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利血平对肾上腺素能神经肌肉传递作用的电生理分析

An electrophysiological analysis of the effects of reserpine on adrenergic neuromuscular transmission.

作者信息

Bennett M R, Middleton J

出版信息

Br J Pharmacol. 1975 Sep;55(1):79-85. doi: 10.1111/j.1476-5381.1975.tb07614.x.

Abstract

1 An electrophysiological study has been made of the effects of depleting synaptic vesicles (i.e. small vesicles less than 60 nm diameter) of their transmitter with reserpine on the quantity of transmitter released by nerve impulses, using the amplitude of the synaptic potential as a measure of transmitter release. 2 Pretreatment of adrenergic nerve terminals with reserpine sufficient to deplete the terminals of 70% of their noradrenaline (NA) did not change the total number of synaptic vesicles in the terminals, but did reduce the number with a large granular core as well as the quantity of NA released by a single nerve impulse by 80%. 3 Pretreatment of adrenergic nerve terminals with reserpine and iproniazid, to decrease vesicular NA but enhance cytoplasmic NA, had the same effect on synaptic vesicles and on the NA released by a single nerve impulse as did reserpine alone. 4 During a short train of impulses at high frequencies in reserpine pretreated terminals, the quantity of NA released by successive impulses increased until a steady-state release was reached comparable to that in untreated preparations. This facilitated release could be quantitatively predicted in terms of the addition of the individual potentiations introduced by each impulse in the train. 5 These results are consistent with the idea that each quantum of transmitter is stored in a synaptic vesicle, and that these may be released by nerve impulses directly from the terminal by a process of exocytosis.

摘要
  1. 采用电生理研究方法,以突触电位的幅度作为递质释放量的衡量指标,研究利血平耗尽突触小泡(即直径小于60nm的小泡)中的递质后,对神经冲动释放递质数量的影响。2. 用足以使肾上腺素能神经末梢中70%的去甲肾上腺素(NA)耗竭的利血平进行预处理,并未改变末梢中突触小泡的总数,但确实减少了大颗粒核心小泡的数量,以及单个神经冲动释放的NA量的80%。3. 用利血平和异烟肼对肾上腺素能神经末梢进行预处理,以减少小泡内的NA但增加胞质内的NA,对突触小泡和单个神经冲动释放的NA的影响与单独使用利血平相同。4. 在利血平预处理的末梢中,在高频短串冲动期间,相继冲动释放的NA量增加,直到达到与未处理制剂相当的稳态释放。这种易化释放可以根据串中每个冲动引入的个体增强作用相加进行定量预测。5. 这些结果与以下观点一致,即每个递质量子存储在一个突触小泡中,并且这些小泡可能通过胞吐作用直接从末梢被神经冲动释放。

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