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  4. Triplet imaging of oxygen consumption during the contraction of a single smooth muscle cell (A7r5)
 
research article

Triplet imaging of oxygen consumption during the contraction of a single smooth muscle cell (A7r5)

Geissbuehler, Matthias
•
Spielmann, Thiemo
•
Formey, Aurélie  
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2010
Biophysical Journal

The measurement of tissue and cell oxygenation is important for understanding cell metabolism. We have addressed this problem with a novel optical technique, called triplet imaging, that exploits oxygen-induced triplet lifetime changes and is compatible with a variety of fluorophores. A modulated excitation of varying pulse widths allows the extraction of the lifetime of the essentially dark triplet state using a high-fluorescence signal intensity. This enables the monitoring of fast kinetics of oxygen concentration in living cells combined with high temporal and spatial resolution. First, the oxygen-dependent triplet-state quenching of tetramethylrhodamine is validated and then calibrated in an L-ascorbic acid titration experiment demonstrating the linear relation between triplet lifetime and oxygen concentration according to the Stern-Volmer equation. Second, the method is applied to a biological cell system, employing as reporter a cytosolic fusion protein of beta-galactosidase with SNAP-tag labeled with tetramethylrhodamine. Oxygen consumption in single smooth muscle cells A7r5 during an [Arg(8)]-vasopressin-induced contraction is measured. The results indicate a consumption leading to an intracellular oxygen concentration that decays monoexponentially with time. The proposed method has the potential to become a new tool for investigating oxygen metabolism at the single cell and the subcellular level.

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Type
research article
DOI
10.1016/j.bpj.2009.10.006
Web of Science ID

WOS:000273972700018

Author(s)
Geissbuehler, Matthias
Spielmann, Thiemo
Formey, Aurélie  
Märki, Iwan  
Leutenegger, Marcel  
Hinz, Boris
Johnsson, Kai  
Van De Ville, Dimitri  
Lasser, Theo  
Date Issued

2010

Publisher

Elsevier

Published in
Biophysical Journal
Volume

98

Issue

2

Start page

339

End page

49

Subjects

Fluorescence

•

Oxygen Consumption

Editorial or Peer reviewed

NON-REVIEWED

Written at

EPFL

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Available on Infoscience
October 15, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/55572
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