Literature DB >> 2297813

Electrophysiological properties and responses to simulated ischemia in cat ventricular myocytes of endocardial and epicardial origin.

S Kimura1, A L Bassett, T Furukawa, J Cuevas, R J Myerburg.   

Abstract

In multicellular preparations, there are differences in action potential configuration between endocardium and epicardium, and electrophysiological alterations induced by ischemia are more drastic in epicardium than in endocardium. The present study was designed to examine electrophysiological properties of single cardiac myocytes enzymatically isolated from the endocardial and epicardial surfaces of the cat left ventricle and to determine whether the differential responses to ischemia of intact tissue occur in single cells. Action potentials recorded from the isolated single cells of epicardial surface had lower action potential amplitude and a prominent notch between phase 1 and phase 2, compared with those of the cells isolated from the endocardial surface; these findings are similar to those in intact endocardial and epicardial preparations. Resting membrane potentials recorded from both endocardial and epicardial single cells were sensitive to the change in extracellular K+ concentration and had properties of a K+ electrode. Action potential duration was frequency dependent in both cell types and was shorter in epicardial cells than in endocardial cells at a stimulation rate of 3 Hz. When the cells were superfused with Tyrode's solution that was altered to mimic an ischemic environment in vivo (PO2, 30-40 mm Hg; pH 6.8; [K+], 10 mM; and glucose free), resting membrane potential, action potential amplitude, and action potential duration were reduced, and the refractory period was shortened in both endocardial and epicardial single cells, but there were no differences in the degree of changes in action potentials and refractory periods induced between the two cell types. Action potential changes induced by L-alpha-lysophosphatidylcholine (5-40 mg/l) were also similar in endocardial and epicardial single cells.(ABSTRACT TRUNCATED AT 250 WORDS)

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Year:  1990        PMID: 2297813     DOI: 10.1161/01.res.66.2.469

Source DB:  PubMed          Journal:  Circ Res        ISSN: 0009-7330            Impact factor:   17.367


  12 in total

1.  A mathematical model of action potential heterogeneity in adult rat left ventricular myocytes.

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2.  Gradient of sodium current across the left ventricular wall of adult rat hearts.

Authors:  S M Ashamalla; D Navarro; C A Ward
Journal:  J Physiol       Date:  2001-10-15       Impact factor: 5.182

3.  Transmural differences in rat ventricular protein kinase C epsilon correlate with its functional regulation of a transient cardiac K+ current.

Authors:  K S Thorneloe; X F Liu; M P Walsh; Y Shimoni
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4.  Reduction in number of sarcolemmal KATP channels slows cardiac action potential duration shortening under hypoxia.

Authors:  Zhiyong Zhu; Colin M-L Burnett; Gennadiy Maksymov; Elizabeth Stepniak; Ana Sierra; Ekaterina Subbotina; Mark E Anderson; William A Coetzee; Denice M Hodgson-Zingman; Leonid V Zingman
Journal:  Biochem Biophys Res Commun       Date:  2011-11-03       Impact factor: 3.575

5.  Calcium channel heterogeneity in canine left ventricular myocytes.

Authors:  Hong-Sheng Wang; Ira S Cohen
Journal:  J Physiol       Date:  2003-01-31       Impact factor: 5.182

6.  A topographical study of mechanical and electrical properties of single myocytes isolated from normal guinea-pig ventricular muscle.

Authors:  X Wan; S M Bryant; G Hart
Journal:  J Anat       Date:  2003-06       Impact factor: 2.610

7.  Role of the transient outward current (Ito) in shaping canine ventricular action potential--a dynamic clamp study.

Authors:  Xiaoyin Sun; Hong-Sheng Wang
Journal:  J Physiol       Date:  2005-01-13       Impact factor: 5.182

8.  Regional differences in calcium-release channels from heart.

Authors:  L Borgatta; J Watras; A M Katz; B E Ehrlich
Journal:  Proc Natl Acad Sci U S A       Date:  1991-03-15       Impact factor: 11.205

9.  Mechanistic investigation into the arrhythmogenic role of transmural heterogeneities in regional ischaemia phase 1A.

Authors:  Brock M Tice; Blanca Rodríguez; James Eason; Natalia Trayanova
Journal:  Europace       Date:  2007-11       Impact factor: 5.214

10.  Mechanisms for initiation of reentry in acute regional ischemia phase 1B.

Authors:  Xiao Jie; Natalia A Trayanova
Journal:  Heart Rhythm       Date:  2009-11-13       Impact factor: 6.343

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