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压力超负荷型心力衰竭时外向钾电流的重塑

Remodeling of outward K+ currents in pressure-overload heart failure.

作者信息

Wang Yanggan, Cheng Jun, Chen Guohua, Rob Farhana, Naseem R Haris, Nguyen Lan, Johnstone Janet L, Hill Joseph A

机构信息

Department of Internal Medicine, University of Texas Southwestern Medical Center, Dallas, Texas 75390-8573, USA.

出版信息

J Cardiovasc Electrophysiol. 2007 Aug;18(8):869-75. doi: 10.1111/j.1540-8167.2007.00864.x. Epub 2007 May 30.

Abstract

OBJECTIVES

Outward K+ currents are critical determinants of action potential repolarization and the site of action of a number of electrophysiologically active drugs. Further, expression and processing of the channels underlying these currents is altered in heart disease. Here, we investigated the native transmural gradient of outward K+ currents in murine left ventricle (LV) and delineated disease-related remodeling of these currents in heart failure (HF).

METHODS

Pressure-overload heart failure was induced in mice by thoracic aortic constriction. Outward K+ currents were recorded using the whole-cell patch clamp technique in acutely dissociated ventricular myocytes.

RESULTS

Unambiguous gradients of outward K+ current density and Kv4.2 protein abundance were observed across the wall of the LV, with significantly larger current density and protein levels in subepicardial (SEP) myocytes, compared with subendocardial (SEN) myocytes. Voltage dependences of current activation and inactivation were similar in SEP and SEN myocytes. In failing LV, however, outward K+ current density was significantly decreased in SEP but not in SEN cells leading to elimination of the native transmural gradient. In failing LV, the voltage dependences of K+ current activation and inactivation were not altered. However, current inactivation (decay) was significantly accelerated and recovery from inactivation was significantly slowed. Consistent with this, Western blot analysis revealed a decrease in KChIP2 protein abundance in failing LV.

CONCLUSIONS

This is the first report of HF-related remodeling of outward K+ currents in murine LV. Similar to humans, disease-related remodeling occurs differentially across the murine ventricular wall, leading to loss of the native gradient of repolarization. Together with slowed recovery from inactivation, these alterations likely promote abnormal impulse conduction, a major proarrhythmic mechanism.

摘要

目的

外向钾电流是动作电位复极化的关键决定因素,也是许多电生理活性药物的作用位点。此外,这些电流所依赖通道的表达和加工在心脏病中会发生改变。在此,我们研究了小鼠左心室(LV)中外向钾电流的天然跨壁梯度,并描绘了心力衰竭(HF)时这些电流与疾病相关的重塑情况。

方法

通过胸主动脉缩窄在小鼠中诱导压力超负荷心力衰竭。使用全细胞膜片钳技术在急性分离的心室肌细胞中记录外向钾电流。

结果

在LV壁上观察到外向钾电流密度和Kv4.2蛋白丰度存在明确的梯度,与心内膜下(SEN)心肌细胞相比,心外膜下(SEP)心肌细胞中的电流密度和蛋白水平明显更大。SEP和SEN心肌细胞中电流激活和失活的电压依赖性相似。然而,在衰竭的LV中,SEP细胞中外向钾电流密度显著降低,而SEN细胞中未降低,导致天然跨壁梯度消失。在衰竭的LV中,钾电流激活和失活的电压依赖性未改变。然而,电流失活(衰减)明显加速,失活后的恢复明显减慢。与此一致,蛋白质印迹分析显示衰竭LV中KChIP2蛋白丰度降低。

结论

这是关于小鼠LV中外向钾电流与HF相关重塑的首次报道。与人类相似,与疾病相关的重塑在小鼠心室壁上存在差异,导致天然复极化梯度丧失。连同失活后恢复减慢,这些改变可能促进异常冲动传导,这是一种主要的促心律失常机制。

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