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The main source of ambient GABA responsible for tonic inhibition in the mouse hippocampus

机译:环境GABA的主要来源负责抑制小鼠海马的滋补

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摘要

The extracellular space of the brain contains γ-aminobutyric acid (GABA) that activates extrasynaptic GABAA receptors mediating tonic inhibition. The source of this GABA is uncertain: it could be overspill of vesicular release, non-vesicular leakage, reverse transport, dying cells or glia. Using a novel approach, we simultaneously measured phasic and tonic inhibitory currents and assessed their correlation. Enhancing or diminishing vesicular GABA release in hippocampal neurons caused highly correlated changes in the two inhibitions. During high-frequency phasic inhibitory bursts, tonic current was also enhanced as shown by simulating the summation of IPSCs and by recordings in knockout mice devoid of tonic inhibitory current. When vesicular release was reduced by blocking action potentials or the vesicular GABA transporter, phasic and tonic currents decreased in a correlated fashion. Our results are consistent with most of hippocampal tonic inhibitory current being mediated by GABA released from the very vesicles responsible for activating phasic inhibition.
机译:大脑的细胞外空间含有γ-氨基丁酸(GABA),可激活突触外GABAA受体,介导补药抑制。该GABA的来源尚不确定:可能是水泡释放,非水泡渗漏,反向转运,细胞死亡或胶质细胞溢出。使用一种新颖的方法,我们同时测量了相电流和强音抑制电流,并评估了它们的相关性。增强或减少海马神经元中水泡GABA的释放会导致两种抑制作用高度相关。在高频阶段性的抑制性爆发中,通过模拟IPSC的总和以及通过在无兴奋性抑制电流的基因敲除小鼠中进行记录,可以显示出增强的兴奋性电流。当通过阻断动作电位或水泡GABA转运蛋白减少水泡释放时,相电流和补电流以相关的方式降低。我们的结果与大部分海马强直抑制电流是由负责激活相位抑制作用的小泡释放的GABA介导的一致。

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