Substantia Innominata Glutamatergic Neurons Modulate Sevoflurane Anesthesia in Male Mice

谷氨酸的 七氟醚 无名质 光遗传学 神经科学 麻醉 医学 黑质 清醒 运动前神经元活动 心理学 谷氨酸受体 内科学 脑电图 胆碱能神经元 多巴胺 胆碱能的 受体 多巴胺能
作者
Jing Wang,Fang Fang,Wenxu Wang,Yunli Xie,Jing Cang,Shi‐Bin Li
出处
期刊:Anesthesia & Analgesia [Ovid Technologies (Wolters Kluwer)]
标识
DOI:10.1213/ane.0000000000007092
摘要

BACKGROUND: Accumulated evidence suggests that brain regions that promote wakefulness also facilitate emergence from general anesthesia (GA). Glutamatergic neurons in the substantia innominata (SI) regulate motivation-related aversive, depressive, and aggressive behaviors relying on heightened arousal. Here, we hypothesize that glutamatergic neurons in the SI are also involved in the regulation of the effects of sevoflurane anesthesia. METHODS: With a combination of fiber photometry, chemogenetic and optogenetic tools, behavioral tests, and cortical electroencephalogram recordings, we investigated whether and how SI glutamatergic neurons and their projections to the lateral hypothalamus (LH) regulate sevoflurane anesthesia in adult male mice. RESULTS: Population activity of glutamatergic neurons in the SI gradually decreased upon sevoflurane-induced loss of consciousness (LOC) and slowly returned as soon as inhalation of sevoflurane discontinued before recovery of consciousness (ROC). Chemogenetic activation of SI glutamatergic neurons dampened the animals’ sensitivity to sevoflurane exposure, prolonged induction time (mean ± standard deviation [SD]; 389 ± 67 seconds vs 458 ± 53 seconds; P = .047), and shortened emergence time (305 seconds, 95% confidence interval [CI], 242–369 seconds vs 207 seconds, 95% CI, 135–279 seconds; P = .004), whereas chemogenetic inhibition of these neurons facilitated sevoflurane anesthesia. Furthermore, optogenetic activation of SI glutamatergic neurons and their terminals in LH induced cortical activation and behavioral emergence from different depths of sevoflurane anesthesia. CONCLUSIONS: Our study shows that SI glutamatergic neuronal activity facilitates emergence from sevoflurane anesthesia and provides evidence for the involvement of the SI-LH glutamatergic pathway in the regulation of consciousness during GA.
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