Lateral Habenula Glutamatergic Neurons Modulate Isoflurane Anesthesia in Mice

谷氨酸的 异氟醚 神经科学 光遗传学 麻醉 谷氨酸受体 医学 生物 内科学 受体
作者
Chengxi Liu,Junxiao Liu,Liang Zhou,Haifeng He,Yu Zhang,Shuang Cai,Chengdong Yuan,Tianyuan Luo,Jijian Zheng,Tian Yu,Mazhong Zhang
出处
期刊:Frontiers in Molecular Neuroscience [Frontiers Media SA]
卷期号:14 被引量:17
标识
DOI:10.3389/fnmol.2021.628996
摘要

Since their introduction in the 1840s, one of the largest mysteries of modern anesthesia are how general anesthetics create the state of reversible loss of consciousness. Increasing researchers have shown that neural pathways that regulate endogenous sleep–wake systems are also involved in general anesthesia. Recently, the Lateral Habenula (LHb) was considered as a hot spot for both natural sleep–wake and propofol-induced sedation; however, the role of the LHb and related pathways in the isoflurane-induced unconsciousness has yet to be identified. Here, using real-time calcium fiber photometry recordings in vivo , we found that isoflurane reversibly increased the activity of LHb glutamatergic neurons. Then, we selectively ablated LHb glutamatergic neurons in Vglut2-cre mice, which caused a longer induction time and less recovery time along with a decrease in delta-band power in mice under isoflurane anesthesia. Furthermore, using a chemogenetic approach to specifically activate LHb glutamatergic neurons shortened the induction time and prolonged the recovery time in mice under isoflurane anesthesia with an increase in delta-band power. In contrast, chemogenetic inhibition of LHb glutamatergic neurons was very similar to the effects of selective lesions of LHb glutamatergic neurons. Finally, optogenetic activation of LHb glutamatergic neurons or the synaptic terminals of LHb glutamatergic neurons in the rostromedial tegmental nucleus (RMTg) produced a hypnosis-promoting effect in isoflurane anesthesia with an increase in slow wave activity. Our results suggest that LHb glutamatergic neurons and pathway are vital in modulating isoflurane anesthesia.
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