Literature DB >> 8764277

Ratiometric measurement of endothelial depolarization in arterioles with a potential-sensitive dye.

J M Beach1, E D McGahren, J Xia, B R Duling.   

Abstract

A fluorescence ratio technique based on the voltage-sensitive dye 1-(3-sulfonatopropyl)-8-[beta-[2-di-n-butylamino)-6-naphythyl++ +]vinyl] pyridinium betaine (di-8-ANEPPS)has been developed for recording membrane potential changes during vascular responses of arterioles. Perfusion of hamster cheek pouch arterioles with the dye labeled the endothelial cell layer. voltage responses from the endothelium of intact arterioles were determined by analysis of voltage-induced shifts in fluorescence emission wavelengths from dye spectra imaged from the vessel wall. Membrane depolarization caused the dye spectrum to shift toward blue wavelengths, with maximal fluorescence changes near 560 and 620 nm. In isolated nonperfused arterioles, comparison of continuous dual-wavelength recordings with simultaneous microelectrode recordings showed that the ratio of fluorescence intensities (fluorescence at 620 nm to fluorescence at 560 nm) accurately followed changes in membrane potential (6-21 mV) during vasoconstriction. The dye response was linear with respect to potential changes from -56 to -6 mV, with a voltage sensitivity of 9.7% change in the ratio per 100 mV. Membrane potential responses from in vitro and in vivo arterioles after potassium stimulation consisted of rapid ( < 0.5 -s) depolarization followed by slow repolarization over several seconds. Potassium-induced depolarizations were conducted along arterioles, and the values of the electrical length constant for conducted depolarization determined by optical and microelectrode methods were in agreement. We conclude that ratio analysis of di-8-ANEPPS fluorescence emission can be used to accurately record membrane potential changes on the time scale of seconds during vasomotor activity from arterioles.

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Year:  1996        PMID: 8764277     DOI: 10.1152/ajpheart.1996.270.6.H2216

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  12 in total

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4.  Nifedipine blocks Ca2+ store refilling through a pathway not involving L-type Ca2+ channels in rabbit arteriolar smooth muscle.

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5.  Pathway to Retinal Oximetry.

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7.  Myoendothelial gap junction frequency does not account for sex differences in EDHF responses in rat MCA.

Authors:  Elke M Sokoya; Alan R Burns; Sean P Marrelli; Jie Chen
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8.  Chemosensory responses to CO2 in multiple brain stem nuclei determined using a voltage-sensitive dye in brain slices from rats.

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9.  Development of an image-based system for measurement of membrane potential, intracellular Ca(2+) and contraction in arteriolar smooth muscle cells.

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Journal:  Microcirculation       Date:  2010-11       Impact factor: 2.628

10.  Antifungal protein PAF severely affects the integrity of the plasma membrane of Aspergillus nidulans and induces an apoptosis-like phenotype.

Authors:  Eva Leiter; Henrietta Szappanos; Christoph Oberparleiter; Lydia Kaiserer; László Csernoch; Tünde Pusztahelyi; Tamás Emri; István Pócsi; Willibald Salvenmoser; Florentine Marx
Journal:  Antimicrob Agents Chemother       Date:  2005-06       Impact factor: 5.191

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