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单个心肌细胞中电刺激抽搐与自发收缩波的相互作用。

The interaction of electrically stimulated twitches and spontaneous contractile waves in single cardiac myocytes.

作者信息

Capogrossi M C, Suarez-Isla B A, Lakatta E G

出版信息

J Gen Physiol. 1986 Nov;88(5):615-33. doi: 10.1085/jgp.88.5.615.

Abstract

Spontaneous myofilament motion that propagates within cells as a contractile wave is a manifestation of localized Ca2+ release from sarcoplasmic reticulum (SR). At 37 degrees C, when bathing [Ca2+] (Cao) is 1.0 mM, rat myocytes exhibit contractile waves at rest and the interwave interval averages 9.1 +/- 1.5 s (n = 6). We determined whether there was an interaction between this type of SR Ca2+ release and that induced by electrical stimulation to cause a twitch, and whether such an interaction had functional significance. Progressive decreases in SR Ca2+ loading effected by graded concentrations of caffeine produced proportional decreases in the mechanical amplitude of the twitch and of the spontaneous contractile wave. Regular electrical stimulation in physiologic Cao abolished the waves and, after stimulation, waves did not reappear for a period of time (delay interval). Over a range of stimulation frequencies (6-72 min-1), the delay interval ranged from 11.4 +/- 3.6 to 12.4 +/- 1.7 s and was usually greater than the interwave interval at rest. The delay interval for a wave to occur after a twitch was reduced in the presence of increased Cao, glycosides, or catecholamines. When the interstimulus interval exceeded the delay interval, waves could appear between twitches and had a marked effect of shortening the duration of the action potential and decreasing the amplitude of the subsequent twitch. The magnitude of this effect varied inversely with time (up to 2 s) between the onset of the spontaneous diastolic wave and the subsequent stimulated twitch. A reduction of the interstimulus interval to less than the delay interval prevented the occurrence of diastolic waves. These results demonstrate the presence of an interaction between spontaneous and action potential-mediated Ca2+ release, which can be interpreted on the basis of a common Ca2+ pool and perhaps common release mechanisms. This interaction can explain many of the known effects of electrical stimulation on phenomena that are thought to result from spontaneous Ca2+ oscillations in intact tissue.

摘要

作为收缩波在细胞内传播的自发肌丝运动是肌浆网(SR)局部Ca2+释放的一种表现。在37℃时,当细胞外[Ca2+](Cao)为1.0 mM时,大鼠心肌细胞在静息时表现出收缩波,波间间隔平均为9.1±1.5秒(n = 6)。我们确定了这种类型的SR Ca2+释放与电刺激诱发的抽搐所引起的Ca2+释放之间是否存在相互作用,以及这种相互作用是否具有功能意义。通过分级浓度的咖啡因使SR Ca2+负荷逐渐降低,导致抽搐和自发收缩波的机械幅度成比例下降。在生理Cao条件下进行规则的电刺激可消除这些波,并且在刺激后,波在一段时间内(延迟间隔)不会再次出现。在一系列刺激频率(6 - 72次/分钟)范围内,延迟间隔为11.4±3.6至12.4±1.7秒,通常大于静息时的波间间隔。在Cao增加、存在糖苷或儿茶酚胺的情况下,抽搐后出现波的延迟间隔会缩短。当刺激间隔超过延迟间隔时,波可出现在抽搐之间,并对缩短动作电位持续时间和降低随后抽搐的幅度有显著作用。这种作用的大小与自发舒张波开始与随后刺激抽搐之间的时间(最长2秒)成反比。将刺激间隔缩短至小于延迟间隔可防止舒张波的出现。这些结果表明自发和动作电位介导的Ca2+释放之间存在相互作用,这可以基于共同的Ca2+池以及可能共同的释放机制来解释。这种相互作用可以解释电刺激对完整组织中被认为由自发Ca2+振荡引起的现象的许多已知影响。

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