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Mechanism of HERG potassium channel inhibition by tetra-n-octylammonium bromide and benzethonium chloride

机译:四 - 正辛铵溴化物和苯硝基氯化铵的HERG钾通道抑制的机制

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摘要

Tetra-n-octylammonium bromide and benzethonium chloride are synthetic quaternary ammonium salts that are widely used in hospitals and industries for the disinfection and surface treatment and as the preservative agent. Recently, the activities of HERG channel inhibition by these compounds have been found to have potential risks to induce the long QT syndrome and cardiac arrhythmia, although the mechanism of action is still elusive. This study was conducted to investigate the mechanism of HERG channel inhibition by these compounds using whole-cell patch clamp experiments in a CHO cell line stably expressing HERG channels. Tetra-n-octylammonium bromide and benzethonium chloride exhibited concentration-dependent inhibitions of HERG channel currents with IC50 values of 4 nM and 17 nM, respectively, which were also voltage-dependent and use-dependent. Both compounds shifted the channel activation I-V curves in a hyperpolarized direction for 10-15 mV and accelerated channel activation and inactivation processes by 2-fold. In addition, tetra-n-octylammonium bromide shifted the inactivation I-V curve in a hyperpolarized direction for 24.4 mV and slowed the rate of channel deactivation by 2-fold, whereas benzethonium chloride did not. The results indicate that tetra-n-octylammonium bromide and benzethonium chloride are open-channel blockers that inhibit HERG channels in the voltage-dependent, use-dependent and state-dependent manners.
机译:四正辛基溴化铵和苄索氯铵是合成的季铵盐,在医院和工业中广泛用于消毒和表面处理,并用作防腐剂。最近,尽管作用机理仍难以捉摸,但已发现这些化合物抑制HERG通道的活性具有诱发长期QT综合征和心律不齐的潜在风险。进行这项研究以研究在稳定表达HERG通道的CHO细胞系中使用全细胞膜片钳实验对这些化合物抑制HERG通道的机制。四正辛基溴化铵和苄索氯铵对HERG通道电流表现出浓度依赖性抑制作用,IC50值分别为4 nM和17 nM,也与电压有关和与使用有关。两种化合物都将通道激活I-V曲线沿超极化方向移动了10-15 mV,并将通道激活和失活过程加快了2倍。此外,溴化四正辛基铵在超极化方向上使失活I-V曲线移动24.4 mV,并使通道失活速率减慢了2倍,而苄索氯铵则没有。结果表明,溴化四正辛基铵和苄索氯铵是开放通道阻滞剂,以电压依赖性,用途依赖性和状态依赖性方式抑制HERG通道。

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