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预测药物引起的QT间期延长和尖端扭转型室性心动过速:临床前终点指标综述

Predicting drug-induced QT prolongation and torsades de pointes: a review of preclinical endpoint measures.

作者信息

Townsend Claire, Brown Barry S

机构信息

GlaxoSmithKline Biological Reagents and Assay Development, Research Triangle Park, NC, USA.

出版信息

Curr Protoc Pharmacol. 2013 Jun;Chapter 10:Unit 10.16. doi: 10.1002/0471141755.ph1016s61.

Abstract

Compound-induced prolongation of the cardiac QT interval is a major concern in drug development and this unit discusses approaches that can predict QT effects prior to undertaking clinical trials. The majority of compounds that prolong the QT interval block the cardiac rapid delayed rectifier potassium current, IKr (hERG). Described in this overview are different ways to measure hERG, from recent advances in automated electrophysiology to the quantification of channel protein trafficking and binding. The contribution of other cardiac ion channels to hERG data interpretation is also discussed. In addition, endpoint measures of the integrated activity of cardiac ion channels at the single-cell, tissue, and whole-animal level, including for example the well-established action potential to the more recent beat-to-beat variability, transmural dispersion of repolarization, and field potential duration, are described in the context of their ability to predict QT prolongation and torsadogenicity in humans.

摘要

化合物诱导的心脏QT间期延长是药物研发中的一个主要问题,本单元讨论了在开展临床试验之前能够预测QT效应的方法。大多数延长QT间期的化合物会阻断心脏快速延迟整流钾电流IKr(人ether-à-go-go相关基因)。本综述介绍了测量IKr的不同方法,从自动电生理学的最新进展到通道蛋白运输和结合的量化。还讨论了其他心脏离子通道对IKr数据解读的作用。此外,在预测人类QT延长和致心律失常性的能力背景下,描述了单细胞、组织和全动物水平上心脏离子通道综合活性的终点指标,例如从成熟的动作电位到更新的逐搏变异性、复极跨壁离散度和场电位持续时间。

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