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钠离子通道阻滞剂吡西卡尼对人胚肾细胞(HEK-293)中表达的HERG电流的影响。

Effects of Na+ channel blocker, pilsicainide, on HERG current expressed in HEK-293 cells.

作者信息

Wu Long-Mei, Orikabe Minako, Hirano Yuji, Kawano Seiko, Hiraoka Masayasu

机构信息

Department of Cardiovascular Diseases, Medical Research Institute, Tokyo Medical and Dental University, Yushima, Japan.

出版信息

J Cardiovasc Pharmacol. 2003 Sep;42(3):410-8. doi: 10.1097/00005344-200309000-00013.

Abstract

PURPOSE

Pilsicainide, classified as a relatively pure Na+ channel blocker, occasionally causes QT prolongation, suggesting inhibitory actions on K+ currents. We studied effects of pilsicainide on the K+ channel current of the human ether-a-go-go-related gene (HERG) in heterologous expression system.

METHODS

The Patch-clamp technique in whole-cell configuration was used to record the channel current of HERG stably expressed in HEK293 cells.

RESULTS

Pilsicainide suppressed peak currents of HERG channel during depolarizing pulses and tail currents upon repolarization. Pilsicainide blocked HERG current with IC50 = 20.4 microM and Hill coefficient = 0.98. Voltage-dependent activation was shifted in a negative direction by approximately 10 mV by 10 to 20 microM pilsicainide. Block increased with depolarization to voltages between -20 and 0 mV and reached the maximum level at positive voltages to 0 mV without further increase. Following drug equilibration for 10 minutes (holding potential at -100 mV), the peak outward current upon the first depolarization showed time-dependent block; tail current block was maximal. Frequency-dependent block evaluated from tail current was absent with pulse frequencies of 1.33, 0.5, and 0.2 Hz. After a steady state block was achieved, time course of current activation and deactivation was slowed by pilsicainide, and steady-state inactivation and time course of fast inactivation were mildly affected.

CONCLUSIONS

Pilsicainide blocks HERG current with a preferential affinity, at least, to the open state of the channels with a fast access to binding sites.

摘要

目的

吡西卡尼被归类为一种相对纯粹的Na⁺通道阻滞剂,偶尔会导致QT间期延长,提示其对K⁺电流有抑制作用。我们在异源表达系统中研究了吡西卡尼对人类ether-a-go-go相关基因(HERG)K⁺通道电流的影响。

方法

采用全细胞模式的膜片钳技术记录稳定表达于HEK293细胞中的HERG通道电流。

结果

吡西卡尼在去极化脉冲期间抑制HERG通道的峰值电流以及复极化时的尾电流。吡西卡尼阻断HERG电流的IC50 = 20.4微摩尔,希尔系数 = 0.98。10至20微摩尔的吡西卡尼使电压依赖性激活向负向偏移约10毫伏。阻断作用随着去极化至-20至0毫伏之间的电压而增强,并在正向电压至0毫伏时达到最大水平且不再进一步增加。药物平衡10分钟(钳制电位为-100毫伏)后,首次去极化时的外向峰值电流显示出时间依赖性阻断;尾电流阻断最大。在1.33、0.5和0.2赫兹的脉冲频率下,从尾电流评估的频率依赖性阻断不存在。达到稳态阻断后,吡西卡尼使电流激活和失活的时间过程减慢,稳态失活和快速失活的时间过程受到轻微影响。

结论

吡西卡尼以优先亲和力阻断HERG电流,至少对通道的开放状态具有快速结合位点的通道有亲和力。

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