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钙离子在强直及强直后微小终板电位频率增加中的作用

The role of calcium ions in tetanic and post-tetanic increase of miniature end-plate potential frequency.

作者信息

Erulkar S D, Rahamimoff R

出版信息

J Physiol. 1978 May;278:501-11. doi: 10.1113/jphysiol.1978.sp012320.

DOI:10.1113/jphysiol.1978.sp012320
PMID:209171
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1282365/
Abstract
  1. The role of Ca ions in transmitter release changes, during and after high frequency stimulation of the motor nerve (10--100 Hz), was examined at the frog neuromuscular junction. 2. The stimulation-induced changes in miniature end-plate potential frequency (f) resembled the changes in end-plate potential amplitude recently described by Magleby and Zengel (1975, 1976). 3. The effects of tetanic stimulation on f under inward electrochemical gradient for Ca ions were compared with those under reversed gradient and four differences were found: (a) The increase in f during the tetanus under reversed Ca gradient conditions is much smaller than with an inward Ca gradient. (b) The increase in f under reversed Ca gradient is preceded by a small decrease in f, whereas with an inward Ca gradient an immediate increase in f is observed. (c) After the termination of the tetanus with a reversed Ca gradient, there is a further increase in f, compared to a decrease with an inward Ca gradient. (d) The augmentation phase of post-tetanic potentiation was practically abolished. 4. The experimental results are explained by assuming that high frequency nerve stimulation causes an increase in transmitter release by at least two distinct processes: influx of Ca ions through the presynaptic membrane and release of Ca ions from intracellular stores. It is suggested that Na ions couple nerve activity to intracellular release of Ca.
摘要
  1. 在青蛙神经肌肉接头处,研究了钙离子在运动神经高频刺激(10 - 100赫兹)期间及之后递质释放变化中的作用。2. 刺激引起的微小终板电位频率(f)的变化类似于最近Magleby和Zengel(1975年、1976年)所描述的终板电位幅度的变化。3. 将强直刺激在钙离子内向电化学梯度下对f的影响与在反向梯度下的影响进行了比较,发现了四个差异:(a)在反向钙离子梯度条件下强直刺激期间f的增加远小于在钙离子内向梯度下的增加。(b)在反向钙离子梯度下f增加之前会有小幅下降,而在钙离子内向梯度下会立即观察到f增加。(c)在反向钙离子梯度下强直刺激终止后,f会进一步增加,而在钙离子内向梯度下则会下降。(d)强直后增强的增强阶段实际上被消除了。4. 通过假设高频神经刺激通过至少两个不同过程导致递质释放增加来解释实验结果:钙离子通过突触前膜流入以及钙离子从细胞内储存库释放。有人提出钠离子将神经活动与细胞内钙离子释放联系起来。

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