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失神经肌肉:事实与假说。历史回顾。

The denervated muscle: facts and hypotheses. A historical review.

作者信息

Midrio Menotti

机构信息

Department of Human Anatomy and Physiology, Section of Physiology, University of Padua, via Marzolo 3, Padova, Italy.

出版信息

Eur J Appl Physiol. 2006 Sep;98(1):1-21. doi: 10.1007/s00421-006-0256-z. Epub 2006 Aug 3.

Abstract

Denervation changes in skeletal muscle (atrophy; alterations of myofibrillar expression, muscle membrane electrical properties, ACh sensitivity and excitation-contraction coupling process; fibrillation), and their possible causes are reviewed. All changes can be counteracted by muscle electrostimulation, while denervation-like effects can be caused by the complete conduction block in muscle nerve. These results do not support the hypothesis that the lack of neurotrophic, non-motor factors plays a role in denervation phenomena. Instead they support the view that the lack of neuromotor discharge is the only cause of the phenomena and that neuromotor activity is an essential factor in regulating muscle properties. However, some experimental results cannot apparently be explained by the lack of neuromotor impulses, and may still suggest that neurotrophic influences exist. A hypothesis is that neurotrophic factors, too feeble to maintain a role in completely differentiated, adult muscles, can concur with neuromotor activity in the differentiation of immature, developing muscles.

摘要

本文综述了骨骼肌的去神经变化(萎缩;肌原纤维表达、肌膜电特性、乙酰胆碱敏感性和兴奋-收缩偶联过程的改变;纤维性颤动)及其可能的原因。所有这些变化都可以通过肌肉电刺激来抵消,而肌肉神经的完全传导阻滞则可导致类似去神经的效应。这些结果并不支持神经营养非运动因子缺乏在去神经现象中起作用的假说。相反,它们支持这样一种观点,即神经运动放电的缺乏是这些现象的唯一原因,并且神经运动活动是调节肌肉特性的一个重要因素。然而,一些实验结果显然不能用神经运动冲动的缺乏来解释,这可能仍然表明存在神经营养影响。一种假说是,神经营养因子在完全分化的成年肌肉中作用微弱,无法维持其作用,但在未成熟的发育中肌肉的分化过程中,可与神经运动活动共同起作用。

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