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血清素模拟了普通蜗牛中伤害性致敏的几种神经元效应。

Serotonin imitates several of the neuronal effects of nociceptive sensitization in the common snail.

作者信息

Shevelkin A V, Nikitin V P, Kozyrev S A, Samoilov M O, Sherstnev V V

机构信息

P. K. Anokhin Institute of Normal Physiology, Russian Academy of Medical Sciences, Moscow.

出版信息

Neurosci Behav Physiol. 1998 Sep-Oct;28(5):547-55. doi: 10.1007/BF02463016.

Abstract

Experiments on defensive behavior command neurons in common snails showed that synaptic facilitation in the responses of nerve cells to sensory stimulation occurs 50-60 min after the onset of application of serotonin (10 microM) to the CNS. The properties of neuron electrogenic membranes (membrane potential, membrane excitability) did not change after exposure to serotonin. Along with synaptic facilitation, serotonin (100 microM) increased the excitability and produced minimal depolarization of the membranes of command neurons. Serotonin had selective effects on the reactions of neurons to different sensory stimuli: facilitation of neuron responses to tactile stimulation of the head lasted 1 h, while responses to application of dilute quinine solution lasted 2-3 h; serotonin facilitated neuron responses to tactile stimulation only of the snail's head, and did not alter the responses to stimulation of the foot or the mantle ridge. The time course of the electrophysiological effects of serotonin coincided with changes in bound calcium (Cab) levels in command neurons. This set of serotonin-induced neurophysiological effects is similar to the effects resulting from the development of nociceptive sensitization. It is suggested that serotonin is involved in the mechanisms of transient changes and consolidation of long-term plastic rearrangements in command neurons which underlie sensitization.

摘要

对普通蜗牛防御行为指令神经元的实验表明,在向中枢神经系统施加血清素(10微摩尔)后50 - 60分钟,神经细胞对感觉刺激的反应中会出现突触易化。暴露于血清素后,神经元电生膜的特性(膜电位、膜兴奋性)并未改变。除了突触易化外,血清素(100微摩尔)还增加了指令神经元膜的兴奋性并产生了最小程度的去极化。血清素对神经元对不同感觉刺激的反应具有选择性作用:神经元对头部触觉刺激的反应易化持续1小时,而对稀释奎宁溶液应用的反应持续2 - 3小时;血清素仅易化神经元对蜗牛头部触觉刺激的反应,而不改变对足部或外套膜嵴刺激的反应。血清素电生理效应的时间进程与指令神经元中结合钙(Cab)水平的变化一致。这一系列血清素诱导的神经生理效应类似于伤害性致敏发展所产生的效应。有人提出,血清素参与了指令神经元中短暂变化和长期塑性重排巩固的机制,而这些机制是致敏的基础。

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