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Facilitation of Behavioral and Cortical Emergence from Isoflurane Anesthesia by GABAergic Neurons in Basal Forebrain

General anesthesia shares many similarities with natural sleep in behavior and electroencephalogram (EEG) patterns. The latest evidence suggests that general anesthesia and sleep–wake behavior may share overlapping neural substrates. The GABAergic neurons in the basal forebrain (BF) have recently be...

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Autores principales: Cai, Ping, Su, Wei-Kun, Zhang, Jin-Sheng, Liu, Pei-Chang, Liu, Feng, Liu, Ren-Fu, Li, Zhang-Shu, Zhu, Zhong-Hua, Xiao, Wen-Hao, Hu, Yong-Huai, Cai, Hong-Da, Wu, Xiao-Dan, Zhang, Liang-Cheng, Yu, Changxi, Chen, Li
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Society for Neuroscience 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10124952/
https://www.ncbi.nlm.nih.gov/pubmed/36868854
http://dx.doi.org/10.1523/JNEUROSCI.0628-22.2023
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author Cai, Ping
Su, Wei-Kun
Zhang, Jin-Sheng
Liu, Pei-Chang
Liu, Feng
Liu, Ren-Fu
Li, Zhang-Shu
Zhu, Zhong-Hua
Xiao, Wen-Hao
Hu, Yong-Huai
Cai, Hong-Da
Wu, Xiao-Dan
Zhang, Liang-Cheng
Yu, Changxi
Chen, Li
author_facet Cai, Ping
Su, Wei-Kun
Zhang, Jin-Sheng
Liu, Pei-Chang
Liu, Feng
Liu, Ren-Fu
Li, Zhang-Shu
Zhu, Zhong-Hua
Xiao, Wen-Hao
Hu, Yong-Huai
Cai, Hong-Da
Wu, Xiao-Dan
Zhang, Liang-Cheng
Yu, Changxi
Chen, Li
author_sort Cai, Ping
collection PubMed
description General anesthesia shares many similarities with natural sleep in behavior and electroencephalogram (EEG) patterns. The latest evidence suggests that general anesthesia and sleep–wake behavior may share overlapping neural substrates. The GABAergic neurons in the basal forebrain (BF) have recently been demonstrated to play a key role in controlling wakefulness. It was hypothesized that BF GABAergic neurons may participate in the regulation of general anesthesia. Here, using in vivo fiber photometry, we found that the activity of BF GABAergic neurons was generally inhibited during isoflurane anesthesia, having obviously decreased during the induction of anesthesia and being gradually restored during the emergence from anesthesia, in Vgat-Cre mice of both sexes. Activation of BF GABAergic neurons with chemogenetic and optogenetic approaches decreased sensitivity to isoflurane, delayed induction, and accelerated emergence from isoflurane anesthesia. Optogenetic activation of BF GABAergic neurons decreased EEG δ power and the burst suppression ratio (BSR) during 0.8% and 1.4% isoflurane anesthesia, respectively. Similar to the effects of activating BF GABAergic cell bodies, photostimulation of BF GABAergic terminals in the thalamic reticular nucleus (TRN) also strongly promoted cortical activation and behavioral emergence from isoflurane anesthesia. Collectively, these results showed that the GABAergic BF is a key neural substrate for general anesthesia regulation that facilitates behavioral and cortical emergence from general anesthesia via the GABAergic BF-TRN pathway. Our findings may provide a new target for attenuating the depth of anesthesia and accelerating emergence from general anesthesia. SIGNIFICANCE STATEMENT The basal forebrain (BF) is a key brain region controlling sleep–wake behavior. Activation of GABAergic neurons in the BF potently promotes behavioral arousal and cortical activity. Recently, many sleep–wake-related brain structures have been reported to participate in the regulation of general anesthesia. However, it is still unclear what role BF GABAergic neurons play in general anesthesia. In this study, we aim to reveal the role of BF GABAergic neurons in behavioral and cortical emergence from isoflurane anesthesia and elucidate the underlying neural pathways. Understanding the specific role of BF GABAergic neurons in isoflurane anesthesia would improve our understanding of the mechanisms of general anesthesia and may provide a new strategy for accelerating emergence from general anesthesia.
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spelling pubmed-101249522023-04-25 Facilitation of Behavioral and Cortical Emergence from Isoflurane Anesthesia by GABAergic Neurons in Basal Forebrain Cai, Ping Su, Wei-Kun Zhang, Jin-Sheng Liu, Pei-Chang Liu, Feng Liu, Ren-Fu Li, Zhang-Shu Zhu, Zhong-Hua Xiao, Wen-Hao Hu, Yong-Huai Cai, Hong-Da Wu, Xiao-Dan Zhang, Liang-Cheng Yu, Changxi Chen, Li J Neurosci Research Articles General anesthesia shares many similarities with natural sleep in behavior and electroencephalogram (EEG) patterns. The latest evidence suggests that general anesthesia and sleep–wake behavior may share overlapping neural substrates. The GABAergic neurons in the basal forebrain (BF) have recently been demonstrated to play a key role in controlling wakefulness. It was hypothesized that BF GABAergic neurons may participate in the regulation of general anesthesia. Here, using in vivo fiber photometry, we found that the activity of BF GABAergic neurons was generally inhibited during isoflurane anesthesia, having obviously decreased during the induction of anesthesia and being gradually restored during the emergence from anesthesia, in Vgat-Cre mice of both sexes. Activation of BF GABAergic neurons with chemogenetic and optogenetic approaches decreased sensitivity to isoflurane, delayed induction, and accelerated emergence from isoflurane anesthesia. Optogenetic activation of BF GABAergic neurons decreased EEG δ power and the burst suppression ratio (BSR) during 0.8% and 1.4% isoflurane anesthesia, respectively. Similar to the effects of activating BF GABAergic cell bodies, photostimulation of BF GABAergic terminals in the thalamic reticular nucleus (TRN) also strongly promoted cortical activation and behavioral emergence from isoflurane anesthesia. Collectively, these results showed that the GABAergic BF is a key neural substrate for general anesthesia regulation that facilitates behavioral and cortical emergence from general anesthesia via the GABAergic BF-TRN pathway. Our findings may provide a new target for attenuating the depth of anesthesia and accelerating emergence from general anesthesia. SIGNIFICANCE STATEMENT The basal forebrain (BF) is a key brain region controlling sleep–wake behavior. Activation of GABAergic neurons in the BF potently promotes behavioral arousal and cortical activity. Recently, many sleep–wake-related brain structures have been reported to participate in the regulation of general anesthesia. However, it is still unclear what role BF GABAergic neurons play in general anesthesia. In this study, we aim to reveal the role of BF GABAergic neurons in behavioral and cortical emergence from isoflurane anesthesia and elucidate the underlying neural pathways. Understanding the specific role of BF GABAergic neurons in isoflurane anesthesia would improve our understanding of the mechanisms of general anesthesia and may provide a new strategy for accelerating emergence from general anesthesia. Society for Neuroscience 2023-04-19 /pmc/articles/PMC10124952/ /pubmed/36868854 http://dx.doi.org/10.1523/JNEUROSCI.0628-22.2023 Text en Copyright © 2023 Cai, Su et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Articles
Cai, Ping
Su, Wei-Kun
Zhang, Jin-Sheng
Liu, Pei-Chang
Liu, Feng
Liu, Ren-Fu
Li, Zhang-Shu
Zhu, Zhong-Hua
Xiao, Wen-Hao
Hu, Yong-Huai
Cai, Hong-Da
Wu, Xiao-Dan
Zhang, Liang-Cheng
Yu, Changxi
Chen, Li
Facilitation of Behavioral and Cortical Emergence from Isoflurane Anesthesia by GABAergic Neurons in Basal Forebrain
title Facilitation of Behavioral and Cortical Emergence from Isoflurane Anesthesia by GABAergic Neurons in Basal Forebrain
title_full Facilitation of Behavioral and Cortical Emergence from Isoflurane Anesthesia by GABAergic Neurons in Basal Forebrain
title_fullStr Facilitation of Behavioral and Cortical Emergence from Isoflurane Anesthesia by GABAergic Neurons in Basal Forebrain
title_full_unstemmed Facilitation of Behavioral and Cortical Emergence from Isoflurane Anesthesia by GABAergic Neurons in Basal Forebrain
title_short Facilitation of Behavioral and Cortical Emergence from Isoflurane Anesthesia by GABAergic Neurons in Basal Forebrain
title_sort facilitation of behavioral and cortical emergence from isoflurane anesthesia by gabaergic neurons in basal forebrain
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10124952/
https://www.ncbi.nlm.nih.gov/pubmed/36868854
http://dx.doi.org/10.1523/JNEUROSCI.0628-22.2023
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