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Ethanol increases GABAergic transmission at both pre- and postsynaptic sites in rat central amygdala neurons

机译:乙醇增加大鼠中央杏仁核神经元突触前和突触后位点的GABA能传递

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摘要

We examined the interaction of ethanol with the γ-aminobutyric acid (GABA)ergic system in neurons of slices of the rat central amygdala nucleus (CeA), a brain region thought to be critical for the reinforcing effects of ethanol. Brief superfusion of 11–66 mM ethanol significantly increased GABA type A (GABAA) receptor-mediated inhibitory postsynaptic potentials (IPSPs) and currents (IPSCs) in most CeA neurons, with a low apparent EC50 of 20 mM. Acute superfusion of 44 mM ethanol increased the amplitude of evoked GABAA IPSPs and IPSCs in 70% of CeA neurons. The ethanol enhancement of IPSPs and IPSCs occurred to a similar extent in the presence of the GABA type B (GABAB) receptor antagonist CGP 55845A, suggesting that this receptor is not involved in the ethanol effect on CeA neurons. Ethanol superfusion also decreased paired-pulse facilitation of evoked GABAA IPSPs and IPSCs and always increased the frequency and sometimes the amplitude of spontaneous miniature GABAA IPSCs as well as responses to local GABA application, indicating both presynaptic and postsynaptic sites of action for ethanol. Thus, the CeA is the first brain region to reveal, without conditional treatments such as GABAB antagonists, consistent, low-dose ethanol enhancement of GABAergic transmission at both pre- and postsynaptic sites. These findings add further support to the contention that the ethanol–GABA interaction in CeA plays an important role in the reinforcing effects of ethanol.
机译:我们检查了大鼠中央杏仁核(CeA)切片神经元中的乙醇与γ-氨基丁酸(GABA)能系统的相互作用,该大脑区域被认为对乙醇的增强作用至关重要。在大多数CeA神经元中,短暂注入11-66 mM乙醇会显着增加GABA A型(GABAA)受体介导的抑制性突触后电位(IPSPs)和电流(IPSCs),表观EC50低至20 mM。急性超标44 mM乙醇增加了70%的CeA神经元中诱发的GABAA IPSP和IPSC的幅度。在存在GABA B型(GABAB)受体拮抗剂CGP 55845A的情况下,IPSP和IPSC的乙醇增强程度相似,表明该受体不参与乙醇对CeA神经元的作用。乙醇灌注还降低了诱发的GABAA IPSP和IPSC的成对脉冲促进作用,并且总是增加了自发微型GABAA IPSC的频率,有时甚至是振幅,以及对局部GABA的响应,这表明突触前和突触后的乙醇作用位点。因此,CeA是第一个在没有条件治疗(例如GABAB拮抗剂)的情况下揭示突触前和突触后位点一致,低剂量乙醇增强GABA能传递的大脑区域。这些发现进一步证明了CeA中乙醇与GABA的相互作用在乙醇的增强作用中起着重要作用。

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