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大鼠新生肌肉中[3H]石房蛤毒素结合位点数量的神经调节

Neural regulation of [3H]saxitoxin binding site numbers in rat neonatal muscle.

作者信息

Bambrick L L, Gordon T

机构信息

Department of Pharmacology, University of Alberta, Edmonton, Canada.

出版信息

J Physiol. 1988 Dec;407:263-74. doi: 10.1113/jphysiol.1988.sp017414.

Abstract
  1. Neural regulation of the density of sodium (Na+) channels in rat muscle was studied by measuring specific binding of tritiated saxitoxin ([3H]STX) to muscles from rat hindlimbs during normal development and in rats in which neuromuscular function was interrupted by sciatic nerve section or neuromuscular blockade with botulinum toxin (BoTX). 2. The normal developmental increase in [3H]STX binding site numbers followed a simple exponential with a time constant of 12 days. The most rapid incorporation of channels coincided with the onset of accelerated muscle growth and increased neuromuscular activity at 2 weeks of age. 3. Elimination of neuromuscular activity retarded muscle growth and inhibited the normal incorporation of Na+ channels into neonatal muscle. Muscles denervation was more effective than BoTX paralysis: denervation at 2 weeks of age prevented the normal 3-fold increase in the binding site density between 2 and 3 weeks of age while age-matched BoTX-treated muscles incorporated an average of 66% of the normal Na+ channel incorporation. 4. Denervation and BoTX treatment were equally effective in reducing the numbers of [3H]STX binding sites in adult muscle. A reduction of 30% in binding sites brought the numbers to levels which corresponded with levels normally seen in muscles at 3 weeks of neonatal development. 5. It was concluded that the neural influence on incorporation of Na+ channels into membranes of neonatal muscle is, at least in part, mediated by neuromuscular activity.
摘要
  1. 通过测量氚标记的石房蛤毒素([3H]STX)与正常发育大鼠后肢肌肉以及坐骨神经切断或肉毒杆菌毒素(BoTX)神经肌肉阻滞导致神经肌肉功能中断的大鼠后肢肌肉的特异性结合,研究了大鼠肌肉中钠(Na+)通道密度的神经调节。2. [3H]STX结合位点数量的正常发育性增加遵循简单指数规律,时间常数为12天。通道的最快掺入与2周龄时肌肉加速生长和神经肌肉活动增加的开始相吻合。3. 神经肌肉活动的消除会延缓肌肉生长,并抑制Na+通道正常掺入新生肌肉。肌肉去神经支配比BoTX麻痹更有效:2周龄时去神经支配可防止2至3周龄时结合位点密度正常增加3倍,而年龄匹配的BoTX处理肌肉平均掺入正常Na+通道掺入量的66%。4. 去神经支配和BoTX处理在减少成年肌肉中[3H]STX结合位点数量方面同样有效。结合位点减少30%使数量达到与新生发育3周时肌肉中正常所见水平相对应的水平。5. 得出的结论是,神经对Na+通道掺入新生肌肉膜的影响至少部分是由神经肌肉活动介导的。

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