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细胞外酸中毒调节氟卡尼和奎尼丁对Kv4.3电流的药物阻断作用。

Extracellular acidosis modulates drug block of Kv4.3 currents by flecainide and quinidine.

作者信息

Singarayar Suresh, Bursill Jane, Wyse Ken, Bauskin Asne, Wu Wan, Vandenberg Jamie, Breit Samuel, Campbell Terence

机构信息

Department of Medicine, The University of New South Wales, Victor Chang Cardiac Research Institute, Sydney Australia.

出版信息

J Cardiovasc Electrophysiol. 2003 Jun;14(6):641-50. doi: 10.1046/j.1540-8167.2003.03026.x.

Abstract

INTRODUCTION

As a molecular model of the effect of ischemia on drug block of the transient outward potassium current, the effect of acidosis on the blocking properties of flecainide and quinidine on Kv4.3 currents was studied.

METHODS AND RESULTS

Kv4.3 channels were stably expressed in Chinese hamster ovary cells. Whole-cell, voltage clamp techniques were used to measure the effect of flecainide and quinidine on Kv4.3 currents in solutions of pH 7.4 and 6.0. Extracellular acidosis attenuated flecainide block of Kv4.3 currents, with the IC50 for flecainide (based on current-time integrals) increasing from 7.8 +/- 1.1 microM at pH 7.4 to 125.1 +/- 1.1 microM at pH 6.0. Similar effects were observed for quinidine (IC50 5.2 +/- 1.1 microM at pH 7.4 and 22.1 +/- 1.3 microM at pH 6.0). Following block by either drug, Kv4.3 channels showed a hyperpolarizing shift in the voltage sensitivity of inactivation and a slowing in the time to recover from inactivation/block that was unaffected by acidosis. In contrast, acidosis attenuated the effects on the time course of inactivation and the degree of tonic- and frequency-dependent block for both drugs.

CONCLUSION

Extracellular acidosis significantly decreases the potency of blockade of Kv4.3 by both flecainide and quinidine. This change in potency may be due to allosteric changes in the channel, changes in the proportion of uncharged drug, and/or changes in the kinetics of drug binding or unbinding. These findings are in contrast to the effects of extracellular acidosis on block of the fast sodium channel by these agents and provide a molecular mechanism for divergent modulation of drug block potentially leading to ischemia-associated proarrhythmia.

摘要

引言

作为缺血对瞬时外向钾电流药物阻断作用影响的分子模型,研究了酸中毒对氟卡尼和奎尼丁阻断Kv4.3电流特性的影响。

方法与结果

Kv4.3通道在中国仓鼠卵巢细胞中稳定表达。采用全细胞膜片钳技术测量氟卡尼和奎尼丁在pH 7.4和6.0溶液中对Kv4.3电流的影响。细胞外酸中毒减弱了氟卡尼对Kv4.3电流的阻断作用,氟卡尼的半数抑制浓度(基于电流-时间积分)从pH 7.4时的7.8±1.1微摩尔增加到pH 6.0时的125.1±1.1微摩尔。奎尼丁也观察到类似的效应(pH 7.4时半数抑制浓度为5.2±1.1微摩尔,pH 6.0时为22.1±1.3微摩尔)。在被任何一种药物阻断后,Kv4.3通道失活电压敏感性出现超极化偏移,且从失活/阻断状态恢复的时间减慢,这不受酸中毒影响。相反,酸中毒减弱了两种药物对失活时间进程以及强直和频率依赖性阻断程度的影响。

结论

细胞外酸中毒显著降低氟卡尼和奎尼丁对Kv4.3的阻断效力。这种效力变化可能是由于通道的变构变化、不带电荷药物比例的变化和/或药物结合或解离动力学的变化。这些发现与细胞外酸中毒对这些药物阻断快速钠通道的影响相反,并为药物阻断的差异调节提供了分子机制,这可能导致与缺血相关的心律失常。

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