Microvascular Research 1995-09-01

Measurement of membrane potential of endothelial cells in single perfused microvessels.

P He, F E Curry

Index: Microvasc. Res. 50(2) , 183-98, (1995)

Full Text: HTML

Abstract

The membrane potential is an important modulator of calcium ion flux into endothelial cells of venular microvessels. We developed a method to measure the membrane potential of endothelial cells forming the walls of individually perfused microvessels under the same experimental conditions as those used to measure cytoplasmic calcium concentration and microvessel permeability. The membrane potential-sensitive fluorescent dye, bis-oxonol (1 microM), was added to the perfusate and the changes in bis-oxonol fluorescence intensity (FI) were calibrated in terms of changes in membrane potential using the cationic ionophore, gramicidin. FI changes an average of 0.625% per millivolt. The resting membrane potential of endothelial cells measured in single perfused microvessels, each calibrated individually, was 51.6 +/- 4.9 mV (n = 9). In the presence of high potassium Ringer's solutions (57.9 and 100 mM, [K+]o), the membrane depolarized 25 +/- 3 and 40 +/- 5 mV, respectively. Conversely, low potassium solutions (0.1 mM [K+]o) hyperpolarized the membrane by 23 +/- 4 mV. The endothelial membrane was also depolarized when the Na-K-ATPase was inhibited with ouabain. This method provides new data to test current hypotheses describing the role of the endothelial cell membrane potential as a modulator of microvessel permeability.


Related Compounds

  • Bis-(1,3-diethylth...

Related Articles:

Membrane potential changes visualized in complete growth media through confocal laser scanning microscopy of bis-oxonol-loaded cells.

1997-03-15

[Exp. Cell Res. 231(2) , 260-8, (1997)]

Peroxynitrite affects Ca2+ influx through voltage-dependent calcium channels.

2001-01-01

[J. Neurochem. 76(2) , 341-50, (2001)]

Simultaneous mechanical stiffness and electrical potential measurements of living vascular endothelial cells using combined atomic force and epifluorescence microscopy.

2009-04-29

[Nanotechnology 20(17) , 175104, (2009)]

A membrane potential-sensitive dye for vascular smooth muscle cells assays.

2003-01-31

[Biochem. Biophys. Res. Commun. 301(1) , 113-8, (2003)]

Discrimination between cystic fibrosis and CFTR-corrected epithelial cells by a membrane potential-sensitive probe.

2002-01-01

[Exp. Lung Res. 28(3) , 181-99, (2002)]

More Articles...