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去极化诱导的大鼠心室肌细胞自动节律性是基于 L 型钙通道和慢 Kv 通道的门控特性。

Depolarization-induced automaticity in rat ventricular cardiomyocytes is based on the gating properties of L-type calcium and slow Kv channels.

机构信息

Department of Cardiology, Leiden University Medical Center, PO Box 9600, 2300 RC Leiden, The Netherlands.

出版信息

Eur Biophys J. 2013 Apr;42(4):241-55. doi: 10.1007/s00249-012-0866-9. Epub 2012 Oct 23.

Abstract

Depolarization-induced automaticity (DIA) of cardiomyocytes is the property of those cells to generate pacemaker cell-like spontaneous electrical activity when subjected to a depolarizing current. This property provides a candidate mechanism for generation of pathogenic ectopy in cardiac tissue. The purpose of this study was to determine the biophysical mechanism of DIA in terms of the ion conductance properties of the cardiomyocyte membrane. First, we determined, by use of the conventional whole-cell patch-clamp technique, the membrane conductance and DIA properties of ventricular cardiomyocytes isolated from adult rat heart. Second, we reproduced and analysed DIA properties by using an adapted version of the experimentally based mathematical cardiomyocyte model of Pandit et al. (Biophys J 81:3029-3051 2001, Biophys J 84:832-841 2003) and Padmala and Demir (J Cardiovasc Electrophysiol 14:990-995 2003). DIA in 23 rat cardiomyocytes was a damped membrane potential oscillation with a variable number of action potentials and/or waves, depending on the strength of the depolarizing current and the particular cell. The adapted model was used to reconstruct the DIA properties of a particular cardiomyocyte from its whole-cell voltage-clamp currents. The main currents involved in DIA were an L-type calcium current (I CaL) and a slowly activating and inactivating Kv current (I ss), with linear (I B) and inward rectifier (I K1) currents acting as background currents and I Na and I t as modulators. Essential for DIA is a sufficiently large window current of a slowly inactivating I CaL combined with a critically sized repolarizing current I ss. Slow inactivation of I ss makes DIA transient. In conclusion, we established a membrane mechanism of DIA primarily based on I CaL, I ss and inward rectifier properties; this may be helpful in understanding cardiac ectopy and its treatment.

摘要

去极化诱导的自动性(DIA)是心肌细胞的一种特性,即在受到去极化电流时,产生类似起搏细胞的自发性电活动。这种特性为心脏组织中病理性异位的产生提供了候选机制。本研究的目的是从心肌细胞膜的离子电导特性方面,确定 DIA 的生物物理机制。首先,我们使用传统的全细胞膜片钳技术,确定了来自成年大鼠心脏的心室心肌细胞的膜电导和 DIA 特性。其次,我们通过使用 Pandit 等人的基于实验的心肌细胞模型的改编版本(Biophys J 81:3029-3051 2001,Biophys J 84:832-841 2003)和 Padmala 和 Demir(J Cardiovasc Electrophysiol 14:990-995 2003)来重现和分析 DIA 特性。23 个大鼠心肌细胞的 DIA 是一种阻尼膜电位振荡,其动作电位和/或波的数量取决于去极化电流的强度和特定细胞。适应模型用于从特定心肌细胞的全细胞膜电压钳电流中重建 DIA 特性。涉及 DIA 的主要电流是 L 型钙电流(I CaL)和缓慢激活和失活的 Kv 电流(I ss),线性(I B)和内向整流(I K1)电流作为背景电流,I Na和 I t作为调节剂。DIA 的必要条件是足够大的缓慢失活 I CaL 的窗口电流与临界大小的复极化电流 I ss 相结合。I ss 的缓慢失活使 DIA 具有瞬时性。总之,我们建立了一个主要基于 I CaL、I ss 和内向整流特性的 DIA 膜机制;这可能有助于理解心脏异位及其治疗。

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