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钡离子对豚鼠结肠带离子电流的作用。

Actions of Ba++ on ionic currents of the guinea-pig taenia coli.

作者信息

Inomata H, Kao C Y

出版信息

J Pharmacol Exp Ther. 1985 Apr;233(1):112-24.

PMID:2580076
Abstract

The actions of Ba++ have been studied on short segments of the guinea-pig taenia coli voltage-clamped by a double sucrose-gap method. Ba++ slows the rising phase of the action potential, increases the peak amplitude and delays the repolarization with a long plateau. Ba++ carries charges through the normally Ca++ channel and directly influences both the magnitude (Ia) and the reversal potential (Ea) of the early current. The activation is slowed slightly, but the inactivation is slowed markedly. The voltage-conductance relation is shifted toward more negative voltages in Ba++, and the maximum conductance, ga, is increased significantly. Ba++ displaces the late outward current toward more positive voltages. The voltage-conductance relation is shifted by some 20 mV in 2.5 mM, and increasingly larger amounts with increasing [Ba++]o. The maximum conductance, gb, and the reversal potential (Eb) are not altered. Co++ blocks the inward Ba++ current and reverses the effects of Ba++ on the potassium conductance. Ca++ competes with Ba++. The apparent Kd for Ba++ is 6 mM and the apparent Kd for Ca++ is 0.6 to 1.0 mM. When Ca++ is added, the plateau of the long action potential in Ba++ is shortened by one-half. The effects of Ba++ are ascribed to some screening effect on fixed negative charges on the inside and outside surfaces of the membrane.

摘要

利用双蔗糖间隙法对豚鼠结肠带短节段进行电压钳制,研究了Ba++的作用。Ba++减缓动作电位的上升相,增加峰值幅度,并使复极化延迟,形成一个长平台期。Ba++通过正常的Ca++通道携带电荷,并直接影响早期电流的大小(Ia)和反转电位(Ea)。激活稍有减慢,但失活明显减慢。在Ba++中,电压-电导关系向更负的电压方向移动,最大电导ga显著增加。Ba++使晚期外向电流向更正的电压方向移动。在2.5 mM时,电压-电导关系移动约20 mV,随着[Ba++]o的增加,移动量越来越大。最大电导gb和反转电位(Eb)没有改变。Co++阻断内向Ba++电流,并逆转Ba++对钾电导的影响。Ca++与Ba++竞争。Ba++的表观解离常数Kd为6 mM,Ca++的表观解离常数Kd为0.6至1.0 mM。加入Ca++后,Ba++中长动作电位的平台期缩短一半。Ba++的作用归因于对膜内外表面固定负电荷的某种屏蔽作用。

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