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[锂对大鼠膈肌运动终板递质自发量子释放的影响]

[Effects of lithium on the spontaneous quantal release of transmitter from motor terminals of the diaphragm of rats].

作者信息

Kouniniotou-Krontiri P

出版信息

J Physiol (Paris). 1985;80(5):340-8.

PMID:3831327
Abstract

The mean miniature endplate potentials (m.e.p.p.) frequency has been examined at the neuromuscular junctions of the rat diaphragm, at 20 degrees and 37 degrees C, when all or part of the NaCl of the Krebs solution was replaced by LiCl. A high level of substitution (100% and 75%) causes initially an increase in m.e.p.p. frequency. This initial process can be fitted by an exponential function of time with a time constant which decreases with Li+ concentration and temperature. After reaching a maximum, m.e.p.p. frequency returns to a lower steady level which is higher than the one observed before the substitution and rises when either Li+-concentration or temperature are increased. At 37 degrees C, when the substitution of Li for Na+ is lower than 50%, m.e.p.p. frequency progressively rises towards a steady value which can be maintained for a long period. At 37 degrees C, a significant rise in m.e.p.p. frequency can be observed even after the replacement of 10% NaCl by LiCl. In the presence of prostigmine, m.e.p.p. disappear from the rat neuromuscular junction treated by Li, following an exponential decrease in frequency. These results are discussed in terms of presynaptic site of action of Li+. It is proposed that choline re-uptake by the presynaptic terminals could be sufficient to maintain a flow of acetylcholine release even after a complete substitution of LiCl for NaCl.

摘要

在20℃和37℃下,当用LiCl取代Krebs溶液中的全部或部分NaCl时,已对大鼠膈肌神经肌肉接头处的微小终板电位(m.e.p.p.)平均频率进行了检测。高比例取代(100%和75%)最初会导致m.e.p.p.频率增加。这个初始过程可用时间的指数函数拟合,其时间常数随Li⁺浓度和温度降低。达到最大值后,m.e.p.p.频率会回到一个较低的稳定水平,该水平高于取代前观察到的水平,并且当Li⁺浓度或温度升高时会上升。在37℃下,当Li取代Na⁺的比例低于50%时,m.e.p.p.频率会逐渐上升至一个可长期维持的稳定值。在37℃下,即使仅用LiCl取代10%的NaCl,也能观察到m.e.p.p.频率显著上升。在存在新斯的明的情况下,Li处理的大鼠神经肌肉接头处的m.e.p.p.会随着频率呈指数下降而消失。将根据Li⁺的突触前作用位点对这些结果进行讨论。有人提出,即使在用LiCl完全取代NaCl后突触前终末对胆碱的再摄取也可能足以维持乙酰胆碱释放的流量。

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