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Tetrodotoxin prevents motor unit enlargement after partial denervation in rat hindlimb muscles

机译:河豚毒素可防止大鼠后肢肌肉部分去神经后运动单位的扩大

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摘要

Findings that increased neuromuscular activity significantly reduced sprouting in partially denervated muscles prompted this present study to determine if the converse is true, namely that reduced activity promotes sprouting and motor unit (MU) enlargement. Partial denervation of rat hindlimb muscles by either the L4 or L5 spinal root avulsion resulted in extensive denervation (> 80%) in tibialis anterior (TA) and medial gastrocnemius (MG) muscles, and moderate denervation (∼50%) in soleus (SOL) and plantaris (PL) muscles. The partially denervated muscles were then subjected to a 4 week programme of normal caged activity or TTX-induced neuromuscular inactivity. At 1 month, measurement of MU enlargement and quantification of sprouting were evaluated, respectively, by electrophysiological and histochemical means. Analysis of electrophysiological data showed that MU forces were significantly increased in both extensively and moderately denervated muscles 1 month after partial denervation and normal cage activity and that neuromuscular activity blockade by TTX completely abolished the MU enlargement in these partially denervated muscles. Histochemical analysis of sprouting revealed that the number of sprouts was significantly increased after partial denervation and normal cage activity, particularly after extensive denervation. TTX-induced neuromuscular inactivity dramatically reduced the number of sprouts and increased the number of free endplates in the extensively but not the moderately denervated muscles. These data demonstrate that a reduction in neuromuscular activity mediated by presynaptic blockade of neural action potentials reduces MU enlargement in partially denervated muscles by reducing axonal sprouting.
机译:发现神经肌肉活动的增加显着减少了部分失神经的肌肉中的发芽,这促使本研究确定相反的情况,即活动减少会促进发芽和运动单位(MU)扩大。 L4或L5脊椎根部撕脱术对大鼠后肢肌肉的部分神经支配导致胫前肌(TA)和腓肠肌内侧(MG)的广泛神经支配(> 80%)和比目鱼肌(SOL)的中度神经支配(〜50%) )和plant肌(PL)肌肉。然后将部分神经支配的肌肉进行为期4周的正常笼式活动或TTX诱导的神经肌肉无活动的程序。在1个月时,通过电生理和组织化学方法分别评估了MU的增大和发芽的量化。电生理数据分析表明,部分去神经支配和正常的笼活动后1个月,广泛和中度神经支配的肌肉的MU力均显着增加,并且TTX的神经肌肉活动阻滞完全消除了这些部分去神经的肌肉的MU增大。对发芽的组织化学分析表明,部分去神经和正常笼活动后,尤其是在广泛去神经后,芽的数量显着增加。 TTX诱导的神经肌肉不活动显着减少了广泛但非中度神经支配的肌肉中的发芽数量并增加了游离终板的数量。这些数据表明,由突触前神经动作电位的阻滞所介导的神经肌肉活动的减少通过减少轴突发芽而减少了部分失神经肌肉的MU扩大。

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