谷氨酸的
七氟醚
医学
麻醉
神经科学
意识
谷氨酸受体
内科学
生物
受体
作者
Junming Xia,Bingqian Fan,Xiu‐Wen Yi,Wenwen Ni,Yu Zhou,Dandan Chen,Wen‐Jing Yi,Lili Feng,Ying Xia,Shuangshuang Li,Wei‐Min Qu,Yuan Han,Zhi‐Li Huang,Wenxian Li
出处
期刊:Anesthesiology
[Lippincott Williams & Wilkins]
日期:2023-10-09
卷期号:140 (1): 102-115
被引量:11
标识
DOI:10.1097/aln.0000000000004798
摘要
Background Multiple neural structures involved in maintaining wakefulness have been found to promote arousal from general anesthesia. The medial septum is a critical region that modulates arousal behavior. This study hypothesized that glutamatergic neurons in the medial septum play a crucial role in regulating states of consciousness during sevoflurane general anesthesia. Methods Adult male mice were used in this study. The effects of sevoflurane anesthesia on neuronal activity were determined by fiber photometry. Lesions and chemogenetic manipulations were used to study the effects of the altered activity of medial septal glutamatergic neurons on anesthesia induction, emergence, and sensitivity to sevoflurane. Optogenetic stimulation was used to observe the role of acute activation of medial septal glutamatergic neurons on cortical activity and behavioral changes during sevoflurane-induced continuous steady state of general anesthesia and burst suppression state. Results The authors found that medial septal glutamatergic neuronal activity decreased during sevoflurane anesthesia induction and recovered in the early period of emergence. Chemogenetic activation of medial septal glutamatergic neurons prolonged the induction time (mean ± SD, hM3Dq–clozapine N-oxide vs. hM3Dq–saline, 297.5 ± 60.1 s vs . 229.4 ± 29.9 s, P < 0.001, n = 11) and decreased the emergence time (53.2 ± 11.8 s vs . 77.5 ± 33.5 s, P = 0.025, n = 11). Lesions or chemogenetic inhibition of these neurons produced the opposite effects. During steady state of general anesthesia and deep anesthesia–induced burst suppression state, acute optogenetic activation of medial septal glutamatergic neurons induced cortical activation and behavioral emergence. Conclusions The study findings reveal that activation of medial septal glutamatergic neurons has arousal-promoting effects during sevoflurane anesthesia in male mice. The activation of these neurons prolongs the induction and accelerates the emergence of anesthesia. Editor’s Perspective What We Already Know about This Topic What This Article Tells Us That Is New
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