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抗组胺药特非那定对多种人类心脏钾电流的阻滞作用:特非那定相关心脏毒性的可能机制。

Blockade of multiple human cardiac potassium currents by the antihistamine terfenadine: possible mechanism for terfenadine-associated cardiotoxicity.

作者信息

Crumb W J, Wible B, Arnold D J, Payne J P, Brown A M

机构信息

Department of Molecular Physiology and Biophysics, Baylor College of Medicine, Houston, Texas 77030.

出版信息

Mol Pharmacol. 1995 Jan;47(1):181-90.

PMID:7838127
Abstract

Use of the antihistamine terfenadine has been associated with QT prolongation and torsade de pointes. One possible mechanism is blockade of cardiac potassium channels. We therefore characterized the effects of terfenadine on potassium currents recorded from isolated human cardiac myocytes. We demonstrated terfenadine block of the transient outward current and a novel, ultra-rapidly activating, delayed rectifier K+ current (IKur), which is very sensitive to 4-aminopyridine. IKur is probably produced by the protein product of Kv1.5a, a Shaker-like potassium channel cDNA cloned from human heart. We also compared terfenadine blockade of fHK (Kv1.5a) currents stably expressed in a human embryonic kidney cell line with terfenadine blockade of IKur in human atrial myocytes. Using the patch-clamp technique, we found that terfenadine produced a time-dependent reduction in Kv1.5a current that was consistent with blockade from the cytoplasmic side of the channel. The terfenadine-sensitive Kv1.5a current in human embryonic kidney cells was similar to the 4-aminopyridine-sensitive current in human atrial myocytes. In addition to blockade of the transient outward current and IKur, terfenadine at clinically relevant concentrations blocked both the rapidly and slowly activating components of the delayed rectifier in human atrial myocytes. Blockade of these K+ currents may contribute to the cardiotoxicity associated with terfenadine usage.

摘要

抗组胺药特非那定的使用与QT间期延长和尖端扭转型室速有关。一种可能的机制是心脏钾通道的阻断。因此,我们研究了特非那定对从分离的人心肌细胞记录的钾电流的影响。我们证明了特非那定对瞬时外向电流和一种新型的、超快速激活的延迟整流钾电流(IKur)的阻断作用,IKur对4-氨基吡啶非常敏感。IKur可能是由Kv1.5a的蛋白产物产生的,Kv1.5a是从人心脏克隆的一种类Shaker钾通道cDNA。我们还比较了特非那定对人胚胎肾细胞系中稳定表达的fHK(Kv1.5a)电流的阻断作用与人心房肌细胞中IKur的特非那定阻断作用。使用膜片钳技术,我们发现特非那定使Kv1.5a电流产生时间依赖性降低,这与从通道细胞质侧的阻断作用一致。人胚胎肾细胞中对特非那定敏感的Kv1.5a电流与人心房肌细胞中对4-氨基吡啶敏感的电流相似。除了阻断瞬时外向电流和IKur外,临床相关浓度的特非那定还阻断了人心房肌细胞中延迟整流器的快速和慢速激活成分。这些钾电流的阻断可能导致与特非那定使用相关的心脏毒性。

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