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IKr和IKs异质性对动作电位时程及其频率依赖性的影响:一项模拟研究。

Effects of IKr and IKs heterogeneity on action potential duration and its rate dependence: a simulation study.

作者信息

Viswanathan P C, Shaw R M, Rudy Y

机构信息

Cardiac Bioelectricity Research and Training Center, Department of Physiology and Biophysics, Case Western Reserve University, Cleveland, Ohio, USA.

出版信息

Circulation. 1999 May 11;99(18):2466-74. doi: 10.1161/01.cir.99.18.2466.

Abstract

BACKGROUND

A growing body of evidence suggests that heterogeneity of ion channel expression and electrophysiological characteristics is an important property of the ventricular myocardium. The 2 components of the delayed rectifier potassium current, IKr (rapid) and IKs (slow), play a dominant role in the repolarization of the action potential and are important determinants of its duration.

METHODS AND RESULTS

In this report, the effects of heterogeneities of IKr and IKs on action potential duration (APD) and its rate dependence (adaptation) are studied with the use of the LRd model of a mammalian ventricular cell. Results demonstrate the importance of IKs density variations in heterogeneity of repolarization. Cells with reduced IKs (eg, mid-myocardial M cells) display long APD and steep dependence of APD on rate. Mechanistically, accumulation of IKs activation and increased sodium calcium exchange current, INaCa, secondary to Na+ accumulation at a fast rate underlie the steep APD-rate relation of these cells. When cells are electrotonically coupled in a multicellular fiber through resistive gap junction, APD differences are reduced. The results demonstrate strong dependence of APD heterogeneity on the degree of intercellular coupling even in the normal physiological range. Highly reduced coupling maximizes APD heterogeneity.

CONCLUSIONS

Heterogeneity of IKs:IKr density strongly influences APD and its rate dependence. However, in the intact myocardium, the degree of gap-junction coupling may be an important factor that determines the manifestation of APD heterogeneity and dispersion of repolarization. The clinical significance of this study is in the context of repolarization abnormalities and associated arrhythmias (eg, long QT syndrome and torsade de pointes).

摘要

背景

越来越多的证据表明,离子通道表达和电生理特性的异质性是心室心肌的一个重要特性。延迟整流钾电流的两个成分,IKr(快速)和IKs(缓慢),在动作电位的复极化过程中起主导作用,并且是其持续时间的重要决定因素。

方法和结果

在本报告中,使用哺乳动物心室细胞的LRd模型研究了IKr和IKs的异质性对动作电位持续时间(APD)及其频率依赖性(适应性)的影响。结果证明了IKs密度变化在复极化异质性中的重要性。IKs降低的细胞(例如,心肌中层M细胞)表现出较长的APD以及APD对频率的陡峭依赖性。从机制上讲,IKs激活的积累以及由于快速的Na +积累继发的钠钙交换电流INaCa增加是这些细胞陡峭的APD-频率关系的基础。当细胞通过电阻性缝隙连接在多细胞纤维中电耦合时,APD差异减小。结果表明,即使在正常生理范围内,APD异质性也强烈依赖于细胞间耦合程度。高度降低的耦合会使APD异质性最大化。

结论

IKs:IKr密度的异质性强烈影响APD及其频率依赖性。然而,在完整心肌中,缝隙连接耦合程度可能是决定APD异质性表现和复极离散度的重要因素。本研究的临床意义在于复极异常及相关心律失常(如长QT综合征和尖端扭转型室速)的背景下。

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