The adenosine-mediated, neuronal-glial, homeostatic sleep response.

The adenosine-mediated, neuronal-glial, homeostatic sleep response.
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DOI:
10.1016/j.conb.2017.05.015
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发表时间:
2017-06
影响因子:
5.7
通讯作者:
Suzuki A
Suzuki A
中科院分区:
医学2区
文献类型:
--
作者:
Greene RW;Bjorness TE;Suzuki A

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慢波睡眠(SWS)期间的慢波活动(SWA)是睡眠稳态的最佳指标。在SWS期间观察到的SWA的强度与之前清醒的持续时间直接相关,并且其强度在SWS期间衰减,这表明睡眠需求的积累和解决。这种与睡眠稳态相关的SWA是由细胞外腺苷的积累和衰减引起的,细胞外腺苷作用于神经元腺苷A1受体以促进SWA,并由神经胶质中发现的腺苷激酶代谢。这种用于稳态SWA的局部神经元-神经胶质回路主要受到两个基因Adora 1和Adk的必要控制,这两个基因编码负责的腺苷受体和腺苷最高亲和力代谢酶。
Slow wave activity (SWA) during slow wave sleep (SWS) is the best indicator of the sleep homeostasis. The intensity of the SWA observed during SWS that follows prolonged waking is directly correlated with the duration of prior waking and its intensity decays during SWS suggesting a buildup and a resolution of sleep need. This sleep-homeostasis related SWA results from a buildup and decay of extracellular adenosine that acts at neuronal adenosine A1 receptors to facilitate SWA and is metabolized by adenosine kinase found in glia. This local neuronal-glial circuit for homeostatic SWA is primarily under the requisite control of two genes, the Adora1 and Adk, encoding the responsible adenosine receptor and adenosine’s highest affinity metabolizing enzyme.
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