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大鼠骨骼肌急性去神经变化起源中不活动与神经崩解产物的相互作用。

Interaction of inactivity and nerve breakdown products in the origin of acute denervation changes in rat skeletal muscle.

作者信息

Cangiano A, Magherini P C, Pasino E, Pellegrino M, Risaliti R

出版信息

J Physiol. 1984 Oct;355:345-65. doi: 10.1113/jphysiol.1984.sp015423.

Abstract

The action of nerve breakdown products on innervated fibres of soleus and extensor digitorum longus muscles was investigated with the following procedures: partial denervation, sensory or sympathetic denervation, section of a previously transplanted foreign nerve. Each procedure was performed either in isolation or combined with chronic muscle inactivity obtained by blocking impulse conduction along the sciatic nerve. Silastic cuffs containing tetrodotoxin (TTX) and sodium chloride were utilized for the block. Partial denervation induced extrajunctional sensitivity to acetylcholine (ACh) and resistance to tetrodotoxin not only in the denervated but also in the innervated fibres. The effects in the innervated fibres were equal in magnitude to those in the denervated fibres, provided they were paralysed. The onset of the membrane changes was synchronous in the two classes of fibres and their amount correlated with the extent of partial denervation. If the innervated fibres were normally active, the membrane changes were still detectable, but considerably smaller than in the denervated fibres. Sensory denervation (removal of dorsal root ganglia L4 and L5) was followed by the development of moderate ACh supersensitivity and TTX resistance in chronically paralysed muscles. Furthermore, section of radicular nerves (total denervation, i.e. efferent plus afferent) induced larger membrane changes than those observed following section of ventral roots alone (efferent denervation). Sympathetic denervation was ineffective even when associated with chronic muscle paralysis. Section of a previously transplanted mixed nerve (superficial fibular) was ineffective if the soleus muscle was normally active, while it induced marked extrajunctional ACh sensitivity and TTX resistance when combined with chronic paralysis of the muscle. Section of a transplanted sensory nerve (sural) also induced extrajunctional membrane changes in paralysed soleus muscles, but their magnitude was much smaller than after section of mixed nerves. We conclude that products of nerve destruction, especially those of motor axons, induce membrane changes of striking magnitude when potentiated by muscle inactivity. Such an action may also explain the greater efficacy of denervation vs. pure inactivity, at least at early times after their onset.

摘要

采用以下方法研究了神经崩解产物对比目鱼肌和趾长伸肌的受神经支配纤维的作用

部分去神经支配、感觉或交感神经去神经支配、切断先前移植的异体神经。每种方法可单独进行,也可与通过阻断沿坐骨神经的冲动传导而导致的慢性肌肉失活相结合。使用含有河豚毒素(TTX)和氯化钠的硅橡胶袖套进行阻断。部分去神经支配不仅在去神经支配的纤维中,而且在受神经支配的纤维中均诱导了对乙酰胆碱(ACh)的接头外敏感性和对河豚毒素的抗性。只要受神经支配的纤维处于麻痹状态,其效应的大小与去神经支配纤维中的效应相等。两类纤维中膜变化的起始是同步的,且其程度与部分去神经支配的程度相关。如果受神经支配的纤维正常活动,膜变化仍可检测到,但比去神经支配的纤维中的变化小得多。感觉神经去神经支配(切除腰4和腰5背根神经节)后,慢性麻痹的肌肉中出现中度的ACh超敏感性和对TTX的抗性。此外,神经根切断术(完全去神经支配,即传出加传入)引起的膜变化比仅切断腹根(传出神经去神经支配)后观察到的变化更大。交感神经去神经支配即使与慢性肌肉麻痹相关也无效。如果比目鱼肌正常活动,切断先前移植的混合神经(腓浅神经)无效,而当与肌肉的慢性麻痹相结合时,它会诱导明显的接头外ACh敏感性和对TTX的抗性。切断移植的感觉神经(腓肠神经)也会在麻痹的比目鱼肌中诱导接头外膜变化,但其程度比切断混合神经后小得多。我们得出结论,神经破坏产物,尤其是运动轴突的产物,在肌肉失活的情况下会诱导显著的膜变化。这种作用也可以解释去神经支配与单纯失活相比具有更大的效力,至少在它们开始后的早期是如此。

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