Suppr超能文献

神经调质章鱼胺对昆虫中枢神经致敏及反射动作的去习惯化作用

Central nervous sensitization and dishabituation of reflex action in an insect by the neuromodulator octopamine.

作者信息

Sombati S, Hoyle G

出版信息

J Neurobiol. 1984 Nov;15(6):455-80. doi: 10.1002/neu.480150606.

Abstract

Habituation of excitatory synaptic inputs onto identified motor neurons of the locust metathoracic ganglion, driven electrically and by natural stimuli, was examined using intracellular recording. Rapid progressive reduction in amplitude of EPSPs from a variety of inputs onto fast-type motor neurons occurred. The habituated EPSPs were quickly dishabituated by iontophoretic release of octopamine from a microelectrode into the neuropilar region of presumed synaptic action. The zone within which release was effective for a given neuron was narrowly-defined. With larger amounts of octopamine applied at a sensitive site the EPSP became larger than normal, and in many instances action potentials were initiated by the sensitized response. Very small EPSPs onto a motor neuron, which were associated with proprioceptive feedback, and which were originally too small to be detected above the noise, were potentiated to a level of several mV by the iontophoresed octopamine. A DUM neuron (presumed to be octopaminergic) was found, whose direct stimulation was followed by a strong dishabituating and sensitizing action leading to spikes, of inputs to an identified flexor tibiae motor neuron. The action and its time course were closely similar to those evoked by octopamine iontophoresed into the neuropil in the region of synaptic inputs to the motor neuron. It is concluded that DUM (octopaminergic) neurons exert large potentiating actions on central neuronal excitatory synaptic transmission in locusts.

摘要

利用细胞内记录技术,研究了通过电刺激和自然刺激驱动的、作用于蝗虫后胸神经节中已识别运动神经元的兴奋性突触输入的习惯化现象。来自各种输入到快型运动神经元的兴奋性突触后电位(EPSP)的幅度迅速逐渐降低。通过从微电极向假定突触作用的神经纤维区域离子电泳释放章鱼胺,可迅速消除习惯化的EPSP。对于给定神经元,释放有效作用的区域定义狭窄。在敏感部位施加较大量的章鱼胺时,EPSP会变得比正常情况更大,并且在许多情况下,动作电位会由敏化反应引发。作用于运动神经元的非常小的EPSP与本体感受反馈相关,最初太小而在噪声之上无法检测到,通过离子电泳的章鱼胺可将其增强到几毫伏的水平。发现了一个DUM神经元(推测为章鱼胺能神经元),对其直接刺激后,会对已识别的胫节屈肌运动神经元的输入产生强烈的去习惯化和敏化作用,导致产生动作电位。其作用及其时间进程与通过向运动神经元突触输入区域的神经纤维中离子电泳注入章鱼胺所引发的作用和时间进程非常相似。得出的结论是,DUM(章鱼胺能)神经元对蝗虫中枢神经元兴奋性突触传递具有强大的增强作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验