首页> 外文期刊>Journal of Muscle Research and Cell Motility >Tubular system excitability: an essential component of excitation–contraction coupling in fast-twitch fibres of vertebrate skeletal muscle
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Tubular system excitability: an essential component of excitation–contraction coupling in fast-twitch fibres of vertebrate skeletal muscle

机译:管状系统的兴奋性:脊椎动物骨骼肌快速抽动纤维中兴奋-收缩耦合的重要组成部分

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摘要

The tubular (t-) system is the main interface between the myoplasm and the extracellular environment and is responsible for the rapid inward spread of excitation from the sarcolemma to the inner parts of the skeletal muscle fibre as well as for signal transfer to the sarcoplasmic reticulum to release Ca2+ that, in turn, activates the contractile apparatus. In this review, I explore the insights provided by the mechanically skinned muscle fibre preparation to the better understanding of the importance of the t-system excitability in determining the force response under physiologically relevant conditions. In the mechanically skinned muscle fibre, the t-system seals off after is physically separated from the sarcolemma and its excitability can be investigated by electrical stimulation under controlled conditions. Parameters that can be assessed include the threshold for action potential generation, specific electrical resistance and time constant of the tubular wall, quantity of charge transferred during an action potential, refractory period, length constant and velocity of excitation propagation. Results obtained with mechanically skinned fibres from fast-twitch muscles show that decreased t-system excitability does not necessarily translate into reduced force output, but for any particular set of physiologically relevant conditions there is a level below which a further decrease in t-system excitability markedly decreases the force output. There are several built-in mechanisms linked to the metabolic/energetic state of the muscle fibre which prevent complete action potential failure in the t-system, thus allowing the muscle to respond to nerve stimulation, even if the response becomes markedly attenuated.
机译:管状(t-)系统是肌质和细胞外环境之间的主要界面,负责从肌膜到骨骼肌纤维内部的兴奋快速向内扩散以及信号传递到肌质网释放Ca2 + ,进而激活收缩装置。在这篇综述中,我将探索由机械蒙皮的肌肉纤维制剂提供的见解,以更好地了解t系统兴奋性在生理相关条件下确定力响应的重要性。在机械剥皮的肌肉纤维中,t系统在物理上与肌膜分离后就封闭了,可以通过在受控条件下进行电刺激来研究其兴奋性。可以评估的参数包括产生动作电位的阈值,管状壁的比电阻和时间常数,在动作电位期间转移的电荷量,不应期,长度常数和激发传播速度。用来自快速抽动肌肉的机械蒙皮纤维获得的结果表明,降低的t系统兴奋性不一定转化为力输出降低,但是对于任何特定的生理相关条件,其水平都会进一步降低t系统兴奋性显着降低了力输出。有几种内置机制与肌肉纤维的代谢/能量状态相关联,可以防止t系统完全动作电位衰竭,从而使肌肉对神经刺激作出反应,即使反应变得明显减弱。

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