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青蛙心脏中的缓慢内向钙电流:反对电压依赖性失活的理论证据。

Slow inward Ca current in frog heart: theoretical evidence against a voltage-dependent inactivation.

作者信息

Fischmeister R, Horackova M

出版信息

Can J Physiol Pharmacol. 1982 Sep;60(9):1185-92. doi: 10.1139/y82-172.

Abstract

The validity of a Hodgkin-Huxley type voltage-dependent inactivation of slow inward Ca current (Isi) was tested in frog heart using a computer simulation. The time course of Isi was calculated during the development of a frog atrial action potential (AP). With a time constant of inactivation (tauf) of 55 ms at a membrane potential (Em) of -15 mV, the variation of Isi was biphasic: after a transient increase followed by a decrease to zero, Isi partially "reactivated" (at the beginning of the AP repolarization phase) and then fully deactivated. The "reactivation" phase of Isi developed whether tauf was an increasing, decreasing, U-shaped, or bell-shaped function of Em. The addition of an independent and slower process responsible for the recovery from inactivation only partly suppressed the "reactivation" phase. However, until now there was no experimental evidence supporting such a biphasic variation of Isi during AP repolarization. Thus our results indicate that the Hodgkin-Huxley type model of the voltage-dependence of Isi-inactivation process may not correctly represent the actual behavior of frog cardiac muscle.

摘要

利用计算机模拟在蛙心测试了霍奇金 - 赫胥黎型慢内向钙电流(Isi)电压依赖性失活的有效性。在蛙心房动作电位(AP)形成过程中计算了Isi的时间进程。在膜电位(Em)为 -15 mV时,失活时间常数(tauf)为55 ms,Isi的变化呈双相性:在短暂增加后下降至零,Isi在AP复极化阶段开始时部分“重新激活”,然后完全失活。无论tauf是Em的递增、递减、U形还是钟形函数,Isi的“重新激活”阶段都会出现。增加一个负责从失活中恢复的独立且较慢的过程仅部分抑制了“重新激活”阶段。然而,到目前为止,尚无实验证据支持AP复极化期间Isi的这种双相变化。因此,我们的结果表明,Isi失活过程电压依赖性的霍奇金 - 赫胥黎型模型可能无法正确代表蛙心肌的实际行为。

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