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首页> 外文期刊>Journal of Neurophysiology >Presynaptic Inhibition of GABAA Receptor-Mediated Unitary IPSPs by Cannabinoid Receptors at Synapses Between CCK-Positive Interneurons in Rat Hippocampus.
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Presynaptic Inhibition of GABAA Receptor-Mediated Unitary IPSPs by Cannabinoid Receptors at Synapses Between CCK-Positive Interneurons in Rat Hippocampus.

机译:大麻素受体对大鼠海马CCK阳性中间神经元之间突触的GABA A受体介导的单一IPSP的突触前抑制。

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There is growing evidence to link cholecystokinin (CCK)-positive interneurons and anxiety disorders. Despite this, little is known about the physiology and pharmacology of synaptic interactions between CCK-positive interneurons. This study aims to investigate the local circuit connections among CCK-positive Schaffer collateral associated (SCA) interneurons in stratum radiatum (SR) and their modulatory interactions using paired whole cell recordings combined with biocytin and double immunofluorescence labeling in slices of rat hippocampus. The cell bodies of SCA interneurons were located in SR, and their sparsely spiny dendrites projected toward s. pyramidale (SP) and along SR. Their axons innervated SR, SP, and s. oriens (SO) with predominant ramification in SR. These cells were immunopositive for CCK and immunonegative for parvalbumin (PV). SCA interneurons often displayed an accommodating firing pattern with or without a "sag" in response to hyperpolarizing current injection. Pairs of these cells exhibited electrical coupling and reciprocal chemical connections in which inhibitory postsynaptic potentials (IPSPs) displayed powerful frequency-dependent facilitation and augmentation. The synaptic connections were modulated by the endogenous cannabinoid receptor (CB) agonist, anandamide and by depolarization-induced suppression of inhibition (DSI), both of which reduced the amplitude of unitary IPSPs to 50% of control and increased the number of apparent failures of transmission. These effects were blocked by the CB1 receptor antagonist, AM-251. I suggest that synaptic facilitation between CCK-positive SCA interneurons may modify the onset of CB1 receptor-mediated regulation of inhibition, thereby affecting spike timing, and that this process could influence the expression of anxiety.
机译:越来越多的证据表明胆囊收缩素(CCK)阳性的神经元与焦虑症有关。尽管如此,对CCK阳性中间神经元之间的突触相互作用的生理学和药理学知之甚少。这项研究的目的是使用成对的全细胞记录结合生物素和双重免疫荧光标记法在大鼠海马切片中研究层状辐射(SR)中CCK阳性Schaffer侧支相关(SCA)中间神经元之间的局部回路连接及其调节相互作用。 SCA interneurons的细胞体位于SR中,其稀疏的棘突树突向s方向突出。金字塔(SP)和SR沿。他们的轴突支配SR,SP和s。 SR中主要具有分支作用的oriens(SO)。这些细胞对CCK免疫阳性,对小白蛋白(PV)免疫阴性。 SCA中枢神经通常响应超极化电流注入而显示出带有或不带有“下陷”的适应性发射模式。这些细胞对显示出电耦合和相互的化学连接,其中抑制性突触后电位(IPSP)显示了强大的频率依赖性促进和增强。内源性大麻素受体(CB)激动剂,阿南酰胺和去极化诱导的抑制作用(DSI)调节突触连接,这两者均将单一IPSP的幅度降低至对照的50%,并增加了明显的IPSP失败次数。传播。这些作用被CB1受体拮抗剂AM-251阻断。我认为,CCK阳性SCA中枢神经元之间的突触促进作用可能会改变CB1受体介导的抑制作用的发作,从而影响突波时机,并且这一过程可能会影响焦虑的表达。

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