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星形胶质细胞形态重塑调节吸入性全身麻醉诱导的意识状态转变。

Astrocyte morphological remodeling regulates consciousness state transitions induced by inhaled general anesthesia.

作者信息

Zhou Bin, Li Qingran, Su Mengchan, Liao Ping, Luo Yuncheng, Luo Rong, Yu Yunqing, Luo Meiyan, Lei Fan, Li Xin, Jiao Jiao, Yi Limei, Wang Jing, Yang Linghui, Liao Daqing, Zhou Cheng, Zhang Xia, Xiao Hong, Zuo Yunxia, Liu Jin, Zhu Tao, Jiang Ruotian

机构信息

Department of Anesthesiology, West China Hospital, Sichuan University, Chengdu, 610041, China.

Laboratory of Anesthesia and Critical Care Medicine, National-Local Joint Engineering Research Center of Translational Medicine of Anesthesiology, West China Hospital, Sichuan University, Chengdu, 610041, China.

出版信息

Mol Psychiatry. 2025 Apr 1. doi: 10.1038/s41380-025-02978-2.

Abstract

General anesthetics (GAs) are conventionally thought to induce loss of consciousness (LOC) by acting on pre- and post-synaptic targets. However, the mechanism underlying the involvement of astrocytes in LOC remains unclear. Here we report that inhaled GAs cause reversible impairments in the fine processes of astrocytes within the somatosensory cortex, mediated by regulating the phosphorylation level of Ezrin, a protein critical for the fine morphology of astrocytes. Genetically deleting Ezrin or disrupting its phosphorylation was sufficient to decrease astrocyte-synapse interaction and enhance sensitivity to sevoflurane (Sevo) in vivo. Moreover, we show that disrupting astrocytic Ezrin phosphorylation boosted the inhibitory effect of Sevo on pyramidal neurons by enhancing tonic GABA and lowering excitability under anesthesia. Our work reveals previously unappreciated phosphorylation-dependent morphological dynamics, which enable astrocytes to regulate neuronal activity during the transition between two brain consciousness states.

摘要

传统观点认为,全身麻醉药(GAs)通过作用于突触前和突触后靶点来诱导意识丧失(LOC)。然而,星形胶质细胞参与LOC的潜在机制仍不清楚。在此,我们报告吸入性GAs会导致体感皮层内星形胶质细胞的精细突起出现可逆性损伤,这是由调节埃兹蛋白(Ezrin)的磷酸化水平介导的,埃兹蛋白是一种对星形胶质细胞精细形态至关重要的蛋白质。在体内,通过基因敲除埃兹蛋白或破坏其磷酸化足以减少星形胶质细胞与突触的相互作用,并增强对七氟烷(Sevo)的敏感性。此外,我们表明破坏星形胶质细胞的埃兹蛋白磷酸化通过增强持续性γ-氨基丁酸(GABA)并降低麻醉状态下的兴奋性,增强了七氟烷对锥体神经元的抑制作用。我们的研究揭示了以前未被认识到的磷酸化依赖性形态动力学,这使得星形胶质细胞能够在两种脑意识状态之间的转换过程中调节神经元活动。

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