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特非那定及其代谢产物对从人心脏克隆的延迟整流钾通道的影响。

Effects of terfenadine and its metabolites on a delayed rectifier K+ channel cloned from human heart.

作者信息

Rampe D, Wible B, Brown A M, Dage R C

机构信息

Marion Merrell Dow Research Institute, Cincinnati, Ohio 45215.

出版信息

Mol Pharmacol. 1993 Dec;44(6):1240-5.

PMID:8264561
Abstract

Use of the nonsedating antihistamine terfenadine has been associated with altered cardiac repolarization in certain clinical settings. For this reason we examined the effects of terfenadine, and its metabolites, on a rapidly activating delayed rectifier K+ channel (fHK) cloned from human heart. fHK was stably expressed in human embryonic kidney cells, and both whole-cell currents and currents from excised inside-out patches were recorded. Terfenadine (3 microM) blocked whole-cell fHK current by 72 +/- 6%. In inside-out patches, terfenadine applied to the cytoplasmic surface blocked fHK with an IC50 value of 367 nM. The main effect of terfenadine was to enhance the rate of inactivation of fHK current and thereby reduce the current at the end of a prolonged voltage-clamp pulse. The blockade displayed a weak voltage dependence, increasing at more positive potentials. The mechanism of action of terfenadine is therefore consistent with blockade of open channels. In contrast, the metabolites of terfenadine were weakly active on fHK. IC50 values for all of the metabolites tested ranged from 27-fold to 583-fold higher than that obtained for terfenadine. It is concluded that terfenadine, but not its metabolites, blocks at least one type of human cardiac K+ channel at clinically relevant concentrations and that this activity may underlie the cardiac arrhythmias that have been associated with the use of this drug.

摘要

在某些临床情况下,使用非镇静性抗组胺药特非那定与心脏复极化改变有关。因此,我们研究了特非那定及其代谢产物对从人心脏克隆的快速激活延迟整流钾通道(fHK)的影响。fHK在人胚肾细胞中稳定表达,并记录了全细胞电流和从切除的内向外膜片钳记录的电流。特非那定(3 microM)使全细胞fHK电流阻断72±6%。在内向外膜片中,应用于细胞质表面的特非那定阻断fHK的IC50值为367 nM。特非那定的主要作用是提高fHK电流的失活速率,从而降低延长电压钳脉冲结束时的电流。这种阻断表现出较弱的电压依赖性,在更正的电位下增加。因此,特非那定的作用机制与开放通道的阻断一致。相比之下,特非那定的代谢产物对fHK的活性较弱。所有测试代谢产物的IC50值比特非那定高出27倍至583倍。结论是,在临床相关浓度下,特非那定而非其代谢产物可阻断至少一种类型的人心脏钾通道,且这种活性可能是与该药物使用相关的心律失常的基础。

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