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Control of action potential duration by calcium ions in cardiac Purkinje fibers

机译:通过心脏浦肯野纤维中的钙离子控制动作电位的持续时间

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摘要

It is well known that cardiac action potentials are shortened by increasing the external calcium concentration (Cao). The shortening is puzzling since Ca ions are thought to carry inward current during the plateau. We therefore studied the effects of Cao on action potentials and membrane currents in short Purkinje fiber preparations. Two factors favor the earlier repolarization. First, calcium-rich solutions generally raise the plateau voltage; in turn, the higher plateau level accelerates time- and voltage-dependent current changes which trigger repolarization. Increases in plateau height imposed by depolarizing current consistently produced shortening of the action potential. The second factor in the action of Ca ions involves iK1, the background K current (inward rectifier). Raising Cao enhances iK1 and thus favors faster repolarization. The Ca-sensitive current change was identified as an increase in iK1 by virtue of its dependence on membrane potential and Ko. A possible third factor was considered and ruled out: unlike epinephrine, calcium-rich solutions do not enhance slow outward plateau current, ikappa. These results are surprising in showing that calcium ions and epinephrine act quite differently on repolarizing currents, even though they share similar effects on the height and duration of the action potential.
机译:众所周知,通过增加外部钙浓度(Cao)可以缩短心脏动作电位。由于人们认为钙离子在高原时期会携带内向电流,因此这种缩短令人费解。因此,我们研究了Cao对短型Purkinje纤维制剂中动作电位和膜电流的影响。有两个因素有利于较早的重新极化。首先,富含钙的溶液通常会升高平台电压。反过来,较高的平稳水平会加速与时间和电压有关的电流变化,从而触发重新极化。由去极化电流引起的高原高度的增加始终导致动作电位的缩短。 Ca离子作用的第二个因素涉及iK1,即背景K电流(向内整流器)。升高Cao可增强iK1,因此有利于更快的复极化。 Ca敏感电流变化因其对膜电位和Ko的依赖性而被确定为iK1的增加。考虑并排除了可能的第三个因素:与肾上腺素不同,富含钙的溶液不会增强缓慢的向外高原电流ikappa。这些结果令人惊讶,表明钙离子和肾上腺素对复极化电流的作用完全不同,即使它们对动作电位的高度和持续时间具有相似的影响。

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