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Brugada 综合征中心细胞电机械异常的离子机制。

Ionic mechanisms of cellular electrical and mechanical abnormalities in Brugada syndrome.

机构信息

Department of Pharmacology and Cell Biophysics, 2Neuroscience Program, University of Cincinnati College of Medicine, Cincinnati, Ohio 45267-0575, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2011 Jan;300(1):H279-87. doi: 10.1152/ajpheart.00079.2010. Epub 2010 Oct 8.

Abstract

The Brugada syndrome (BrS) is a right ventricular (RV) arrhythmia that is responsible for up to 12% of sudden cardiac deaths. The aims of our study were to determine the cellular mechanisms of the electrical abnormality in BrS and the potential basis of the RV contractile abnormality observed in the syndrome. Tetrodotoxin was used to reduce cardiac Na(+) current (I(Na)) to mimic a BrS-like setting in canine ventricular myocytes. Moderate reduction (<50%) of I(Na) with tetrodotoxin resulted in all-or-none repolarization in a fraction of RV epicardial myocytes. Dynamic clamp and modeling show that reduction of I(Na) shifts the action potential (AP) duration-transient outward current (I(to)) density curve to the left and has a biphasic effect on AP duration. In the presence of a large I(to), I(Na) reduction either prolongs or collapses the AP, depending on the exact density of I(to). These repolarization changes reduce Ca(2+) influx and sarcoplasmic reticulum load, resulting in marked attenuation of myocyte contraction and Ca(2+) transient in RV epicardial myocytes. We conclude that I(Na) reduction alters repolarization by reducing the threshold for I(to)-induced all-or-none repolarization. These cellular electrical changes suppress myocyte excitation-contraction coupling and contraction and may be a contributing factor to the contractile abnormality of the RV wall in BrS.

摘要

Brugada 综合征(BrS)是一种右心室(RV)心律失常,占心源性猝死的 12%。我们的研究目的是确定 BrS 中电异常的细胞机制,以及该综合征中观察到的 RV 收缩异常的潜在基础。河豚毒素被用于降低心肌细胞中的钠离子电流(I(Na)),以模拟 BrS 样环境。河豚毒素适度降低(<50%)I(Na)可导致 RV 心外膜心肌细胞中出现全或无复极化。动态箝位和建模表明,I(Na)的减少会使动作电位(AP)时程-瞬时外向电流(I(to))密度曲线向左移位,并对 AP 时程产生双相影响。在存在较大 I(to)的情况下,I(Na)的减少会延长或崩溃 AP,具体取决于 I(to)的确切密度。这些复极化变化会减少 Ca(2+)内流和肌浆网负荷,从而导致 RV 心外膜心肌细胞收缩和 Ca(2+)瞬变明显减弱。我们得出结论,I(Na)的减少通过降低 I(to)诱导的全或无复极化的阈值来改变复极化。这些细胞电变化抑制心肌细胞兴奋-收缩偶联和收缩,可能是 BrS 中 RV 壁收缩异常的一个促成因素。

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Ionic mechanisms of cellular electrical and mechanical abnormalities in Brugada syndrome.Brugada 综合征中心细胞电机械异常的离子机制。
Am J Physiol Heart Circ Physiol. 2011 Jan;300(1):H279-87. doi: 10.1152/ajpheart.00079.2010. Epub 2010 Oct 8.

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