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高渗溶液对小龙虾神经肌肉接头处量子化递质释放的影响。

Effects of hypertonic solutions on quantal transmitter release at the crayfish neuromuscular junction.

作者信息

Niles W D, Smith D O

出版信息

J Physiol. 1982 Aug;329:185-202. doi: 10.1113/jphysiol.1982.sp014297.

DOI:10.1113/jphysiol.1982.sp014297
PMID:6128408
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1224774/
Abstract
  1. The effects of a hypertonic bathing medium, containing either NaCl or melezitose, on the average number (m) and the time course of quantal release following an action potential were studied using focal extracellular recording methods at synaptic sites on the opener muscle of the crayfish leg.2. After the application of hypertonic saline, the rate of spontaneous quantal release increased but m decreased to a new level within 1 min; the extent of depression depended on the magnitude of the increase in tonicity until the osmolarity was 50% greater than the normal value of 0.43 osmol/l (Osm), but greater increases in tonicity exerted little further effect.3. The synaptic delays were increased and distributed over a longer range of time in hypertonic solutions; also, the latency between the first and second quantal releases in a multiple response to a single nerve impulse was also increased.4. Hypertonicity had no significant effect on the conduction velocity of the action potential, the independence of successive quantal releases in the same response, or the uniformity of the rise and fall of the probability of quanta release following an action potential, alpha(t).5. The time course of alpha(t) is prolonged in hypertonic solutions; this was manifested as an increase in the time constant of the exponential decline in alpha(t) from its peak value following the nerve impulse.5. When the potentiating agent 5-hydroxytryptamine (5-HT) was added to the hypertonic saline, m was increased, and the time course of alpha(t) was prolonged further than in the hypertonic solution alone; 5-HT produced no change in the time course of alpha(t) when it was added to normal saline, although m was increased.6. It is concluded that in this preparation hypertonicity decreases the rate of release of each quantum from the nerve terminal following a nerve impulse.
摘要
  1. 采用细胞外微电极记录技术,在螯虾腿部开肌的突触部位,研究了含有NaCl或松三糖的高渗浴液对动作电位后量子释放的平均数量(m)及时程的影响。

  2. 施加高渗盐水后,自发量子释放速率增加,但m在1分钟内降至新水平;抑制程度取决于张力增加的幅度,直至渗透压比正常的0.43 osmol/l(Osm)高50%,但更大程度的张力增加作用甚微。

  3. 在高渗溶液中,突触延迟增加且分布在更长的时间范围内;同样,对单个神经冲动的多重反应中,第一个和第二个量子释放之间的潜伏期也增加。

  4. 高渗对动作电位的传导速度、同一反应中连续量子释放的独立性或动作电位后量子释放概率α(t)的上升和下降的均匀性均无显著影响。

  5. 在高渗溶液中,α(t)的时程延长;这表现为α(t)从神经冲动后的峰值开始指数下降的时间常数增加。

  6. 当将增强剂5-羟色胺(5-HT)添加到高渗盐水中时,m增加,且α(t)的时程比单独的高渗溶液中延长得更多;当5-HT添加到正常盐水中时,α(t)的时程没有变化,尽管m增加。

  7. 得出的结论是,在此制备中,高渗降低了神经冲动后神经末梢每个量子的释放速率。

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本文引用的文献

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Is hyperosmotic neurosecretion from motor nerve endings a calcium-dependent process?运动神经末梢的高渗性神经分泌是一个钙依赖过程吗?
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