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交感神经末梢去甲肾上腺素储存与释放的电生理分析

An electrophysiological analysis of the storage and release of noradrenaline at sympathetic nerve terminals.

作者信息

Bennett M R

出版信息

J Physiol. 1973 Mar;229(2):515-31. doi: 10.1113/jphysiol.1973.sp010151.

Abstract
  1. An electrophysiological analysis has been made of the storage and release of noradrenaline (NAd) in the sympathetic nerve terminals of the isolated vas deferens of the mouse. The amplitude of the excitatory junction potentials (e.j.p.s) recorded intracellularly in smooth muscle cells was taken as a measure of the NAd output per impulse from the terminals of sympathetic axons.2. During short trains of impulses (< 100), the amplitude of the e.j.p. increased with successive impulses at the beginning of a train, and then either continued to increase until a steady-state amplitude was reached (frequencies < 1 Hz), or decreased until a depressed steady amplitude was reached (frequencies > 1 Hz).3. During trains of impulses lasting for several minutes, the amplitude of the e.j.p. continually declined (frequencies > 1 Hz) until a steady-state amplitude was reached after 8 min of stimulation. This steady-state amplitude is smaller, the higher the frequency of stimulation.4. During short trains of impulses in the presence of high magnesium solutions, the amplitude of successive e.j.p.s increased until a steady state was reached, no matter what the frequency of stimulation. This growth of the e.j.p. amplitude during a train could be quantitatively predicted in terms of the linear summation of the individual facilitatory effects introduced by each impulse in the train.5. During trains of impulses lasting for several minutes, in the presence of a NAd synthesis blocker, the amplitude of the e.j.p. continually declined along a curve which could be described as the sum of two exponential components: one with a time constant of 1 min and the other of 10 min.6. These results suggest that NAd is released from a small pool of transmitter in sympathetic nerve terminals, which is replenished from two stores, which are in turn replenished by the synthesis of new NAd.
摘要
  1. 对小鼠离体输精管交感神经末梢中去甲肾上腺素(NAd)的储存和释放进行了电生理分析。平滑肌细胞内记录的兴奋性接头电位(e.j.p.s)的幅度被用作衡量交感神经轴突末梢每冲动释放NAd量的指标。

  2. 在短串冲动(<100次)期间,e.j.p.的幅度在一串冲动开始时随连续冲动而增加,然后要么继续增加直至达到稳态幅度(频率<1Hz),要么下降直至达到一个降低后的稳态幅度(频率>1Hz)。

  3. 在持续数分钟的冲动串期间,e.j.p.的幅度持续下降(频率>1Hz),直到刺激8分钟后达到稳态幅度。刺激频率越高,该稳态幅度越小。

  4. 在高镁溶液存在下的短串冲动期间,无论刺激频率如何,连续的e.j.p.s幅度都会增加直至达到稳态。一串冲动期间e.j.p.幅度的这种增长可以根据该串中每个冲动引入的单个易化效应的线性总和进行定量预测。

  5. 在持续数分钟的冲动串期间,在存在NAd合成阻滞剂的情况下,e.j.p.的幅度沿一条曲线持续下降,该曲线可描述为两个指数成分的总和:一个时间常数为1分钟,另一个为10分钟。

  6. 这些结果表明,NAd从交感神经末梢中一小部分递质池中释放,该递质池由两个储存库补充,而这两个储存库又由新NAd的合成补充。

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