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巴比妥酸盐引起的海兔巨型神经元缓慢外向电流动力学参数的改变。

Barbiturate-induced alterations in the kinetic parameters of slow outward current in Aplysia giant neurons.

作者信息

Huguenard J R, Wilson W A

出版信息

J Pharmacol Exp Ther. 1985 Sep;234(3):821-9.

PMID:4032291
Abstract

Regulation of spike frequency adaptation has been postulated to be a neuronal mechanism of action of the barbiturates (Zbicz and Wilson, 1981). A barbiturate sensitive slow outward current is present in Aplysia giant neurons, and this current is very effective at regulating adaptation. In the current study a quantitative method of determining the effect of barbiturates was developed using a single-electrode voltage clamp. This method, tail current analysis, involved measuring the exponential decay of the slow outward current at the end of a depolarizing voltage-clamp command. The tail currents were made up of two decay phases with average half-times of 7 and 70 sec, and the tail current amplitude accurately reflected the magnitude of slow outward current. Barbiturates were found to cause a concentration-related, saturable and stereospecific increase in one component of the tail currents, the amplitude of the slow phase. With moderate concentrations of barbiturates there were no changes in the other parameters describing the exponential decay current. The rank order of potency of barbiturates for the enhancement of slow outward current was not well correlated with the lipid solubility of these drugs, indicating that slow outward current enhancement is not due to a nonspecific mechanism, but rather may be receptor mediated.

摘要

峰频率适应性调节被假定为巴比妥类药物的一种神经元作用机制(兹比茨和威尔逊,1981年)。海兔巨型神经元中存在一种对巴比妥类药物敏感的缓慢外向电流,这种电流在调节适应性方面非常有效。在当前研究中,使用单电极电压钳开发了一种确定巴比妥类药物作用效果的定量方法。这种方法,即尾电流分析,涉及测量去极化电压钳指令结束时缓慢外向电流的指数衰减。尾电流由两个衰减阶段组成,平均半衰期分别为7秒和70秒,尾电流幅度准确反映了缓慢外向电流的大小。发现巴比妥类药物会导致尾电流的一个成分,即慢相幅度,出现浓度相关、饱和且立体特异性的增加。使用中等浓度的巴比妥类药物时,描述指数衰减电流的其他参数没有变化。巴比妥类药物增强缓慢外向电流的效价顺序与这些药物的脂溶性没有很好的相关性,这表明缓慢外向电流增强不是由于非特异性机制,而是可能由受体介导。

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