Regulation of wakefulness by GABAergic dorsal raphe nucleus-ventral tegmental area pathway

中缝背核 加巴能 神经科学 清醒 光遗传学 睡眠开始 非快速眼动睡眠 被盖腹侧区 外侧下丘脑 生物 刺激 5-羟色胺能 血清素 眼球运动 抑制性突触后电位 脑电图 多巴胺 受体 多巴胺能 药理学 生物化学 失眠症
作者
Ping Cai,Fu-Dan Wang,Jing Yao,Wenfeng Wang,Yuduan Hu,Ren-Fu Liu,Zhang-Shu Li,Zhong-Hua Zhu,Yu-Tong Cai,Zhihui Lin,Wei-Tao Tang,Cong-Wen Zhuang,Wen-Hao Xiao,Yu-Hang Zeng,Shengnan Huang,Zhifei Fu,Wenxiang Wang,Li Chen
出处
期刊:Sleep [Oxford University Press]
卷期号:45 (12) 被引量:7
标识
DOI:10.1093/sleep/zsac235
摘要

Abstract The dorsal raphe nucleus (DRN) has previously been proved to be involved in the regulation of the sleep–wake behavior. DRN contains several neuron types, such as 5-HTergic and GABAergic neurons. GABAergic neurons, which are the second largest cell subtype in the DRN, participate in a variety of neurophysiological functions. However, their role in sleep–wake regulation and the underlying neural circuitry remains unclear. Herein, we used fiber photometry and synchronous electroencephalogram (EEG)/electromyography (EMG) recording to demonstrate that DRN GABAergic neurons exhibit high activities during wakefulness and low activities during NREM sleep. Short-term optogenetic activation of DRN GABAergic neurons reduced the latency of NREM-to-wake transition and increased the probability of wakefulness, while long-term optogenetic activation of these neurons significantly increased the amount of wakefulness. Chemogenetic activation of DRN GABAergic neurons increased wakefulness for almost 2 h and maintained long-lasting arousal. In addition, inhibition of DRN GABAergic neurons with chemogenetics caused a reduction in the amount of wakefulness. Finally, similar to the effects of activating the soma of DRN GABAergic neurons, optogenetic stimulation of their terminals in the ventral tegmental area (VTA) induced instant arousal and promoted wakefulness. Taken together, our results illustrated that DRN GABAergic neurons are vital to the induction and maintenance of wakefulness, which promote wakefulness through the GABAergic DRN-VTA pathway.
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