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关于发育中的哺乳动物骨骼肌中多神经元支配消除的观察

Observations on the elimination of polyneuronal innervation in developing mammalian skeletal muscle.

作者信息

O'Brien R A, Ostberg A J, Vrbová G

出版信息

J Physiol. 1978 Sep;282:571-82. doi: 10.1113/jphysiol.1978.sp012482.

Abstract
  1. The mechanism responsible for the elimination of polyneuronal innervation in developing rat soleus muscles was studied electrophysiologically and histologically. 2. Initially all the axons contacting a single end-plate have simple bulbous terminals. As elimination proceeds one axon develops terminal branches while the other terminals remain bulbous and may be seen in contact with, or a short distance away from, the end-plate. It is suggested that the branched terminal remains in contact with the muscle fibre while the other terminals withdraw. 3. At a time when polyneuronal innervation can no longer be detected electrophysiologically, the histological technique still shows the presence of end-plates contacted by more than one nerve terminal. 4. The effect of activity on the disappearance of polyneuronal innervation was examined. Activity was increased by electrical stimulation of the right sciatic nerve. This procedure also produced reflex activity in the contralateral limb. In both cases polyneuronal innervation was eliminated more rapidly in the active muscles. 5. The finding that proteolytic enzymes are released from muscles treated with acetylcholine (ACh), and the observation of the more rapid elimination of supernumerary terminals at the end-plates of active muscles, lead to the suggestion that superfluous nerve-muscle contacts are removed by the proteolytic enzymes in response to neuromuscular activity. The selective stabilization of only one of the terminals is discussed in the light of these results.
摘要
  1. 采用电生理学和组织学方法研究了发育中的大鼠比目鱼肌中多神经元支配消除的机制。2. 最初,所有与单个终板接触的轴突都具有简单的球状终末。随着消除过程的进行,一个轴突发育出终末分支,而其他终末仍为球状,可看到它们与终板接触或距离终板有一小段距离。有人提出,有分支的终末与肌纤维保持接触,而其他终末则缩回。3. 在电生理学上已无法检测到多神经元支配时,组织学技术仍显示存在由不止一个神经终末接触的终板。4. 研究了活动对多神经元支配消失的影响。通过电刺激右侧坐骨神经来增加活动。此操作还在对侧肢体产生反射活动。在这两种情况下,活动肌肉中的多神经元支配消除得更快。5. 从用乙酰胆碱(ACh)处理的肌肉中释放出蛋白水解酶这一发现,以及观察到活动肌肉终板处多余终末的消除更快,提示多余的神经 - 肌肉接触是由蛋白水解酶响应神经肌肉活动而去除的。根据这些结果讨论了仅一个终末的选择性稳定化问题。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/406d/1282758/014ad5611dbf/jphysiol00762-0578-a.jpg

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