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硫喷妥钠和戊巴比妥在鱿鱼巨大轴突中的作用差异。

Differences between the actions of thiopental and pentobarbital in squid giant axons.

作者信息

Sevcik C

出版信息

J Pharmacol Exp Ther. 1980 Sep;214(3):657-63.

PMID:7400967
Abstract

The action of thiopental and pentobarbital on the giant nerve fiber of the squid Doryteuthis plei under membrane potential control conditions was investigated. The effect of pentobarbital was found to be similar to that reported by other investigators, however, the replacement of the oxygen in C2 by a sulfur atom bestows excitatory properties on the molecule. Thiopental depolarizes the nerve fibers and produces spontaneous repetitive discharges. With concentrations (0.2 mM) of thiopental, the amplitude of the action potential, spontaneous or otherwise, does not change much, but its falling phase is drastically prolonged. Under voltage clamp conditions it is possible to show that either at rest or during activity the thiobarbiturate exhibits a high affinity for the potassium channels. The apparent dissociation constant of perntobarbital on sodium and potassium conductances are respectively 1.89 and 0.63 mM, whereas those of thiopental are 0.52 mM and 32.6 mM and 32.6 muM. The results also indicate that both barbiturates act as competitive synergists to suppress the increase in sodium and the potassium conductance which occurs during activity.

摘要

研究了在膜电位控制条件下硫喷妥钠和戊巴比妥对太平洋褶柔鱼巨神经纤维的作用。发现戊巴比妥的作用与其他研究者报道的相似,然而,将C2位的氧原子替换为硫原子赋予了该分子兴奋性特性。硫喷妥钠使神经纤维去极化并产生自发性重复放电。在硫喷妥钠浓度为0.2 mM时,动作电位的幅度,无论是自发性的还是其他情况,变化不大,但其下降相显著延长。在电压钳制条件下可以表明,无论是在静息状态还是活动期间,硫代巴比妥酸盐对钾通道都具有高亲和力。戊巴比妥对钠电导和钾电导的表观解离常数分别为1.89 mM和0.63 mM,而硫喷妥钠的分别为0.52 mM、32.6 mM和32.6 μM。结果还表明,两种巴比妥酸盐均作为竞争性增效剂,抑制活动期间发生的钠电导和钾电导增加。

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