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新型抗心律失常药物711389-S对小龙虾巨轴突钠通道的阻断机制

Mechanism of sodium channel block in crayfish giant axons by 711389-S, a new antiarrhythmic drug.

作者信息

Muramatsu I, Noda M, Nishio M, Fujiwara M

出版信息

J Pharmacol Exp Ther. 1987 Jul;242(1):269-76.

PMID:2441025
Abstract

The effects of 711389-S, a new antiarrhythmic drug, on the sodium channel of crayfish giant axon were studied using micro-electrode and sucrose-gap voltage-clamp techniques. When applied externally, 711389-S suppressed the action potential and the rate of rise without affecting the resting membrane potential. Voltage-clamp experiments revealed that 711389-S inhibits the sodium current more selectively than the potassium current and that the inhibition is more evident with internal rather than external application. The inhibitory effect of internally applied 711389-S on sodium current was enhanced at less negative holding potentials. 711389-S also shifted the steady-state inactivation curve in the direction of hyperpolarization. Use-dependent block became evident in the 711389-S-treated axons; this block resulted from an increase in the slow inactivating state during repetitive depolarization and from a slow recovery from the inactivated state during the pulse interval. 711389-S produced an additional inhibition when sodium channels were open at large depolarizations. This additional inhibition could be reversed by small depolarizations that opened the sodium channels. These observations suggest that 711389-S binds the resting, inactivated and open states of the sodium channel, resulting in a reduction of sodium channel availability. 711389-S also shifted the voltage dependence of peak sodium conductance toward a less negative potential.

摘要

采用微电极和蔗糖间隙电压钳技术,研究了新型抗心律失常药物711389 - S对小龙虾巨轴突钠通道的影响。当从外部施加时,711389 - S可抑制动作电位及其上升速率,而不影响静息膜电位。电压钳实验表明,711389 - S对钠电流的抑制作用比钾电流更具选择性,并且内部给药比外部给药时抑制作用更明显。内部施加的711389 - S对钠电流的抑制作用在较低的负钳制电位下增强。711389 - S还使稳态失活曲线向超极化方向移动。在经711389 - S处理的轴突中,使用依赖性阻滞变得明显;这种阻滞是由于重复去极化期间缓慢失活状态的增加以及脉冲间隔期间从失活状态的缓慢恢复所致。当钠通道在大去极化时开放,711389 - S会产生额外的抑制作用。这种额外的抑制作用可通过使钠通道开放的小去极化作用而逆转。这些观察结果表明,711389 - S与钠通道的静息、失活和开放状态结合,导致钠通道可用性降低。711389 - S还使峰值钠电导的电压依赖性向较不负极化的电位移动。

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