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曲唑酮抑制 Kv4.3 钾通道。

Inhibition of Kv4.3 potassium channels by trazodone.

机构信息

Department of Physiology, Cell Death and Disease Research Center, College of Medicine, The Catholic University of Korea, 224 Banpo-daero, Seocho-gu, Seoul, 137-701, Korea.

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 2013 Aug;386(8):711-9. doi: 10.1007/s00210-013-0870-3. Epub 2013 Apr 25.

Abstract

Trazodone, a triazolopyridine antidepressant, is commonly used in the treatment of depression and insomnia. Kv4.3 channels are transiently, and rapidly, inactivating Kv channels that are highly expressed in cardiac myocytes and neurons. To determine the electrophysiological basis for the cardiac and neuronal actions of trazodone, we studied the effects of trazodone on Kv4.3 currents stably expressed in Chinese hamster ovary cells using the whole-cell patch-clamp technique. Trazodone decreased the peak amplitude of Kv4.3 in a concentration-dependent manner with an IC50 of 55.4 μM. Under control conditions, the time course of inactivation of Kv4.3 at +40 mV was fitted to a double exponential function. Trazodone produced a concentration-dependent slowing of the fast and slow components of Kv4.3 inactivation during a voltage step to +40 mV. The inhibition of Kv4.3 by trazodone was voltage independent over the entire voltage range tested. Trazodone shifted the voltage dependence of the steady-state inactivation of Kv4.3 to a hyperpolarizing direction. However, the slope factor of the steady-state inactivation was not affected by trazodone. Under control conditions, the closed-state inactivation of Kv4.3 was fitted to a single exponential function. Trazodone significantly accelerated the closed-state inactivation of Kv4.3. Trazodone produced a weak use-dependent inhibition of Kv4.3 at frequencies of 1 and 2 Hz. m-Chlorophenylpiperazine (m-CPP), a major metabolite of trazodone, inhibited Kv4.3 less potently than trazodone, with an IC50 of 118.6 μM. These results suggest that trazodone preferentially inhibited Kv4.3 by both binding to the closed state and accelerating the closed-state inactivation of the channel.

摘要

曲唑酮是一种三唑吡啶类抗抑郁药,常用于治疗抑郁症和失眠症。Kv4.3 通道是一种快速、短暂失活的 Kv 通道,在心肌细胞和神经元中高度表达。为了确定曲唑酮在心脏和神经元中的作用的电生理基础,我们使用全细胞膜片钳技术研究了曲唑酮对稳定表达在中国仓鼠卵巢细胞中的 Kv4.3 电流的影响。曲唑酮以浓度依赖性方式降低 Kv4.3 的峰值幅度,IC50 为 55.4μM。在对照条件下,Kv4.3 在 +40mV 时的失活时间过程可以用双指数函数拟合。曲唑酮在电压阶跃至 +40mV 时,浓度依赖性地减慢 Kv4.3 快速和慢速失活成分的速度。在整个测试电压范围内,Kv4.3 对曲唑酮的抑制与电压无关。曲唑酮使 Kv4.3 的稳态失活的电压依赖性向超极化方向移动。然而,曲唑酮对稳态失活的斜率因子没有影响。在对照条件下,Kv4.3 的关闭状态失活可以用单指数函数拟合。曲唑酮显著加速 Kv4.3 的关闭状态失活。在 1Hz 和 2Hz 的频率下,曲唑酮对 Kv4.3 产生较弱的使用依赖性抑制。曲唑酮的主要代谢物 m-氯苯基哌嗪(m-CPP)对 Kv4.3 的抑制作用比曲唑酮弱,IC50 为 118.6μM。这些结果表明,曲唑酮通过与关闭状态结合并加速通道的关闭状态失活,优先抑制 Kv4.3。

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