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七氟醚通过增强突触后 GABA 受体和背景钾通道来抑制中脑臂旁核神经元。

Sevoflurane depresses neurons in the medial parabrachial nucleus by potentiating postsynaptic GABA receptors and background potassium channels.

机构信息

Department of Pharmacology, School of Basic Medical Sciences; State Key Laboratory of Medical Neurobiology and MOE Frontiers Center for Brain Science, and Institutes of Brain Science, Shanghai Medical College of Fudan University, Shanghai, China.

Department of Anesthesiology, The Eye, Ear, Nose and Throat Hospital of Fudan University, Shanghai Medical College of Fudan University, Shanghai, China.

出版信息

Neuropharmacology. 2020 Dec 15;181:108249. doi: 10.1016/j.neuropharm.2020.108249. Epub 2020 Sep 12.

Abstract

Despite persistent clinical use for over 170 years, the neuronal mechanisms by which general anesthetics produce hypnosis remain unclear. Previous studies suggest that anesthetics exert hypnotic effects by acting on endogenous arousal circuits. Recently, it has been shown that the medial parabrachial nucleus (MPB) is a novel wake-promoting component in the dorsolateral pons. However, it is not known whether and how the MPB contributes to anesthetic-induced hypnosis. Here, we investigated the action of sevoflurane, a widely used volatile anesthetic agent that best represents the drug class of halogenated ethers, on MPB neurons in mice. Using in vivo fiber photometry, we found that the population activities of MPB neurons were inhibited during sevoflurane-induced loss of consciousness. Using in vitro whole-cell patch-clamp recordings, we revealed that sevoflurane suppressed the firing rate of MPB neurons in concentration-dependent and reversible manners. At a concentration equal to MAC of hypnosis, sevoflurane potentiated synaptic GABA receptors (GABA-Rs), and the inhibitory effect of sevoflurane on the firing rate of MPB neurons was completely abolished by picrotoxin, which is a selective GABA-R antagonist. At a concentration equivalent to MAC of immobility, sevoflurane directly hyperpolarized MPB neurons and induced a significant decrease in membrane input resistance by increasing a basal potassium conductance. Moreover, pharmacological blockade of GABA-Rs in the MPB prolongs induction and shortens emergence under sevoflurane inhalation at MAC of hypnosis. These results indicate that sevoflurane inhibits MPB neurons through postsynaptic GABA-Rs and background potassium channels, which contributes to sevoflurane-induced hypnosis.

摘要

尽管全身麻醉已临床应用 170 余年,但人们仍不清楚其产生催眠作用的神经元机制。既往研究提示,麻醉药通过作用于内源性觉醒环路产生催眠效应。最近研究显示,中脑臂旁核(MPB)是脑桥背外侧的一个新的促觉醒核团。但 MPB 是否以及如何参与麻醉诱导的催眠仍不清楚。本研究旨在探讨七氟醚(一种广泛应用的挥发性麻醉药,能很好地代表卤代醚类药物)对小鼠 MPB 神经元的作用。应用活体光纤光度测定法,我们发现七氟醚诱导意识丧失期间 MPB 神经元的群体活动受到抑制。应用体外全细胞膜片钳记录技术,我们发现七氟醚以浓度依赖和可逆转的方式抑制 MPB 神经元的放电频率。在催眠 MAC 浓度下,七氟醚增强了 MPB 神经元上的突触 GABA 受体(GABA-R)活性,而 picrotoxin(一种选择性 GABA-R 拮抗剂)可完全阻断七氟醚对 MPB 神经元放电频率的抑制作用。在相当于不动 MAC 浓度下,七氟醚直接超极化 MPB 神经元,并通过增加基础钾电导使膜输入电阻显著降低。此外,MPB 中的 GABA-R 药理学阻断可延长七氟醚吸入诱导期并缩短其苏醒期(在催眠 MAC 浓度下)。这些结果提示,七氟醚通过突触后 GABA-R 和背景钾通道抑制 MPB 神经元,从而介导七氟醚诱导的催眠。

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