Snider W D, Harris G L
Nature. 1979 Sep 6;281(5726):69-71. doi: 10.1038/281069a0.
Recent investigations have established that many of the normal properties of muscle fibres are maintained, at least in part, by muscle activity. Thus, a fall in resting membrane potential, an increase in input resistance, and spread of acetylcholine receptors to extrajunctional sites can all be induced by abolishing muscle activity and prevented by direct stimulation of denervated muscle fibres. Muscle activity also exerts a trophic influence on the innervating motoneurones; furthermore it may be a factor in the regulation of sprouting. Brown and Ironton found fine, "ultra-terminal sprouts" emanating from the endplates of muscles rendered inactive by chronic conduction block of the muscle nerve. Pestronk and Drachman saw increased branching of the motor nerve terminal and a consequent increase in endplate size in similar conditions. If these sprouts at the endplates of inactive muscles were functional, one might expect more transmitter to be released in response to nerve stimulation. We report here that both quantum content and spontaneous miniature endplate potential (m.e.p.p) frequency are increased at the terminals of inactive (disused) muscles.
最近的研究表明,肌肉纤维的许多正常特性至少部分是由肌肉活动维持的。因此,通过消除肌肉活动可诱导静息膜电位下降、输入电阻增加以及乙酰胆碱受体扩散到结外部位,而直接刺激失神经支配的肌肉纤维可预防这些情况。肌肉活动还对支配的运动神经元发挥营养作用;此外,它可能是调节轴突发芽的一个因素。布朗和艾恩顿发现,因肌肉神经慢性传导阻滞而失去活性的肌肉终板发出细小的“超终末芽”。佩斯特隆克和德拉赫曼在类似情况下观察到运动神经末梢分支增加,进而终板大小增大。如果失活肌肉终板处的这些芽具有功能,那么人们可能会预期在神经刺激时会释放更多的递质。我们在此报告,失活(废用)肌肉的终末处量子含量和自发微小终板电位(m.e.p.p)频率均增加。