and document N° SANTE/12682/2019. Good linearity (R2 > 0.96), recovery data between 70-120%, repeatability and reproducibility values < 20%, and expanded measurement uncertainties < 50% were obtained for a wide range of analytes, including very polar substances like deoxynivalenol-3-glucoside and methamidophos. However, results for fumonisins, zearalenone-14,16-disulfate, acid-labile pesticides, and carbamates were unsatisfying. Limits of quantification meeting maximum (residue) limits were achieved for most analytes. Matrix effects varied highly (−85 to +1574%) and were mainly observed for analytes eluting in the first dimension and early-eluting analytes in the second dimension. The application of the method demonstrated the co-occurrence of different types of cereals with 28 toxins and pesticides. Overall, 86% of the samples showed positive findings with at least one mycotoxin, plant growth regulator, or pesticide. KW - 2D-LC-MS/MS KW - Multi-method KW - Mycotoxins KW - Modified mycotoxins KW - Pesticides KW - Cereals Y1 - 2021 U6 - https://doi.org/10.1007/s00216-021-03239-1 SN - 1618-2650 SN - 1618-2642 VL - 413 IS - 11 SP - 3041 EP - 3054 PB - Springer CY - Berlin ER - TY - JOUR A1 - Gohlke, Sabrina A1 - Mancini, Carola A1 - Garcia-Carrizo, Francisco A1 - Schulz, Tim J. T1 - Loss of the ciliary gene Bbs4 results in defective thermogenesis due to metabolic inefficiency and impaired lipid metabolism JF - The FASEB journal : the official journal of the Federation of American Societies for Experimental Biology N2 - Adipose tissue is central to the regulation of energy balance. While white adipose tissue (WAT) is responsible for triglyceride storage, brown adipose tissue specializes in energy expenditure. Deterioration of brown adipocyte function contributes to the development of metabolic complications like obesity and diabetes. These disorders are also leading symptoms of the Bardet-Biedl syndrome (BBS), a hereditary disorder in humans which is caused by dysfunctions of the primary cilium and which therefore belongs to the group of ciliopathies. The cilium is a hair-like organelle involved in cellular signal transduction. The BBSome, a supercomplex of several Bbs gene products, localizes to the basal body of cilia and is thought to be involved in protein sorting to and from the ciliary membrane. The effects of a functional BBSome on energy metabolism and lipid mobilization in brown and white adipocytes were tested in whole-body Bbs4 knockout mice that were subjected to metabolic challenges. Chronic cold exposure reveals cold-intolerance of knockout mice but also ameliorates the markers of metabolic pathology detected in knockouts prior to cold. Hepatic triglyceride content is markedly reduced in knockout mice while circulating lipids are elevated, altogether suggesting that defective lipid metabolism in adipose tissue creates increased demand for systemic lipid mobilization to meet energetic demands of reduced body temperatures. These findings taken together suggest that Bbs4 is essential for the regulation of adipose tissue lipid metabolism, representing a potential target to treat metabolic disorders. KW - adipose tissue KW - Bbs4 KW - BBsome KW - browning KW - cilium KW - lipid metabolism Y1 - 2021 U6 - https://doi.org/10.1096/fj.202100772RR SN - 1530-6860 VL - 35 IS - 11 PB - Wiley CY - Hoboken ER - TY - JOUR A1 - Hackethal, Christin A1 - Kopp, Johannes Florian A1 - Sarvan, Irmela A1 - Schwerdtle, Tanja A1 - Lindtner, Oliver T1 - Total arsenic and water-soluble arsenic species in foods of the first German total diet study (BfR MEAL Study) JF - Food chemistry N2 - Arsenic can occur in foods as inorganic and organic forms. Inorganic arsenic is more toxic than most watersoluble organic arsenic compounds such as arsenobetaine, which is presumed to be harmless for humans. Within the first German total diet study, total arsenic, inorganic arsenic, arsenobetaine, dimethylarsinic acid and monomethylarsonic acid were analyzed in various foods. Highest levels of total arsenic were found in fish, fish products and seafood (mean: 1.43 mg kg(-1); n = 39; min-max: 0.01-6.15 mg kg(-1)), with arsenobetaine confirmed as the predominant arsenic species (1.233 mg kg 1; n = 39; min-max: 0.01-6.23 mg kg (1)). In contrast, inorganic arsenic was determined as prevalent arsenic species in terrestrial foods (0.02 mg kg (1); n = 38; min-max: 0-0.11 mg kg (1)). However, the toxicity of arsenic species varies and measurements are necessary to gain information about the composition and changes of arsenic species in foods due to household processing of foods. KW - Occurrence data KW - Food KW - Total arsenic KW - Arsenic speciation KW - Inductively KW - coupled plasma mass spectrometry Y1 - 2021 U6 - https://doi.org/10.1016/j.foodchem.2020.128913 SN - 0308-8146 SN - 1873-7072 VL - 346 PB - Elsevier CY - Amsterdam [u.a.] ER - TY - THES A1 - Wandt, Viktoria Klara Veronika T1 - Trace elements, ageing, and sex BT - impact on genome stability maintenance Y1 - 2021 ER - TY - JOUR A1 - Witt, Barbara A1 - Stiboller, Michael A1 - Raschke, Stefanie A1 - Friese, Sharleen A1 - Ebert, Franziska A1 - Schwerdtle, Tanja T1 - Characterizing effects of excess copper levels in a human astrocytic cell line with focus on oxidative stress markers JF - Journal of trace elements in medicine and biology : organ of the Society for Minerals and Trace Elements, GMS N2 - Background: Being an essential trace element, copper is involved in diverse physiological processes. However, excess levels might lead to adverse effects. Disrupted copper homeostasis, particularly in the brain, has been associated with human diseases including the neurodegenerative disorders Wilson and Alzheimer?s disease. In this context, astrocytes play an important role in the regulation of the copper homeostasis in the brain and likely in the prevention against neuronal toxicity, consequently pointing them out as a potential target for the neurotoxicity of copper. Major toxic mechanisms are discussed to be directed against mitochondria probably via oxidative stress. However, the toxic potential and mode of action of copper in astrocytes is poorly understood, so far. Methods: In this study, excess copper levels affecting human astrocytic cell model and their involvement in the neurotoxic mode of action of copper, as well as, effects on the homeostasis of other trace elements (Mn, Fe, Ca and Mg) were investigated. Results: Copper induced substantial cytotoxic effects in the human astrocytic cell line following 48 h incubation (EC30: 250 ?M) and affected mitochondrial function, as observed via reduction of mitochondrial membrane potential and increased ROS production, likely originating from mitochondria. Moreover, cellular GSH metabolism was altered as well. Interestingly, not only cellular copper levels were affected, but also the homeostasis of other elements (Ca, Fe and Mn) were disrupted. Conclusion: One potential toxic mode of action of copper seems to be effects on the mitochondria along with induction of oxidative stress in the human astrocytic cell model. Moreover, excess copper levels seem to interact with the homeostasis of other essential elements such as Ca, Fe and Mn. Disrupted element homeostasis might also contribute to the induction of oxidative stress, likely involved in the onset and progression of neurodegenerative disorders. These insights in the toxic mechanisms will help to develop ideas and approaches for therapeutic strategies against copper-mediated diseases. KW - Copper KW - Astrocytes KW - Toxicity KW - Mitochondria KW - ROS KW - Trace elements Y1 - 2021 U6 - https://doi.org/10.1016/j.jtemb.2021.126711 SN - 1878-3252 VL - 65 PB - Elsevier CY - München ER - TY - CHAP A1 - Schenke, Maren A1 - Schjeide, Brit-Maren A1 - Püschel, Gerhard Paul A1 - Seeger, Bettina T1 - Serotype-specific sensitivity to Botulinum neurotoxins of iPSC-derived motor neurons T2 - Naunyn-Schmiedeberg's archives of pharmacology Y1 - 2021 U6 - https://doi.org/10.1007/s00210-021-02066-6 SN - 0028-1298 SN - 1432-1912 VL - 394 IS - Suppl. 1 SP - S4 EP - S4 PB - Springer CY - Berlin ; Heidelberg ER - TY - THES A1 - Burkhardt, Wiebke T1 - Role of dietary sulfonates in the stimulation of gut bacteria promoting intestinal inflammation T1 - Die Rolle nahrungsrelevanter Sulfonate bei der Stimulation von entzündungsfördernden Darmbakterien N2 - The interplay between intestinal microbiota and host has increasingly been recognized as a major factor impacting health. Studies indicate that diet is the most influential determinant affecting the gut microbiota. A diet rich in saturated fat was shown to stimulate the growth of the colitogenic bacterium Bilophila wadsworthia by enhancing the secretion of the bile acid taurocholate (TC). The sulfonated taurine moiety of TC is utilized as a substrate by B. wadsworthia. The resulting overgrowth of B. wadsworthia was accompanied by an increased incidence and severity of colitis in interleukin (IL)-10-deficient mice, which are genetically prone to develop inflammation. Based on these findings, the question arose whether the intake of dietary sulfonates also stimulates the growth of B. wadsworthia and thereby promotes intestinal inflammation in genetically susceptible mice. Dietary sources of sulfonates include green vegetables and cyanobacteria, which contain the sulfolipids sulfoquinovosyl diacylglycerols (SQDG) in considerable amounts. Based on literature reports, the gut commensal Escherichia coli is able to release sulfoquinovose (SQ) from SQDG and in further steps, convert SQ to 2,3-dihydroxypropane-1-sulfonate (DHPS) and dihydroxyacetone phosphate. DHPS may then be utilized as a growth substrate by B. wadsworthia, which results in the formation of sulfide. Both, sulfide formation and a high abundance of B. wadsworthia have been associated with intestinal inflammation. In the present study, conventional IL-10-deficient mice were fed either a diet supplemented with the SQDG-rich cyanobacterium Spirulina (20%, SD) or a control diet. In addition SQ, TC, or water were orally applied to conventional or gnotobiotic IL-10-deficient mice. The gnotobiotic mice harbored a simplified human intestinal microbiota (SIHUMI) either with or without B. wadsworthia. During the intervention period, the body weight of the mice was monitored, the colon permeability was assessed and fecal samples were collected. After the three-week intervention, the animals were examined with regard to inflammatory parameters, microbiota composition and sulfonate concentrations in different intestinal sites. None of the mice treated with the above-mentioned sulfonates showed weight loss or intestinal inflammation. Solely mice fed SD or gavaged with TC displayed a slight immune response. These mice also displayed an altered microbiota composition, which was not observed in mice gavaged with SQ. The abundance of B. wadsworthia was strongly reduced in mice fed SD, while that of mice treated with SQ or TC was in part slightly increased. The intestinal SQ-concentration was elevated in mice orally treated with SD or SQ, whereas neither TC nor taurine concentrations were consistently elevated in mice gavaged with TC. Additional colonization of SIHUMI mice with B. wadsworthia resulted in a mild inflammatory response, but only in mice treated with TC. In general, TC-mediated effects on the immune system and abundance of B. wadsworthia were not as strong as described in the literature. In summary, neither the tested dietary sulfonates nor TC led to bacteria-induced intestinal inflammation in the IL-10-deficient mouse model, which was consistently observed in both conventional and gnotobiotic mice. For humans, this means that foods containing SQDG, such as spinach or Spirulina, do not increase the risk of intestinal inflammation. N2 - Die mikrobielle Lebensgemeinschaft im Darm des Menschen, die intestinale Mikrobiota, übt einen beträchtlichen Einfluss auf die Gesundheit des Wirts aus. Der Wirt wiederum beeinflusst die intestinale Mikrobiota durch seine Ernährung. Bei Mäusen wurde beobachtet, dass eine Ernährung reich an gesättigten Fettsäuren zu Darmentzündung führen kann, wenn die Tiere Interleukin (IL)-10-defizient sind, was sie empfänglich für Entzündungen macht. Durch die fettreiche Ernährung wurde vermehrt die sulfonierte Gallensäure Taurocholat (TC) sekretiert, welche wiederum das Wachstum des entzündungsfördernden Bakteriums Bilophila wadsworthia stimulierte. Aufgrund dieser Beobachtung stellte sich die Frage, ob auch nahrungsrelevante Sulfonate bei IL-10-defizienten Mäusen zu einer bakteriell induzierten Darmentzündung führen können. Bei den in dieser Arbeit untersuchten Sulfonaten handelt es sich um die Sulfolipide Sulfoquinovosyldiacylglycerole (SQDG), welche in den meisten photosynthetischen Organismen wie Pflanzen, Moosen und Cyanobakterien vorkommen. Aus der Literatur ist bekannt, dass SQDG durch das kommensale Darmbakterium Escherichia coli zu Sulfoquinovose (SQ) und in weiteren Schritten zu 2,3-Dihydroxypropan-1-sulfonat (DHPS) und Dihydroxyacetonphosphat gespalten werden kann. DHPS kann von B. wadsworthia wiederum als Wachstumssubstrat verwendet und zu Sulfid reduziert werden. Sowohl für B. wadsworthia als auch für Sulfid wird angenommen, dass sie zur Entstehung von Darmentzündungen beitragen. Um diese Hypothese zu untersuchen, wurden konventionelle IL-10-defiziente Mäuse für drei Wochen mit einem Futter gefüttert, welches das SQDG-reiche Cyanobakterium Spirulina (20%, SD) enthielt. Weiterhin wurde IL-10-defizienten Mäusen mit einer komplexen oder minimalen intestinalen Mikrobiota für drei Wochen SQ oder TC oral verabreicht. Die Tiere mit der minimalen Mikrobiota waren mit einer simplifizierten humanen intestinalen Mikrobiota (SIHUMI) mit oder ohne B. wadsworthia besiedelt. Während der Versuche wurden die Tiere gewogen, Fäzesproben wurden gesammelt und ein Darm-Permeabilitätstest wurde durchgeführt. Nach der dreiwöchigen Intervention wurden Entzündungsparameter, Mikrobiotazusammensetzung und Sulfonatkonzentrationen in den einzelnen Darmabschnitten der Mäuse untersucht. Die Ergebnisse dieser Untersuchungen zeigten, dass keines der getesteten Sulfonate zu Gewichtsverlust oder Darmentzündung führte. Lediglich die Mäuse, die mit SD gefüttert oder denen TC appliziert wurde, zeigten Anzeichen einer schwachen Immunantwort. Auch wiesen diese Mäuse Veränderungen in der Zusammensetzung der Darmmikrobiota auf, was bei den mit SQ behandelten Mäusen nicht der Fall war. Die Zellzahl von B. wadsworthia war in SD-gefütterten Mäusen deutlich reduziert, während die Zellzahl dieses Bakteriums in den Mäuse, die mit SQ oder TC behandelt wurden, nur teilweise leicht erhöht war. Die SQ-Konzentrationen in den Inhalten einzelner Darmabschnitte waren bei den mit SD oder SQ behandelten Mäusen erhöht. Die Taurin- und TC-Konzentrationen glichen bei mit TC behandelten Mäusen überwiegend denen der Kontrolltiere. Die zusätzliche Besiedlung der SIHUMI-Mäuse mit B. wadsworthia führte nur in Tieren, denen TC appliziert wurde, zu leicht erhöhten Entzündungswerten. Allgemein übte die orale Applikation von TC weniger starke Effekte auf das Entzündungsgeschehen und die Mikrobiotazusammensetzung der Mäuse aus als in der Literatur beschrieben. Die Ergebnisse dieser Studie legen nahe, dass weder das SQDG-reiche Futter noch die orale Applikation von SQ oder TC zu einer bakteriell induzierten Darmentzündung bei IL-10-defizienten Mäusen führt. Für den Menschen bedeutet dies, dass SQDG-haltige Lebensmittel wie Spinat oder Spirulina das Risiko für Darmentzündungen nicht erhöhen. KW - Bilophila wadsworthia KW - Dietary sulfonates KW - Inflammatory bowel disease KW - Bilophila wadsworthia KW - Nahrungssulfonate KW - chronisch-entzündliche Darmerkrankungen Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-513685 ER - TY - JOUR A1 - Burkhardt, Wiebke A1 - Rausch, Theresa A1 - Klopfleisch, Robert A1 - Blaut, Michael A1 - Braune, Annett T1 - Impact of dietary sulfolipid-derived sulfoquinovose on gut microbiota composition and inflammatory status of colitis-prone interleukin-10-deficient mice JF - International journal of medical microbiology : IJMM N2 - The interplay between diet, intestinal microbiota and host is a major factor impacting health. A diet rich in unsaturated fatty acids has been reported to stimulate the growth of Bilophila wadsworthia by increasing the proportion of the sulfonated bile acid taurocholate (TC). The taurine-induced overgrowth of B. wadsworthia promoted the development of colitis in interleukin-10-deficient (IL-10(-/-)) mice. This study aimed to investigate whether intake of the sulfonates sulfoquinovosyl diacylglycerols (SQDG) with a dietary supplement or their degradation product sulfoquinovose (SQ), stimulate the growth of B. wadsworthia in a similar manner and, thereby, cause intestinal inflammation. Conventional IL-10(-/-) mice were fed a diet supplemented with the SQDG-rich cyanobacterium Arthrospira platensis (Spirulina). SQ or TC were orally applied to conventional IL-10(-/-) mice and gnotobiotic IL-10(-/-) mice harboring a simplified human intestinal microbiota with or without B. wadsworthia. Analyses of inflammatory parameters revealed that none of the sulfonates induced severe colitis, but both, Spirulina and TC, induced expression of pro-inflammatory cytokines in cecal mucosa. Cell numbers of B. wadsworthia decreased almost two orders of magnitude by Spirulina feeding but slightly increased in gnotobiotic SQ and conventional TC mice. Changes in microbiota composition were observed in feces as a result of Spirulina or TC feeding in conventional mice. In conclusion, the dietary sulfonates SQDG and their metabolite SQ did not elicit bacteria-induced intestinal inflammation in IL-10(-/-) mice and, thus, do not promote colitis. KW - Sulfonate KW - Sulfoquinovose KW - Spirulina KW - Inflammatory bowel disease KW - Bilophila wadsworthia KW - Taurocholate Y1 - 2021 U6 - https://doi.org/10.1016/j.ijmm.2021.151494 SN - 1618-0607 VL - 311 IS - 3 PB - Elsevier CY - München ER - TY - GEN A1 - Naser, Eyad A1 - Kadow, Stephanie A1 - Schumacher, Fabian A1 - Mohamed, Zainelabdeen H. A1 - Kappe, Christian A1 - Hessler, Gabriele A1 - Pollmeier, Barbara A1 - Kleuser, Burkhard A1 - Arenz, Christoph A1 - Becker, Katrin Anne A1 - Gulbins, Erich A1 - Carpinteiro, Alexander T1 - Characterization of the small molecule ARC39 BT - a direct and specific inhibitor of acid sphingomyelinase in vitro[S] T2 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - Inhibition of acid sphingomyelinase (ASM), a lysosomal enzyme that catalyzes the hydrolysis of sphingomyelin into ceramide and phosphorylcholine, may serve as an investigational tool or a therapeutic intervention to control many diseases. Specific ASM inhibitors are currently not sufficiently characterized. Here, we found that 1-aminodecylidene bis-phosphonic acid (ARC39) specifically and efficiently (>90%) inhibits both lysosomal and secretory ASM in vitro. Results from investigating sphingomyelin phosphodiesterase 1 (SMPD1/Smpd1) mRNA and ASM protein levels suggested that ARC39 directly inhibits ASM's catalytic activity in cultured cells, a mechanism that differs from that of functional inhibitors of ASM. We further provide evidence that ARC39 dose- and time-dependently inhibits lysosomal ASM in intact cells, and we show that ARC39 also reduces platelet- and ASM-promoted adhesion of tumor cells. The observed toxicity of ARC39 is low at concentrations relevant for ASM inhibition in vitro, and it does not strongly alter the lysosomal compartment or induce phospholipidosis in vitro. When applied intraperitoneally in vivo, even subtoxic high doses administered short-term induced sphingomyelin accumulation only locally in the peritoneal lavage without significant accumulation in plasma, liver, spleen, or brain. These findings require further investigation with other possible chemical modifications. In conclusion, our results indicate that ARC39 potently and selectively inhibits ASM in vitro and highlight the need for developing compounds that can reach tissue concentrations sufficient for ASM inhibition in vivo. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 1407 KW - sphingolipids KW - sphingomyelin KW - cerami-des KW - lipid metabolism KW - enzymology KW - lysosome KW - lysosomal hydrolases KW - acid ceramidase KW - bisphosphonates KW - functional inhibitors of acid sphin-gomyelinase KW - 1-aminodecylidene bis-phosphonic acid Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-516635 SN - 1866-8372 IS - 6 ER - TY - JOUR A1 - Fink, Julian A1 - Schumacher, Fabian A1 - Schlegel, Jan A1 - Stenzel, Philipp A1 - Wigger, Dominik A1 - Sauer, Markus A1 - Kleuser, Burkhard A1 - Seibel, Jürgen T1 - Azidosphinganine enables metabolic labeling and detection of sphingolipid de novo synthesis JF - Organic & biomolecular chemistry : an international journal of synthetic, physical and biomolecular organic chemistry N2 - Here were report the combination of biocompatible click chemistry of omega-azidosphinganine with fluorescence microscopy and mass spectrometry as a powerful tool to elaborate the sphingolipid metabolism. The azide probe was efficiently synthesized over 13 steps starting from l-serine in an overall yield of 20% and was used for live-cell fluorescence imaging of the endoplasmic reticulum in living cells by bioorthogonal click reaction with a DBCO-labeled fluorophore revealing that the incorporated analogue is mainly localized in the endoplasmic membrane like the endogenous species. A LC-MS(/MS)-based microsomal in vitro assay confirmed that omega-azidosphinganine mimics the natural species enabling the identification and analysis of metabolic breakdown products of sphinganine as a key starting intermediate in the complex sphingolipid biosynthetic pathways. Furthermore, the sphinganine-fluorophore conjugate after click reaction was enzymatically tolerated to form its dihydroceramide and ceramide metabolites. Thus, omega-azidosphinganine represents a useful biofunctional tool for metabolic investigations both by in vivo fluorescence imaging of the sphingolipid subcellular localization in the ER and by in vitro high-resolution mass spectrometry analysis. This should reveal novel insights of the molecular mechanisms sphingolipids and their processing enzymes have e.g. in infection. Y1 - 2021 U6 - https://doi.org/10.1039/d0ob02592e SN - 1477-0520 SN - 1477-0539 VL - 19 IS - 10 SP - 2203 EP - 2212 PB - Royal Society of Chemistry CY - Cambridge ER - TY - JOUR A1 - Naser, Eyad A1 - Kadow, Stephanie A1 - Schumacher, Fabian A1 - Mohamed, Zainelabdeen H. A1 - Kappe, Christian A1 - Hessler, Gabriele A1 - Pollmeier, Barbara A1 - Kleuser, Burkhard A1 - Arenz, Christoph A1 - Becker, Katrin Anne A1 - Gulbins, Erich A1 - Carpinteiro, Alexander T1 - Characterization of the small molecule ARC39 BT - a direct and specific inhibitor of acid sphingomyelinase in vitro[S] JF - Journal of Lipid Research N2 - Inhibition of acid sphingomyelinase (ASM), a lysosomal enzyme that catalyzes the hydrolysis of sphingomyelin into ceramide and phosphorylcholine, may serve as an investigational tool or a therapeutic intervention to control many diseases. Specific ASM inhibitors are currently not sufficiently characterized. Here, we found that 1-aminodecylidene bis-phosphonic acid (ARC39) specifically and efficiently (>90%) inhibits both lysosomal and secretory ASM in vitro. Results from investigating sphingomyelin phosphodiesterase 1 (SMPD1/Smpd1) mRNA and ASM protein levels suggested that ARC39 directly inhibits ASM's catalytic activity in cultured cells, a mechanism that differs from that of functional inhibitors of ASM. We further provide evidence that ARC39 dose- and time-dependently inhibits lysosomal ASM in intact cells, and we show that ARC39 also reduces platelet- and ASM-promoted adhesion of tumor cells. The observed toxicity of ARC39 is low at concentrations relevant for ASM inhibition in vitro, and it does not strongly alter the lysosomal compartment or induce phospholipidosis in vitro. When applied intraperitoneally in vivo, even subtoxic high doses administered short-term induced sphingomyelin accumulation only locally in the peritoneal lavage without significant accumulation in plasma, liver, spleen, or brain. These findings require further investigation with other possible chemical modifications. In conclusion, our results indicate that ARC39 potently and selectively inhibits ASM in vitro and highlight the need for developing compounds that can reach tissue concentrations sufficient for ASM inhibition in vivo. KW - sphingolipids KW - sphingomyelin KW - cerami-des KW - lipid metabolism KW - enzymology KW - lysosome KW - lysosomal hydrolases KW - acid ceramidase KW - bisphosphonates KW - functional inhibitors of acid sphin-gomyelinase KW - 1-aminodecylidene bis-phosphonic acid Y1 - 2021 U6 - https://doi.org/10.1194/jlr.RA120000682 SN - 1539-7262 SN - 0022-2275 VL - 61 IS - 6 SP - 896 EP - 910 PB - American Society for Biochemistry and Molecular Biology CY - Bethesda ER - TY - GEN A1 - Wardelmann, Kristina A1 - Rath, Michaela A1 - Castro, José Pedro A1 - Blümel, Sabine A1 - Schell, Mareike A1 - Hauffe, Robert A1 - Schumacher, Fabian A1 - Flore, Tanina A1 - Ritter, Katrin A1 - Wernitz, Andreas A1 - Hosoi, Toru A1 - Ozawa, Koichiro A1 - Kleuser, Burkhard A1 - Weiß, Jürgen A1 - Schürmann, Annette A1 - Kleinridders, André T1 - Central acting Hsp10 regulates mitochondrial function, fatty acid metabolism and insulin sensitivity in the hypothalamus T2 - Postprints der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - Mitochondria are critical for hypothalamic function and regulators of metabolism. Hypothalamic mitochondrial dysfunction with decreased mitochondrial chaperone expression is present in type 2 diabetes (T2D). Recently, we demonstrated that a dysregulated mitochondrial stress response (MSR) with reduced chaperone expression in the hypothalamus is an early event in obesity development due to insufficient insulin signaling. Although insulin activates this response and improves metabolism, the metabolic impact of one of its members, the mitochondrial chaperone heat shock protein 10 (Hsp10), is unknown. Thus, we hypothesized that a reduction of Hsp10 in hypothalamic neurons will impair mitochondrial function and impact brain insulin action. Therefore, we investigated the role of chaperone Hsp10 by introducing a lentiviral-mediated Hsp10 knockdown (KD) in the hypothalamic cell line CLU-183 and in the arcuate nucleus (ARC) of C57BL/6N male mice. We analyzed mitochondrial function and insulin signaling utilizing qPCR, Western blot, XF96 Analyzer, immunohistochemistry, and microscopy techniques. We show that Hsp10 expression is reduced in T2D mice brains and regulated by leptin in vitro. Hsp10 KD in hypothalamic cells induced mitochondrial dysfunction with altered fatty acid metabolism and increased mitochondria-specific oxidative stress resulting in neuronal insulin resistance. Consequently, the reduction of Hsp10 in the ARC of C57BL/6N mice caused hypothalamic insulin resistance with acute liver insulin resistance. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 1165 KW - brain insulin signaling KW - mitochondria KW - oxidative stress KW - fatty acid metabolism Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-522985 SN - 1866-8372 IS - 5 ER - TY - JOUR A1 - Wetzel, Alexandra Nicole A1 - Scholtka, Bettina A1 - Schumacher, Fabian A1 - Rawel, Harshadrai Manilal A1 - Geisendörfer, Birte A1 - Kleuser, Burkhard T1 - Epigenetic DNA methylation of EBI3 modulates human interleukin-35 formation via NFkB signaling BT - a promising therapeutic option in ulcerative colitis JF - International journal of molecular sciences N2 - Ulcerative colitis (UC), a severe chronic disease with unclear etiology that is associated with increased risk for colorectal cancer, is accompanied by dysregulation of cytokines. Epstein-Barr virus-induced gene 3 (EBI3) encodes a subunit in the unique heterodimeric IL-12 cytokine family of either pro- or anti-inflammatory function. After having recently demonstrated that upregulation of EBI3 by histone acetylation alleviates disease symptoms in a dextran sulfate sodium (DSS)-treated mouse model of chronic colitis, we now aimed to examine a possible further epigenetic regulation of EBI3 by DNA methylation under inflammatory conditions. Treatment with the DNA methyltransferase inhibitor (DNMTi) decitabine (DAC) and TNF alpha led to synergistic upregulation of EBI3 in human colon epithelial cells (HCEC). Use of different signaling pathway inhibitors indicated NF kappa B signaling was necessary and proportional to the synergistic EBI3 induction. MALDI-TOF/MS and HPLC-ESIMS/MS analysis of DAC/TNF alpha-treated HCEC identified IL-12p35 as the most probable binding partner to form a functional protein. EBI3/IL-12p35 heterodimers (IL-35) induce their own gene upregulation, something that was indeed observed in HCEC cultured with media from previously DAC/TNF alpha-treated HCEC. These results suggest that under inflammatory and demethylating conditions the upregulation of EBI3 results in the formation of anti-inflammatory IL-35, which might be considered as a therapeutic target in colitis. KW - decitabine KW - DNMT inhibitor KW - EBI3 KW - inhibitory cytokines KW - interleukin-35 KW - TNF alpha KW - Ulcerative colitis Y1 - 2021 U6 - https://doi.org/10.3390/ijms22105329 SN - 1422-0067 VL - 22 IS - 10 PB - MDPI CY - Basel ER - TY - JOUR A1 - Wardelmann, Kristina A1 - Rath, Michaela A1 - Castro, José Pedro A1 - Blümel, Sabine A1 - Schell, Mareike A1 - Hauffe, Robert A1 - Schumacher, Fabian A1 - Flore, Tanina A1 - Ritter, Katrin A1 - Wernitz, Andreas A1 - Hosoi, Toru A1 - Ozawa, Koichiro A1 - Kleuser, Burkhard A1 - Weiß, Jürgen A1 - Schürmann, Annette A1 - Kleinridders, André T1 - Central acting Hsp10 regulates mitochondrial function, fatty acid metabolism and insulin sensitivity in the hypothalamus JF - Antioxidants N2 - Mitochondria are critical for hypothalamic function and regulators of metabolism. Hypothalamic mitochondrial dysfunction with decreased mitochondrial chaperone expression is present in type 2 diabetes (T2D). Recently, we demonstrated that a dysregulated mitochondrial stress response (MSR) with reduced chaperone expression in the hypothalamus is an early event in obesity development due to insufficient insulin signaling. Although insulin activates this response and improves metabolism, the metabolic impact of one of its members, the mitochondrial chaperone heat shock protein 10 (Hsp10), is unknown. Thus, we hypothesized that a reduction of Hsp10 in hypothalamic neurons will impair mitochondrial function and impact brain insulin action. Therefore, we investigated the role of chaperone Hsp10 by introducing a lentiviral-mediated Hsp10 knockdown (KD) in the hypothalamic cell line CLU-183 and in the arcuate nucleus (ARC) of C57BL/6N male mice. We analyzed mitochondrial function and insulin signaling utilizing qPCR, Western blot, XF96 Analyzer, immunohistochemistry, and microscopy techniques. We show that Hsp10 expression is reduced in T2D mice brains and regulated by leptin in vitro. Hsp10 KD in hypothalamic cells induced mitochondrial dysfunction with altered fatty acid metabolism and increased mitochondria-specific oxidative stress resulting in neuronal insulin resistance. Consequently, the reduction of Hsp10 in the ARC of C57BL/6N mice caused hypothalamic insulin resistance with acute liver insulin resistance. KW - brain insulin signaling KW - mitochondria KW - oxidative stress KW - fatty acid metabolism Y1 - 2021 U6 - https://doi.org/10.3390/antiox10050711 SN - 2076-3921 VL - 10 IS - 5 PB - MDPI CY - Basel ER - TY - JOUR A1 - Schell, Mareike A1 - Wardelmann, Kristina A1 - Kleinridders, Andre T1 - Untangling the effect of insulin action on brain mitochondria and metabolism JF - Journal of neuroendocrinology N2 - The regulation of energy homeostasis is controlled by the brain and, besides requiring high amounts of energy, it relies on functional insulin/insulin-like growth factor (IGF)-1 signalling in the central nervous system. This energy is mainly provided by mitochondria in form of ATP. Thus, there is an intricate interplay between mitochondrial function and insulin/IGF-1 action to enable functional brain signalling and, accordingly, propagate a healthy metabolism. To adapt to different nutritional conditions, the brain is able to sense the current energy status via mitochondrial and insulin signalling-dependent pathways and exerts an appropriate metabolic response. However, regional, cell type and receptor-specific consequences of this interaction occur and are linked to diverse outcomes such as altered nutrient sensing, body weight regulation or even cognitive function. Impairments of this cross-talk can lead to obesity and glucose intolerance and are linked to neurodegenerative diseases, yet they also induce a self-sustainable, dysfunctional 'metabolic triangle' characterised by insulin resistance, mitochondrial dysfunction and inflammation in the brain. The identification of causal factors deteriorating insulin action, mitochondrial function and concomitantly a signature of metabolic stress in the brain is of utter importance to offer novel mechanistic insights into development of the continuously rising prevalence of non-communicable diseases such as type 2 diabetes and neurodegeneration. This review aims to determine the effect of insulin action on brain mitochondrial function and energy metabolism. It precisely outlines the interaction and differences between insulin action, insulin-like growth factor (IGF)-1 signalling and mitochondrial function; distinguishes between causality and association; and reveals its consequences for metabolism and cognition. We hypothesise that an improvement of at least one signalling pathway can overcome the vicious cycle of a self-perpetuating metabolic dysfunction in the brain present in metabolic and neurodegenerative diseases. KW - brain KW - energy homeostasis KW - inflammation KW - insulin signalling KW - metabolism KW - mitochondrial function Y1 - 2021 U6 - https://doi.org/10.1111/jne.12932 SN - 0953-8194 SN - 1365-2826 VL - 33 IS - 4 PB - Wiley CY - Hoboken ER - TY - CHAP A1 - Wandt, Viktoria Klara Veronika A1 - Winkelbeiner, Nicola A1 - Loßow, Kristina A1 - Kopp, Johannes A1 - Simon, Luise A1 - Ebert, Franziska A1 - Kipp, Anna Patricia A1 - Schwerdtle, Tanja T1 - Trace elements, ageing, and sex. Impact on genome stability BT - Abstracts of the 87th Annual Meeting of the German Society for Experimental and Clinical Pharmacology and Toxicology (DGPT) with contribution of the Arbeitsgemeinschaft für Angewandte Humanpharmakologie e. V. (AGAH) T2 - Naunyn-Schmiedeberg's archives of pharmacology Y1 - 2021 U6 - https://doi.org/10.1007/s00210-021-02066-6 SN - 0028-1298 SN - 1432-1912 VL - 394 IS - Suppl. 1 SP - S13 EP - S13 PB - Springer CY - Berlin ; Heidelberg ER - TY - JOUR A1 - Herpich, Catrin A1 - Haß, Ulrike A1 - Kochlik, Bastian Max A1 - Franz, Kristina A1 - Laeger, Thomas A1 - Klaus, Susanne A1 - Bosy-Westphal, Anja A1 - Norman, Kristina T1 - Postprandial dynamics and response of fibroblast growth factor 21 in older adults JF - Clinical Nutrition N2 - Background & aims: Fibroblast growth factor 21 (FGF21) plays a pivotal role in glucose and lipid metabolism and has been proposed as a longevity hormone. However, elevated plasma FGF21 concentrations are paradoxically associated with mortality in higher age and little is known about the postprandial regulation of FGF21 in older adults. In this parallel group study, we investigated postprandial FGF21 dynamics and response in older (65-85 years) compared to younger (18-35 years) adults following test meals with varying macronutrient composition. Methods: Participants (n = 60 older; n = 60 younger) were randomized to one of four test meals: dextrose, high carbohydrate (HC), high fat (HF) or high protein (HP). Blood was drawn before and 15, 30, 60, 120, 240 min after meal ingestion. Postprandial dynamics were evaluated using repeated measures ANCOVA. FGF21 response was assessed by incremental area under the curve. Results: Fasting FGF21 concentrations were significantly higher in older adults. FGF21 dynamics were affected by test meal (p < 0.001) and age (p = 0.013), when adjusted for BMI and fasting FGF21. Postprandial FGF21 concentrations steadily declined over 240 min in both age groups after HF and HP, but not after dextrose or HC ingestion. At 240 min, FGF21 concentrations were significantly higher in older than in younger adults following dextrose (133 pg/mL, 95%CI: 103, 172 versus 91.2 pg/mL, 95%CI: 70.4, 118; p = 0.044), HC (109 pg/mL, 95%CI: 85.1, 141 versus 70.3 pg/mL, 95%CI: 55.2, 89.6; p = 0.014) and HP ingestion (45.4 pg/mL, 95%CI: 34.4, 59.9 versus 27.9 pg/mL 95%CI: 20.9, 37.1; p = 0.018). FGF21 dynamics and response to HF were similar for both age groups. Conclusions: The age-specific differences in postprandial FGF21 dynamics and response in healthy adults, potentially explain higher FGF21 concentrations in older age. Furthermore, there appears to be a significant impact of acute and recent protein intake on FGF21 secretion. Y1 - 2021 U6 - https://doi.org/10.1016/j.clnu.2021.04.037 SN - 0261-5614 SN - 1532-1983 VL - 40 IS - 6 SP - 3765 EP - 3771 PB - Elsevier CY - Amsterdam ER - TY - GEN A1 - Figueroa Campos, Gustavo A. A1 - Perez, Jeffrey Paulo H. A1 - Block, Inga A1 - Tchewonpi Sagu, Sorel A1 - Saravia Celis, Pedro A1 - Taubert, Andreas A1 - Rawel, Harshadrai Manilal T1 - Preparation of activated carbons from spent coffee and coffee parchment and assessment of their adsorbent efficiency T2 - Postprints der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - The valorization of coffee wastes through modification to activated carbon has been considered as a low-cost adsorbent with prospective to compete with commercial carbons. So far, very few studies have referred to the valorization of coffee parchment into activated carbon. Moreover, low-cost and efficient activation methods need to be more investigated. The aim of this work was to prepare activated carbon from spent coffee grounds and parchment, and to assess their adsorption performance. The co-calcination processing with calcium carbonate was used to prepare the activated carbons, and their adsorption capacity for organic acids, phenolic compounds and proteins was evaluated. Both spent coffee grounds and parchment showed yields after the calcination and washing treatments of around 9.0%. The adsorption of lactic acid was found to be optimal at pH 2. The maximum adsorption capacity of lactic acid with standard commercial granular activated carbon was 73.78 mg/g, while the values of 32.33 and 14.73 mg/g were registered for the parchment and spent coffee grounds activated carbons, respectively. The Langmuir isotherm showed that lactic acid was adsorbed as a monolayer and distributed homogeneously on the surface. Around 50% of total phenols and protein content from coffee wastewater were adsorbed after treatment with the prepared activated carbons, while 44, 43, and up to 84% of hydrophobic compounds were removed using parchment, spent coffee grounds and commercial activated carbon, respectively; the adsorption efficiencies of hydrophilic compounds ranged between 13 and 48%. Finally, these results illustrate the potential valorization of coffee by-products parchment and spent coffee grounds into activated carbon and their use as low-cost adsorbent for the removal of organic compounds from aqueous solutions. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 1158 KW - coffee by-products KW - spent coffee grounds KW - parchment KW - valorization KW - calcination KW - activated carbon KW - organic compounds adsorption Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-521914 SN - 1866-8372 IS - 8 ER - TY - JOUR A1 - Wigger, Dominik A1 - Schumacher, Fabian A1 - Schneider-Schaulies, Sibylle A1 - Kleuser, Burkhard T1 - Sphingosine 1-phosphate metabolism and insulin signaling JF - Cellular signalling N2 - Insulin is the main anabolic hormone secreted by 13-cells of the pancreas stimulating the assimilation and storage of glucose in muscle and fat cells. It modulates the postprandial balance of carbohydrates, lipids and proteins via enhancing lipogenesis, glycogen and protein synthesis and suppressing glucose generation and its release from the liver. Resistance to insulin is a severe metabolic disorder related to a diminished response of peripheral tissues to the insulin action and signaling. This leads to a disturbed glucose homeostasis that precedes the onset of type 2 diabetes (T2D), a disease reaching epidemic proportions. A large number of studies reported an association between elevated circulating fatty acids and the development of insulin resistance. The increased fatty acid lipid flux results in the accumulation of lipid droplets in a variety of tissues. However, lipid intermediates such as diacylglycerols and ceramides are also formed in response to elevated fatty acid levels. These bioactive lipids have been associated with the pathogenesis of insulin resistance. More recently, sphingosine 1-phosphate (S1P), another bioactive sphingolipid derivative, has also been shown to increase in T2D and obesity. Although many studies propose a protective role of S1P metabolism on insulin signaling in peripheral tissues, other studies suggest a causal role of S1P on insulin resistance. In this review, we critically summarize the current state of knowledge of S1P metabolism and its modulating role on insulin resistance. A particular emphasis is placed on S1P and insulin signaling in hepatocytes, skeletal muscle cells, adipocytes and pancreatic 13-cells. In particular, modulation of receptors and enzymes that regulate S1P metabolism can be considered as a new therapeutic option for the treatment of insulin resistance and T2D. KW - Insulin resistance KW - Type 2 diabetes KW - Sphingolipids KW - Hepatocytes KW - Adipocytes KW - Skeletal muscle cells Y1 - 2021 U6 - https://doi.org/10.1016/j.cellsig.2021.109959 SN - 0898-6568 SN - 1873-3913 VL - 82 PB - Elsevier Science CY - Amsterdam [u.a.] ER -