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离子通道与骨骼肌兴奋障碍

Ion channels and disorders of excitation in skeletal muscle.

作者信息

Barchi R L

机构信息

Department of Neurobiology, University of Pennsylvania School of Medicine, Philadelphia 19104-6074.

出版信息

Curr Opin Neurol Neurosurg. 1993 Feb;6(1):40-7.

PMID:7679017
Abstract

For skeletal muscle to contract normally, signals from the neuromuscular junction must be conveyed to the contractile proteins by action potentials that spread across the surface membrane and into the T-tubular system. Hyperexcitability in the surface membrane can lead to unwanted and persistent contraction, while reduced excitability can cause weakness or paralysis. Many of the human muscle diseases that are associated with abnormalities of membrane excitability have been linked to defects in the function of membrane ion channels. Using molecular biologic tools, these abnormal channels can be identified and their molecular defects defined. Advances in these areas now provide the basis for a rational, mechanistic approach to the classification and treatment of these disorders of membrane excitation.

摘要

为使骨骼肌正常收缩,神经肌肉接头传来的信号必须通过动作电位传递给收缩蛋白,动作电位沿表面膜传播并进入T管系统。表面膜的兴奋性过高会导致不必要的持续性收缩,而兴奋性降低则会引起无力或麻痹。许多与膜兴奋性异常相关的人类肌肉疾病都与膜离子通道功能缺陷有关。利用分子生物学工具,可以识别这些异常通道并确定其分子缺陷。这些领域的进展为合理、基于机制的这些膜兴奋障碍的分类和治疗方法提供了基础。

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