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人类快肌和慢肌纤维终板附近及远离终板处的钠离子电流。

Na+ currents near and away from endplates on human fast and slow twitch muscle fibers.

作者信息

Ruff R L, Whittlesey D

机构信息

Department of Neurology, Cleveland Veterans Administration Medical Center, OH 44106.

出版信息

Muscle Nerve. 1993 Sep;16(9):922-9. doi: 10.1002/mus.880160906.

Abstract

Fast and slow twitch muscle fibers have distinct contractile properties. Here we determined that membrane excitability also varies with fiber type. Na+ currents (INa) were studied with the loose-patch voltage clamp technique on 29 histochemically classified human intercostal skeletal muscle fibers at the endplate border and > 200 microns from the endplate (extrajunctional). Fast and slow twitch fibers showed slow inactivation of endplate border and extrajunctional INa and had increased INa at the endplate border compared to extrajunctional membrane. The voltage dependencies of INa were similar on the endplate border and extrajunctional membrane, which suggests that both regions have physiologically similar channels. Fast twitch fibers had larger INa on the endplate border and extrajunctional membrane and manifest fast and slow inactivation of INa at more negative potentials than slow twitch fibers. For normal muscle, the differences between INa on fast and slow twitch fibers might: (1) enable fast twitch fibers to operate at high firing frequencies for brief periods; and (2) enable slow twitch fibers to operate at low firing frequencies for prolonged times. Disorders of skeletal membrane excitability, such as the periodic paralyses and myotonias, may impact fast and slow twitch fibers differently due to the distinctive Na+ channel properties of each fiber type.

摘要

快肌纤维和慢肌纤维具有不同的收缩特性。在此,我们确定膜兴奋性也因纤维类型而异。我们采用 loose-patch 电压钳技术,在 29 根经组织化学分类的人肋间骨骼肌纤维的终板边缘以及距终板超过 200 微米(结外)处,研究了 Na⁺电流(INa)。快肌纤维和慢肌纤维的终板边缘和结外 INa 均表现出缓慢失活,且与结外膜相比,终板边缘的 INa 增加。终板边缘和结外膜上 INa 的电压依赖性相似,这表明这两个区域具有生理上相似的通道。快肌纤维在终板边缘和结外膜上具有更大的 INa,并且与慢肌纤维相比,在更负的电位下表现出 INa 的快速和缓慢失活。对于正常肌肉,快肌纤维和慢肌纤维上 INa 的差异可能:(1)使快肌纤维能够在短时间内以高发放频率运作;(2)使慢肌纤维能够在长时间内以低发放频率运作。骨骼肌膜兴奋性障碍,如周期性瘫痪和肌强直,可能由于每种纤维类型独特的 Na⁺通道特性而对快肌纤维和慢肌纤维产生不同的影响。

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