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犬左心室游离壁心外膜、心肌中层和心内膜心肌细胞电生理差异的离子基础。

Ionic bases for electrophysiological distinctions among epicardial, midmyocardial, and endocardial myocytes from the free wall of the canine left ventricle.

作者信息

Liu D W, Gintant G A, Antzelevitch C

机构信息

Masonic Medical Research Laboratory, Utica, N.Y. 13504.

出版信息

Circ Res. 1993 Mar;72(3):671-87. doi: 10.1161/01.res.72.3.671.

Abstract

Recent studies from our laboratory involving syncytial preparations have delineated electrophysiological distinctions between epicardium, endocardium, and a unique population of cells in the deep subepicardial to midmyocardial layers (M region) of the canine ventricle. In the present study, we used standard microelectrode, single microelectrode switch voltage-clamp, and whole-cell patch-clamp techniques to examine transmembrane action potentials, steady-state current-voltage relations, and the 4-aminopyridine-sensitive transient outward current (Ito1) in myocytes enzymatically dissociated from discrete layers of the free wall of the canine left ventricle. Action potential characteristics of myocytes isolated from the epicardium, M region, and endocardium were very similar to those previously observed in syncytial preparations isolated from the respective regions of the ventricular wall. A prominent spike and dome was apparent in myocytes from epicardium and the M region but not in myocytes from endocardium. Action potential duration-rate relations were considerably more pronounced in cells isolated from the M region. Current-voltage relations recorded from cells of epicardial, M region, and endocardial origin all displayed an N-shaped configuration with a prominent negative slope-conductance region. The magnitude of the inward rectifier K+ current (IK1) was 392 +/- 86, 289 +/- 65, and 348 +/- 115 pA in epicardial, M region, and endocardial myocytes, respectively, when defined as steady-state current blocked by 10 mM Cs+. Similar levels were obtained when IK1 was defined as the steady-state difference current measured in the presence (6 mM) and absence of extracellular K+. Ito1 was significantly greater in epicardial and M region myocytes than in endocardial myocytes. At a test potential of +70 mV (holding potential, -80 mV), Ito1 amplitude was 4,203 +/- 2,370, 3,638 +/- 1,135, and 714 +/- 286 pA in epicardial, M region, and endocardial cells, respectively. No significant differences were observed in the voltage dependence of inactivation of Ito1 in the three cell types. The time course of reactivation of Ito1 was slower in cells from the M region compared with either epicardial or endocardial cells. Our data suggest that prominent heterogeneity exists in the electrophysiology of cells spanning the canine ventricular wall and that differences in the intensity of the transient outward current contribute importantly, but not exclusively, to this heterogeneity. These findings should advance our understanding of basic heart function and the ionic bases for the electrocardiographic J wave, T wave, U wave, and long QT intervals as well as improve our understanding of some of the complex factors contributing to the development of cardiac arrhythmias.

摘要

我们实验室最近涉及合胞体制备的研究已经阐明了犬心室心外膜、心内膜以及心外膜深层至心肌中层(M区)独特细胞群之间的电生理差异。在本研究中,我们使用标准微电极、单微电极切换电压钳和全细胞膜片钳技术,来检测从犬左心室游离壁不同层酶解分离的心肌细胞的跨膜动作电位、稳态电流 - 电压关系以及4 - 氨基吡啶敏感的瞬时外向电流(Ito1)。从心外膜、M区和心内膜分离的心肌细胞的动作电位特征与先前在从心室壁相应区域分离的合胞体制备中观察到的非常相似。在心外膜和M区的心肌细胞中可见明显的峰和圆顶,但在心内膜的心肌细胞中则没有。从M区分离的细胞中动作电位持续时间 - 速率关系更为明显。从心外膜、M区和心内膜来源的细胞记录的电流 - 电压关系均显示出N形配置,具有明显的负斜率电导区域。当定义为被10 mM Cs + 阻断的稳态电流时,心外膜、M区和心内膜心肌细胞中内向整流钾电流(IK1)的大小分别为392±86、289±65和348±115 pA。当IK1定义为在存在(6 mM)和不存在细胞外钾的情况下测量的稳态差电流时,获得了类似的水平。Ito1在心外膜和M区心肌细胞中明显大于心内膜心肌细胞。在测试电位为+70 mV(钳制电位, - 80 mV)时,心外膜、M区和心内膜细胞中Ito1的幅度分别为4203±2370、3638±1135和714±286 pA。在三种细胞类型中,Ito1失活的电压依赖性没有观察到显著差异。与心外膜或心内膜细胞相比,M区细胞中Ito1的再激活时间进程较慢。我们的数据表明,跨越犬心室壁的细胞电生理存在明显的异质性,并且瞬时外向电流强度的差异对这种异质性有重要但非唯一的贡献。这些发现应该会推进我们对基本心脏功能以及心电图J波、T波、U波和长QT间期的离子基础的理解,同时也会增进我们对导致心律失常发生的一些复杂因素的理解。

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