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有机酸盐对局部麻醉作用的增强。(II):小龙虾爪神经膜中的动力学方面

Enhancement of local anaesthesia action by organic acid salts. (II): Aspect of kinetics in the claw nerve membrane of crayfish.

作者信息

Ichikawa O

机构信息

Department of Physiology, Tottori University, School of Medicine, Yonago, Japan.

出版信息

Arch Int Physiol Biochim. 1987 Jun;95(2):121-31. doi: 10.3109/13813458709104524.

Abstract

The anaesthetic action of procaine on the crayfish claw nerve was studied electrophysiologically. The onset time of conduction block (block time) was shortened and the minimum dose of procaine required for the blockade was significantly reduced in the presence of monocarboxylate anions. To investigate the mechanism of this anaesthetic enhancement, the action of procaine was considered on the basis of a simple Langmuir-type adsorption model. Rate constants in the model were estimated by observing the time course of procaine desorption from the nerve using the UV light absorption technique. The dependence of block time on procaine concentration which was simulated from the model corresponded quite well to the electrophysiological data. The model suggested the following two points. 1. The anaesthetic enhancement by some organic anions could be explained by the acceleration of procaine adsorption and lowering of the critical adsorption ratio. 2. The maximum adsorption of procaine observed was about 40 mumol per 1 g wet weight of the nerve, the value of which corresponded to 1:1 adsorption of procaine to phospholipids in the membrane.

摘要

采用电生理学方法研究了普鲁卡因对小龙虾爪神经的麻醉作用。在单羧酸阴离子存在的情况下,传导阻滞的起始时间(阻滞时间)缩短,并且阻滞所需的普鲁卡因最小剂量显著降低。为了研究这种麻醉增强作用的机制,基于简单的朗缪尔型吸附模型来考虑普鲁卡因的作用。通过使用紫外光吸收技术观察普鲁卡因从神经上解吸的时间过程,来估计模型中的速率常数。从该模型模拟得到的阻滞时间对普鲁卡因浓度的依赖性与电生理数据相当吻合。该模型表明了以下两点。1. 某些有机阴离子对麻醉的增强作用可以通过普鲁卡因吸附的加速和临界吸附率的降低来解释。2. 观察到的普鲁卡因最大吸附量约为每1 g神经湿重40 μmol,该值对应于普鲁卡因与膜中磷脂的1:1吸附。

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