• Deutsch

University Logo

  • Home
  • Search
  • Browse
  • Submit
  • Sitemap
Schließen

Refine

Has Fulltext

  • no (3) (remove)

Author

  • Jahn, Karolina (3) (remove)

Year of publication

  • 2015 (3) (remove)

Document Type

  • Article (2)
  • Doctoral Thesis (1)

Language

  • English (2)
  • German (1)

Keywords

  • Confocal microscopy (1)
  • Fluorescence imaging (1)
  • Fluorescence spectroscopy (1)
  • Fluorescent probes (1)

3 search hits

  • 1 to 3
  • BibTeX
  • CSV
  • RIS
  • XML
  • 10
  • 20
  • 50
  • 100

Sort by

  • Year
  • Year
  • Title
  • Title
  • Author
  • Author
Simultaneous Fluorescence and Phosphorescence Lifetime Imaging Microscopy in Living Cells (2015)
Jahn, Karolina ; Buschmann, Volker ; Hille, Carsten
In living cells, there are always a plethora of processes taking place at the same time. Their precise regulation is the basis of cellular functions, since small failures can lead to severe dysfunctions. For a comprehensive understanding of intracellular homeostasis, simultaneous multiparameter detection is a versatile tool for revealing the spatial and temporal interactions of intracellular parameters. Here, a recently developed time-correlated single-photon counting (TCSPC) board was evaluated for simultaneous fluorescence and phosphorescence lifetime imaging microscopy (FLIM/PLIM). Therefore, the metabolic activity in insect salivary glands was investigated by recording ns-decaying intrinsic cellular fluorescence, mainly related to oxidized flavin adenine dinucleotide (FAD) and the mu s-decaying phosphorescence of the oxygen-sensitive ruthenium-complex Kr341. Due to dopamine stimulation, the metabolic activity of salivary glands increased, causing a higher pericellular oxygen consumption and a resulting increase in Kr341 phosphorescence decay time. Furthermore, FAD fluorescence decay time decreased, presumably due to protein binding, thus inducing a quenching of FAD fluorescence decay time. Through application of the metabolic drugs antimycin and FCCP, the recorded signals could be assigned to a mitochondrial origin. The dopamine-induced changes could be observed in sequential FLIM and PLIM recordings, as well as in simultaneous FLIM/PLIM recordings using an intermediate TCSPC timing resolution.
Simultaneous Fluorescence and Phosphorescence Lifetime Imaging Microscopy in Living Cells (2015)
Jahn, Karolina ; Buschmann, Volker ; Hille, Carsten
In living cells, there are always a plethora of processes taking place at the same time. Their precise regulation is the basis of cellular functions, since small failures can lead to severe dysfunctions. For a comprehensive understanding of intracellular homeostasis, simultaneous multiparameter detection is a versatile tool for revealing the spatial and temporal interactions of intracellular parameters. Here, a recently developed time-correlated single-photon counting (TCSPC) board was evaluated for simultaneous fluorescence and phosphorescence lifetime imaging microscopy (FLIM/PLIM). Therefore, the metabolic activity in insect salivary glands was investigated by recording ns-decaying intrinsic cellular fluorescence, mainly related to oxidized flavin adenine dinucleotide (FAD) and the μs-decaying phosphorescence of the oxygen-sensitive ruthenium-complex Kr341. Due to dopamine stimulation, the metabolic activity of salivary glands increased, causing a higher pericellular oxygen consumption and a resulting increase in Kr341 phosphorescence decay time. Furthermore, FAD fluorescence decay time decreased, presumably due to protein binding, thus inducing a quenching of FAD fluorescence decay time. Through application of the metabolic drugs antimycin and FCCP, the recorded signals could be assigned to a mitochondrial origin. The dopamine-induced changes could be observed in sequential FLIM and PLIM recordings, as well as in simultaneous FLIM/PLIM recordings using an intermediate TCSPC timing resolution.
Multiparameter-Detektion von biologisch relevanten Analyten mittels moderner Verfahren der Fluoreszenzmikroskopie (2015)
Jahn, Karolina
  • 1 to 3

OPUS4 Logo  KOBV Logo  OAI Logo  DINI Zertifikat 2007  OA Netzwerk Logo

  • Institutional Repository
  • University Press
  • University Bibliography
  • University Library
  • Policy
  • Contact
  • Disclaimer
  • Imprint
  • Datenschutzerklärung

Login