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刺激三叉上核引起三叉神经中脑核神经元的突触反应(英文) 被引量:1

Synaptic responses of mesencephalic trigeminal nucleus neuron to stimulation of supratrigeminal nucleus
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摘要 目的:旨在研究三叉上核(Su5)对三叉神经中脑核(Me5)神经元的活动是否发挥着重要的调节作用,从而参与对颌运动的调节。方法:本研究通过全细胞电流钳技术,刺激生后30~43d大鼠脑片上三叉上核并记录Me5神经元反应。结果:Me5神经元静息膜电位为(-53.5±0.5)mV;所有Me5神经元在超极化和去极化时分别显示为内向、外向整流;同时去极化引起神经元放电。刺激三叉上核引起4种类型的Me5神经元的反应,即逆向动作电位、GABAA、AMPA/kainate和NMDA等受体介导的反应,这些反应各占32%、36%、20%和12%。钳制电位在-60mV左右时,诱发的GABA能突触后电位为(1.08±0.45)mV,膜电位水平时;刺激引起的AMPA/Kainate受体介导的电流大小为(0.98±0.51)mV;钳制电位在-45mV左右时,NMDA受体介导的谷氨酸电流为(2.40±0.75)mV。结论:三叉上核神经元可通过突触由GABA和谷氨酸信号系统调节Me5神经元活动。 Objective:To study whether supratrigeminal nucleus(Su5)neurons play important role in modulating the activity of mesencephalic trigeminal nucleus neurons(Me5),thus involvement in participation of jaw movement control.Methods:Whole cell current patch clamp technique was used on slice preparation to study the responses of Me5 neurons to stimulation of Su5 of rat on 30-43 days after birth.Results:Me5 neurons showed a resting membrane potential of-53.5 ± 0.5 mV.All these neurons revealed an inward rectification during hyperpolarization and outward rectification during depolarization,and they discharged when depolarized.Four types of responses to stimulation of Su5 were recorded:antidromic action potentials,GABAA receptor-,AMPA/kainate receptor-and NMDA receptor-mediated responses,showing a percentage of 32%,36%,20% and 12%,respectively.The amplitudes of postsynaptic potentials for GABAA receptor-,AMPA/kainate receptor-and NMDA receptor-mediated responses were(1.08 ± 0.45)mV(evoked at -60 mV),(0.98 ± 0.51)mV(at resting membrane potential)and(2.40 ± 0.75)mV(at -45 mV),respectively.Conclusion:These data suggest that Su5 neurons can modulate activity of Me5 neurons by-aminobutyric acid(GABA)and glutamate signaling system via corresponding synapses upon Me5 neurons.
出处 《神经解剖学杂志》 CAS CSCD 北大核心 2010年第1期20-25,共6页 Chinese Journal of Neuroanatomy
基金 国家自然科学基金(30470562,30600339,30470907)~~
关键词 三叉神经核 电流钳 Γ-氨基丁酸 谷氨酸 大鼠 trigeminal nucleus current clamp GABA glutamate rat
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