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Ionic, molecular, and cellular bases of QT-interval prolongation and torsade de pointes

机译:QT间隔延长和扭转尖端的离子,分子和细胞基础

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摘要

Torsade de pointes (TdP) is a life-threatening arrhythmia that develops as a consequence of a reduction in the repolarization reserve of cardiac cells leading to amplification of electrical heterogeneities in the ventricular myocardium as well as to the development of early afterdepolarization-induced triggered activity. Electrical heterogeneities within the ventricles are due to differences in the time course of repolarization of the three predominant cell types that make up the ventricular myocardium, giving rise to transmural voltage gradients and a dispersion of repolarization that contributes to the inscription of the electrocardiographic T wave. A number of non-antiarrhythmic drugs and antiarrhythmic agents with class III actions and/or the various mutations and cardiomyopathies associated with the long QT syndrome reduce net repolarizing current and amplify spatial dispersion of repolarization, thus creating the substrate for re-entry. This results in a prolongation of the QT interval, abnormal T waves, and development of TdP. Agents that prolong the QT interval but do not cause an increase in transmural dispersion of repolarization (TDR) do not induce TdP, suggesting that QT prolongation is not the sole or optimal determinant for arrhythmogenesis. This article reviews recent advances in our understanding of these mechanisms, particularly the role of TDR in the genesis of drug-induced TdP, and examines how these may guide us towards development of safer drugs.
机译:尖锐湿疣(TsP)是威胁生命的心律失常,其发展是由于心肌细胞的复极储备减少,导致心室心肌中的电异质性增强以及除极后诱发的早期触发活动的发展。心室内的电异质性是由于构成心室心肌的三种主要细胞类型在重新极化的时间过程中存在差异,从而导致了跨壁电压梯度和重新极化的分散,这有助于心电图T波的记录。许多具有III类作用和/或与长QT综合征相关的各种突变和心肌病的非抗心律不齐药物和抗心律不齐药物,会降低净复极电流并扩大复极的空间分散性,从而为重入提供了基础。这导致QT间隔延长,异常T波和TdP发育。延长QT间隔但不引起跨壁复极离散度(TDR)增加的药物不会诱导TdP,这表明QT延长不是心律失常的唯一或最佳决定因素。本文回顾了我们对这些机制尤其是TDR在药物诱导的TdP产生中的作用的理解方面的最新进展,并探讨了这些如何指导我们开发更安全的药物。

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  • 来源
    《Europace》 |2007年第4期|iv4-iv15|共12页
  • 作者

    Charles Antzelevitch;

  • 作者单位

    Masonic Medical Research Laboratory 2150 Bleecker Street Utica NY 13501 USA;

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  • 原文格式 PDF
  • 正文语种 eng
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