首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >The general anaesthetic etomidate inhibits the excitability of mouse thalamocortical relay neurons by modulating multiple modes of GABAA receptor-mediated inhibition
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The general anaesthetic etomidate inhibits the excitability of mouse thalamocortical relay neurons by modulating multiple modes of GABAA receptor-mediated inhibition

机译:全身麻醉药依托咪酯通过调节GABAA受体介导的多种抑制方式来抑制小鼠丘脑皮质中继神经元的兴奋性

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摘要

Modulation of thalamocortical (TC) relay neuron function has been implicated in the sedative and hypnotic effects of general anaesthetics. Inhibition of TC neurons is mediated predominantly by a combination of phasic and tonic inhibition, together with a recently described ‘spillover’ mode of inhibition, generated by the dynamic recruitment of extrasynaptic γ-aminobutyric acid (GABA)A receptors (GABAARs). Previous studies demonstrated that the intravenous anaesthetic etomidate enhances tonic and phasic inhibition in TC relay neurons, but it is not known how etomidate may influence spillover inhibition. Moreover, it is unclear how etomidate influences the excitability of TC neurons. Thus, to investigate the relative contribution of synaptic (α1β2γ2) and extrasynaptic (α4β2δ) GABAARs to the thalamic effects of etomidate, we performed whole-cell recordings from mouse TC neurons lacking synaptic (α10/0) or extrasynaptic (δ0/0) GABAARs. Etomidate (3 μm) significantly inhibited action-potential discharge in a manner that was dependent on facilitation of both synaptic and extrasynaptic GABAARs, although enhanced tonic inhibition was dominant in this respect. Additionally, phasic inhibition evoked by stimulation of the nucleus reticularis exhibited a spillover component mediated by δ-GABAARs, which was significantly prolonged in the presence of etomidate. Thus, etomidate greatly enhanced the transient suppression of TC spike trains by evoked inhibitory postsynaptic potentials. Collectively, these results suggest that the deactivation of thalamus observed during etomidate-induced anaesthesia involves potentiation of tonic and phasic inhibition, and implicate amplification of spillover inhibition as a novel mechanism to regulate the gating of sensory information through the thalamus during anaesthetic states.
机译:丘脑皮质(TC)中继神经元功能的调节已牵涉到全身麻醉剂的镇静和催眠作用。 TC神经元的抑制主要是通过阶段性和强直性抑制相结合,以及最近描述的“溢出”抑制模式介导的,该抑制模式是由突触外γ-氨基丁酸(GABA)A受体(GABAARs)的动态募集产生的。先前的研究表明,静脉麻醉药依托咪酯可增强TC中继神经元的强直性和阶段性抑制作用,但尚不知道依托咪酯如何影响溢出抑制作用。此外,尚不清楚依托咪酯如何影响TC神经元的兴奋性。因此,为了研究突触(α1β2γ2)和突触外(α4β2δ)GABAAR对依托咪酯的丘脑效应的相对贡献,我们从缺乏突触的小鼠TC神经元(α1 0/0 )进行了全细胞记录或突触外(δ 0/0 )GABAAR。依托咪酯(3μm)以一种依赖于突触和突触外GABAAR促进的方式显着抑制动作电位放电,尽管在此方面增强的强直抑制作用是主要的。另外,网状核的刺激引起的相抑制表现出由δ-GABAARs介导的溢出成分,在依托咪酯的存在下显着延长。因此,依托咪酯引起的抑制性突触后电位大大增强了TC尖峰序列的瞬时抑制。总的来说,这些结果表明在依托咪酯诱导的麻醉过程中观察到的丘脑失活涉及到补药和阶段性抑制的增强,并暗示溢出抑制的放大是一种在麻醉状态下通过丘脑调节感觉信息门控的新机制。

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