Literature DB >> 24613308

Selective activation of cholinergic basal forebrain neurons induces immediate sleep-wake transitions.

Yong Han1, Yu-feng Shi1, Wang Xi1, Rui Zhou1, Zhi-bing Tan1, Hao Wang1, Xiao-ming Li1, Zhong Chen1, Guoping Feng2, Minmin Luo3, Zhi-li Huang4, Shumin Duan5, Yan-qin Yu6.   

Abstract

The basal forebrain (BF) plays a crucial role in cortical activation [1, 2]. However, the exact role of cholinergic BF (ch-BF) neurons in the sleep-wake cycle remains unclear [3, 4]. We demonstrated that photostimulation of ch-BF neurons genetically targeted with channelrhodopsin 2 (ChR2) was sufficient to induce an immediate transition to waking or rapid eye movement (REM) sleep from slow-wave sleep (SWS). Light stimulation was most likely to induce behavioral arousal during SWS, but not during REM sleep, a result in contrast to the previously reported photostimulation of noradrenergic or hypocretin neurons that induces wake transitions from both SWS and REM sleep. Furthermore, the ratio of light-induced transitions from SWS to wakefulness or to REM sleep did not significantly differ from that of natural transitions, suggesting that activation of ch-BF neurons facilitates the transition from SWS but does not change the direction of the transition. Excitation of ch-BF neurons during wakefulness or REM sleep sustained the cortical activation. Stimulation of these neurons for 1 hr induced a delayed increase in the duration of wakefulness in the subsequent inactive period. Our results suggest that activation of ch-BF neurons alone is sufficient to suppress SWS and promote wakefulness and REM sleep.
Copyright © 2014 Elsevier Ltd. All rights reserved.

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Year:  2014        PMID: 24613308     DOI: 10.1016/j.cub.2014.02.011

Source DB:  PubMed          Journal:  Curr Biol        ISSN: 0960-9822            Impact factor:   10.834


  60 in total

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Review 6.  Neuronal Mechanisms for Sleep/Wake Regulation and Modulatory Drive.

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9.  Dynorphin inhibits basal forebrain cholinergic neurons by pre- and postsynaptic mechanisms.

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Review 10.  Implications of gamma band activity in the pedunculopontine nucleus.

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