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细胞外钙浓度升高诱导青蛙骨骼肌横管传导失败的证据。

Evidence for t-tubular conduction failure in frog skeletal muscle induced by elevated extracellular calcium concentration.

作者信息

Howell J N, Shankar A, Howell S G, Wei F

出版信息

J Muscle Res Cell Motil. 1987 Jun;8(3):229-41. doi: 10.1007/BF01574591.

Abstract

In order to investigate the mechanism by which elevated extracellular calcium ions decrease tetanus tension in frog skeletal muscle, we made mechanical, electrophysiological and photographic measurements on single fibres or small bundles of fibres. Three lines of evidence point to t-tubular conduction failure as the primary mechanism of action of high calcium. They are a decrease in amplitude of the late afterpotential, attenuation or elimination of the notch and hump configuration of the early afterpotential, and the appearance of wavy myofibrils in the axial core of fibres during tetanus. These effects are fully reversible and are shared by other bivalent cations. High calcium concentration causes a change in the time course of the early afterpotential but does not alter the passive cell membrane characteristics, as reflected by the time course of decay of applied hyperpolarizing pulses.

摘要

为了研究细胞外钙离子浓度升高降低青蛙骨骼肌强直张力的机制,我们对单根肌纤维或小肌纤维束进行了力学、电生理和摄影测量。三条证据表明,横管传导障碍是高钙作用的主要机制。它们分别是晚期后电位幅度降低、早期后电位的切迹和驼峰形态减弱或消失,以及强直收缩期间纤维轴心出现波浪状肌原纤维。这些效应是完全可逆的,并且其他二价阳离子也会产生相同的效应。高钙浓度会改变早期后电位的时间进程,但不会改变被动细胞膜特性,这一点从施加的超极化脉冲衰减的时间进程中可以反映出来。

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