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奎尼丁对乌贼轴突膜的作用机制。

Mechanism of action of quinidine on squid axon membranes.

作者信息

Yeh J Z, Narahashi T

出版信息

J Pharmacol Exp Ther. 1976 Jan;196(1):62-70.

PMID:1518
Abstract

The mechanism of action of quinidine on squid axons has been examined by means of voltage clamp and internal perfusion techniques. When applied either externally or internally, quinidine HCl suppresses both sodium and potassium conductance increases, the effect on the former accounting for the observed decrease in action potential. The potassium conductance in quinidine undergoes a marked inactivation in a manner dependent upon the membrane potential and time, accounting for the observed prolongation of the terminal falling phase of the action potential. Quinidine methiodide exhibits the effect similar to that of quinidine HCl only when applied internally. The dissociation constants of quinidine in suppressing the sodium conducting system are estimated to be 2.4 x 10(-4) and 4.0 x 10(-4) M for quinidine HCl and methiodide, respectively. The dissociation constant of quinidine in suppressing the potassium-conducting system decreases with increasing step depolarization. When applied externally to the intact axons, quinidine HCl is more effective at external pH 8.6 than at 7.3. When perfused internally, quinidine HCl is more effective at internal pH 7.0 than at 8.0, and the potency is related to the calculated internal concentration of the charged form rather than that of the uncharged form. These results lead to the conclusion that quinidine HCl penetrates the nerve membrane in the uncharged form, is ionized in the axon and blocks the sodium and potassium conductances primarily in the charged form. Thus, quinidine and local anesthetics share some features in the terms of the site of action and active form.

摘要

已通过电压钳和内部灌注技术研究了奎尼丁对乌贼轴突的作用机制。当从外部或内部施加时,盐酸奎尼丁会抑制钠电导和钾电导的增加,对前者的作用解释了所观察到的动作电位降低。奎尼丁作用下的钾电导以一种依赖于膜电位和时间的方式发生显著失活,这解释了所观察到的动作电位终末下降相的延长。只有当从内部施加时,甲硫奎尼丁才表现出与盐酸奎尼丁相似的作用。盐酸奎尼丁和甲硫奎尼丁抑制钠传导系统的解离常数分别估计为2.4×10⁻⁴和4.0×10⁻⁴M。奎尼丁抑制钾传导系统的解离常数随着逐步去极化的增加而降低。当从外部施加到完整轴突时,盐酸奎尼丁在外部pH 8.6时比在pH 7.3时更有效。当进行内部灌注时,盐酸奎尼丁在内部pH 7.0时比在pH 8.0时更有效,且效力与带电形式的计算内部浓度而非不带电形式的浓度相关。这些结果得出结论,盐酸奎尼丁以不带电形式穿透神经膜,在轴突中离子化,并主要以带电形式阻断钠电导和钾电导。因此,奎尼丁和局部麻醉药在作用部位和活性形式方面有一些共同特征。

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