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达泊西汀对 CHO 细胞中表达的克隆 Kv1.5 通道的影响。

Effects of dapoxetine on cloned Kv1.5 channels expressed in CHO cells.

机构信息

Department of Physiology, Medical Research Center, College of Medicine, The Catholic University of Korea, 505 Banpo-dong, Socho-gu, Seoul 137-701, South Korea.

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 2012 Jul;385(7):707-16. doi: 10.1007/s00210-012-0754-y. Epub 2012 Apr 27.

Abstract

The effects of dapoxetine were examined on cloned Kv1.5 channels stably expressed in Chinese hamster ovary cells using the whole-cell patch clamp technique. Dapoxetine decreased the peak amplitude of Kv1.5 currents and accelerated the decay rate of current inactivation in a concentration-dependent manner with an IC ( 50 ) of 11.6 μM. Kinetic analysis of the time-dependent effects of dapoxetine on Kv1.5 current decay yielded the apparent association (k (+1 )) and dissociation (k (-1 )) rate constants of 2.8 μM(-1) s(-1) and 34.2 s(-1), respectively. The theoretical K ( D ) value, derived by k (-1 )/k (+1 ), yielded 12.3 μM, which was reasonably similar to the IC ( 50 ) value obtained from the concentration-response curve. Dapoxetine decreased the tail current amplitude and slowed the deactivation process of Kv1.5, which resulted in a tail crossover phenomenon. The block by dapoxetine is voltage-dependent and steeply increased at potentials between -10 and +10 mV, which correspond to the voltage range of channel activation. At more depolarized potentials, a weaker voltage dependence was observed (δ=0.31). Dapoxetine had no effect on the steady-state activation of Kv1.5 but shifted the steady-state inactivation curves in a hyperpolarizing direction. Dapoxetine produced a use-dependent block of Kv1.5 at frequencies of 1 and 2 Hz and slowed the time course for recovery of inactivation. These effects were reversible after washout of the drug. Our results indicate that dapoxetine blocks Kv1.5 currents by interacting with the channel in both the open and inactivated states of the channel.

摘要

使用全细胞膜片钳技术,在稳定表达克隆 Kv1.5 通道的中国仓鼠卵巢细胞中,研究了达泊西汀对 Kv1.5 通道的影响。达泊西汀以浓度依赖性方式降低 Kv1.5 电流的峰值幅度,并加速电流失活的衰减速率,IC(50)为 11.6 μM。达泊西汀对 Kv1.5 电流衰减的时间依赖性影响的动力学分析得出了明显的关联(k(+1))和解离(k(-1))速率常数分别为 2.8 μM(-1)s(-1)和 34.2 s(-1)。通过 k(-1)/k(+1)得出的理论 K(D)值为 12.3 μM,这与从浓度-反应曲线获得的 IC(50)值相当吻合。达泊西汀降低尾电流幅度并减缓 Kv1.5 的失活过程,导致尾交叉现象。达泊西汀的阻断是电压依赖性的,在 -10 至 +10 mV 之间的电位急剧增加,这对应于通道激活的电压范围。在更去极化的电位下,观察到较弱的电压依赖性(δ=0.31)。达泊西汀对 Kv1.5 的稳态激活没有影响,但使稳态失活曲线向超极化方向移动。达泊西汀对 Kv1.5 产生使用依赖性阻断,在 1 和 2 Hz 的频率下,并减缓失活恢复的时间过程。药物洗脱后,这些作用是可逆的。我们的结果表明,达泊西汀通过与通道的开放和失活状态相互作用来阻断 Kv1.5 电流。

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