Refine
Document Type
- Article (7)
- Conference Proceeding (4)
- Doctoral Thesis (1)
Is part of the Bibliography
- yes (12)
Keywords
- Activation of dendritic cells (1)
- Adhäsion (1)
- Anti-biotin antibody (1)
- Antikörper (1)
- Antikörperproduktion (1)
- Extrazelluläre Matrix (1)
- Hybridoma technology (1)
- Hybridomtechnik (1)
- In vitro immunization (1)
- Induction of antibody responses (1)
Institute
Die vorliegende Arbeit wurde im Zeitraum von Oktober 2002 bis November 2005 an dem Institut für Biochemie und Biologie der Universität Potsdam in Kooperation mit dem Institut für Chemie des GKSS Forschungszentrums in Teltow unter der Leitung von Herrn Prof. Dr. B. Micheel und Herrn Prof. Dr. Th. Groth angefertigt. Im Rahmen dieser Arbeit wurden die Wechselwirkungen von Immunzellen mit verschiedenen Kultursubstraten untersucht. Dafür wurden drei verschiedene Hybridomzelllinien eingesetzt. Eine Hybridomzelllinie (K2) ist im Laufe dieser Arbeit hergestellt und etabliert worden. Der Einsatz von synthetischen und proteinbeschichteten Kulturoberflächen führte bei Hybridomzellen zu einer deutlich gesteigerten Antikörpersynthese im Vergleich zu herkömmlichen Zellkulturmaterialien. Obwohl diese Zellen in der Regel als Suspensionszellen kultiviert werden, führten die eingesetzten Polymermembranen (PAN, NVP) zu einer verbesserten Antikörpersynthese (um 30%) gegenüber Polystyrol als Referenz. Es konnte gezeigt werden, dass es einen Zusammenhang zwischen der Produktivität und dem Adh asionsverhalten der Hybridomzellen gibt. Um den Einfluss von Proteinen der extrazellulären Matrix auf Zellwachstum und Antikörpersynthese von Hybridomzellen zu untersuchen, wurden proteinbeschichtete Polystyrol-Oberflächen eingesetzt. Für die Modifikationen wurden Fibronektin, Kollagen I, Laminin und BSA ausgewählt. Die Modifikation der Polystyrol-Oberfläche mit geringen Mengen Fibronektin (0,2-0,4 µg/ml) führte zu einer beträchtlichen Steigerung der Antikörpersynthese um 70-120%. Für Kollagen I- und BSA-Beschichtungen konnten Steigerungen von 40% beobachtet werden. Modifikationen der Polystyrol-Oberfläche mit Laminin zeigten nur marginale Effekte. Durch weitere Versuche wurde bestätigt, dass die Adhäsion der Zellen an Kollagen I- und Laminin-beschichteten Oberflächen verringert ist. Die alpha2-Kette des alpha2beta1-Integrins konnte auf der Zelloberfläche nicht nachgewiesen werden. Durch ihr Fehlen wird wahrscheinlich die Bindungsfähigkeit der Zellen an Kollagen I und Laminin beeinflusst. Durch die Ergebnisse konnte gezeigt werden, dass Hybridomzellen nicht nur Suspensionszellen sind und das Kultursubstrate das Zellwachstum und die Produktivität dieser Zellen stark beeinflussen können. Der Einsatz von synthetischen und proteinbeschichteten Kultursubstraten zur Steigerung der Antikörpersynthese kann damit für die industrielle Anwendung von großer Relevanz sein. Für die Modellierung einer Lymphknotenmatrix wurden Fibronektin, Kollagen I, Heparansulfat und N-Acetylglucosamin-mannose in verschiedenen Kombinationen an Glasoberflächen adsorbiert und für Versuche zur In-vitro-Immunisierung eingesetzt. Es konnte gezeigt werden, dass die Modifikation der Oberflächen die Aktivierung und Interaktion von dendritischen Zellen, T- und B-Lymphozyten begünstigt, was durch den Nachweis spezifischer Interleukine (IL12, IL6) und durch die Synthese spezifischer Antikörper bestätigt wurde. Eine spezifische Immunreaktion gegen das Antigen Ovalbumin konnte mit den eingesetzten Zellpopulationen aus Ovalbumin-T-Zell-Rezeptor-transgenen Mäusen nachgewiesen werden. Die In-vitro-Immunantwort wurde dabei am stärksten durch eine Kombination von Kollagen I, Heparansulfat und N-Acetylglucosamin-mannose auf einer Glasoberfläche gefördert. Die Etablierung einer künstlichen Immunreaktion kann eine gesteuerte Aktivierung bzw. Inaktivierung von körpereigenen dendritischen Zellen gegen bestehende Krankheitsmerkmale in vitro ermöglichen. Durch die Versuche wurden Grundlagen für spezifische Immunantworten erarbeitet, die u.a. für die Herstellung von humanen Antikörpern eingesetzt werden können.
Isolation of recombinant antibodies from antibody libraries is commonly performed by different molecular display formats including phage display and ribosome display or different cell-surface display formats. We describe a new method which allows the selection of Escherichia coil cells producing the required single chain antibody by cultivation in presence of ampicillin conjugated to the antigen of interest. The method utilizes the neutralization of the conjugate by the produced single chain antibody which is secreted to the periplasm. Therefore, a new expression system based on the pET26b vector was designed and a library was constructed. The method was successfully established first for the selection of E. coli BL21 Star (DE3) cells expressing a model single chain antibody (anti-fluorescein) by a simple selection assay on LB-agar plates. Using this selection assay, we could identify a new single chain antibody binding biotin by growing E. coil BL21 Star (DE3) containing the library in presence of a biotin-ampicillin conjugate. In contrast to methods as molecular or cell surface display our selection system applies the soluble single chain antibody molecule and thereby avoids undesired effects, e.g. by the phage particle or the yeast fusion protein. By selecting directly in an expression strain, production and characterization of the selected single chain antibody is possible without any further cloning or transformation steps.
The generation of antibodies with designated specificity requires cost-intensive and time-consuming screening procedures. Here we present a new method by which hybridoma cells can be selected based on the specificity of the produced antibody by the use of antigen-toxin-conjugates thus eliminating the need of a screening procedure. Initial experiments were done with methotrexate as low molecular weight toxin and fluorescein as model antigen. Methotrexate and a methotrexate-fluorescein conjugate were characterized regarding their toxicity. Afterwards the effect of the fluorescein-specific antibody B13-DE1 on the toxicity of the methotrexate-fluorescein conjugate was determined. Finally, first results showed that hybridoma cells that produce fluorescein specific antibodies are able to grow in the presence of fluorescein-toxin-conjugates.
The multiplication and antibody production of murine hybridoma cells cultured on five different polymer membranes were tested and compared with conventional tissue culture polystyrene (TCPS). Membranes were prepared from polyacrylonitrile (PAN) and acrylonitrile copolymerized with N-vinylpyrrolidone (NVP20, NVP30), Na-methallylsulfonate (NaMAS) and N-(3-amino-propyl-methacrylamide-hydrochloride) (APMA). Cell number and antibody concentration were quantified as criteria for viability and productivity. Adhesion of hybridoma cells was characterized by vital and scanning electron microscopy. The results suggest that a strong adhesion of cells, observed on APMA and TCPS, increased cell growth but reduced monoclonal antibody production. In contrast membranes with lowered adhesivity such as NVP20 provided favourable conditions for monoclonal antibody production. In addition it was shown that this membrane also possessed a minor fouling as indicated by the low decrease of water flux across the membrane after protein adsorption. It was concluded that NVP20 could be a suitable material for the development of hollow fibre membranes for bioreactors.
The influence of coating polystyrene tissue culture plates with different proteins on murine hybridoma cell growth and antibody production was investigated. Fibronectin, collagen I, bovine serum albumin and laminin were used to coat NUNC and COSTAR cell culture plates. Cell number and antibody concentration in culture fluids were quantified as indicators for cell viability, proliferation and productivity. Adhesive behaviour, morphology, expression of surface receptors of hybridoma cells and the presence of tyrosine-phosphorylated proteins in cell lysates were characterized by cell adhesion experiments, microscopy, flow cytometry and Western Blot analysis. It was shown that coatings with fibronectin (0.2 ;g/ml) lead to a substantial improvement of cell growth by 50-70% and an increase of monoclonal antibody production by 100-120%. Collagen I coatings showed an improvement in cell growth by 30-70% and by 60% for the production of monoclonal antibodies. Coatings with BSA and laminin had minor effects on these parameters. It was found that the hybridoma cell lines used in this study did not express the ;2-chain of the ;2;1-integrin, which is responsible for binding to collagen and laminin. However, the presence of ;1- integrin on the cell surface was shown, which should enable hybridoma cells to bind fibronectin. We propose, therefore, that fibronectin adsorption to cell culture materials may be a promising approach to enhance the production of monoclonal antibodies by cultivated hybridoma cells.
Sperm proteins of the marine sessile mussels of the Mytilus edulis species complex are models to investigate reproductive isolation and speciation. This study aimed at identifying sperm proteins and their corresponding genes. This was aided by the use of monoclonal antibodies that preferentially bind to yet unknown sperm molecules. By identifying their target molecules, this approach identified proteins with relevance to Mytilus sperm function. This procedure identified 16 proteins, for example, enkurin, laminin, porin and heat shock proteins. The potential use of these proteins as genetic markers to study reproductive isolation is exemplified by analysing the enkurin locus. Enkurin evolution is driven by purifying selection, the locus displays high levels of intraspecific variation and species-specific alleles group in distinct phylogenetic clusters. These findings characterize enkurin as informative candidate biomarker for analyses of clinal variation and differential introgression in hybrid zones, for example, to understand determinants of reproductive isolation in Baltic Mytilus populations.
Sperm proteins of marine sessile invertebrates have been extensively studied to understand the molecular basis of reproductive isolation. Apart from molecules such as bindin of sea urchins or lysin of abalone species, the acrosomal protein M7 lysin of Mytilus edulis has been analyzed. M7 lysin was found to be under positive selection, but mechanisms driving the evolution of this protein are not fully understood. To explore functional aspects, this study investigated the protein expression pattern of M7 and M6 lysin in gametes and somatic tissue of male and female M. edulis. The study employs a previously published monoclonal antibody (G26-AG8) to investigate M6 and M7 lysin protein expression, and explores expression of both genes. It is shown that these proteins and their encoding genes are expressed in gametes and somatic tissue of both sexes. This is in contrast to sea urchin bindin and abalone lysin, in which gene expression is strictly limited to males. Although future studies need to clarify the functional importance of both acrosomal proteins in male and female somatic tissue, new insights into the evolution of sperm proteins in marine sessile invertebrates are possible. This is because proteins with male-specific expression (bindin, lysin) might evolve differently than proteins with expression in both sexes (M6/M7 lysin), and the putative function of both proteins in females opens the possibility that the evolution of M6/M7 lysin is under sexual antagonistic selection, for example, mutations beneficial to the acrosomal function that are less beneficial the function in somatic tissue of females.Mol. Reprod. Dev. 79: 517-524, 2012.