首页> 美国卫生研究院文献>The Journal of Neuroscience >Opioids Suppress IPSCs in Neurons of the Rat Medial Septum/Diagonal Band of Broca: Involvement of μ-Opioid Receptors and Septohippocampal GABAergic Neurons
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Opioids Suppress IPSCs in Neurons of the Rat Medial Septum/Diagonal Band of Broca: Involvement of μ-Opioid Receptors and Septohippocampal GABAergic Neurons

机译:阿片类药物抑制大鼠中隔/对角膜对角带神经元中的IPSC:μ阿片受体和海马GABA能神经元的参与

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摘要

The medial septum/diagonal band region (MSDB), which provides a major cholinergic and GABAergic input to the hippocampus, expresses a high density of opioid receptors. Behaviorally, intraseptal injections of opioids produce deficits in spatial memory, however, little is known about the electrophysiological effects of opioids on MSDB neurons. Therefore, we investigated the electrophysiological effects of opioids on neurons of the MSDB using rat brain slices. In voltage-clamp recordings with patch electrodes, bath-applied met-enkephalin, a nonselective opioid receptor agonist, decreased the number of tetrodotoxin and bicuculline-sensitive inhibitory synaptic currents in cholinergic- and GABA-type MSDB neurons. A similar effect occurred in brain slices containing only the MSDB, suggesting that opioids decrease GABA release primarily by inhibiting spontaneously firing GABAergic neurons located within the MSDB. Accordingly, in extracellular recordings, opioid-sensitive, spontaneously firing neurons could be found within the MSDB. Additionally, in intracellular recordings a subpopulation of GABA-type neurons were directly inhibited by opioids. All effects of met-enkephalin were mimicked by a μ receptor agonist, but not by δ or κ agonists. In antidromic activation studies, μ-opioids inhibited a subpopulation of septohippocampal neurons with high conduction velocity fibers, suggestive of thickly myelinated GABAergic fibers. Consistent with the electrophysiological findings, in double-immunolabeling studies, 20% of parvalbumin-containing septohippocampal GABA neurons colocalized the μ receptor, which at the ultrastructural level, was found to be associated with the neuronal cell membrane. Thus, opioids, via μ receptors, inhibit a subpopulation of MSDB GABAergic neurons that not only make local connections with both cholinergic and noncholinergic-type MSDB neurons, but also project to the hippocampus.
机译:内侧隔片/对角带区域(MSDB)向海马体提供了主要的胆碱能和GABA能输入,它表达了高密度的阿片受体。从行为上讲,隔片内注射阿片类药物会产生空间记忆障碍,但是,关于阿片类药物对MSDB神经元的电生理作用知之甚少。因此,我们使用大鼠脑切片研究了阿片类药物对MSDB神经元的电生理作用。在带有贴片电极的电压钳记录中,浴应用的非选择性阿片样物质受体激动剂甲脑啡肽可减少胆碱能和GABA型MSDB神经元中河豚毒素和双小分子敏感的抑制性突触电流的数量。在仅包含MSDB的脑片中发生了类似的效果,表明阿片类药物主要是通过抑制自发激发MSDB内的GABA能神经元来减少GABA释放。因此,在细胞外记录中,可以在MSDB中发现对阿片类药物敏感的自发放电神经元。另外,在细胞内记录中,阿片样物质直接抑制了GABA型神经元的亚群。 Me-脑啡肽的所有作用均由μ受体激动剂模拟,而不是由δ或κ激动剂模拟。在抗驱激活研究中,μ阿片类药物以高传导速度纤维抑制了海马神经元的亚群,这提示了富含髓鞘的GABA能纤维。与电生理学结果一致,在双重免疫标记研究中,含20%的含小白蛋白的海马GABA神经元使μ受体共定位,该受体在超微结构水平上与神经元细胞膜相关。因此,阿片类药物通过μ受体抑制MSDB GABA能神经元的亚群,该亚群不仅与胆碱能和非胆碱能型MSDB神经元建立局部联系,而且还向海马突出。

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