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Mice Lacking Alternatively Activated (M2) Macrophages Show Impairments in Restorative Sleep after Sleep Loss and in Cold Environment

机译:缺少小鼠或被激活的(M2)巨噬细胞显示出失眠后和寒冷环境中的恢复性睡眠受损

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摘要

The relationship between sleep, metabolism and immune functions has been described, but the cellular components of the interaction are incompletely identified. We previously reported that systemic macrophage depletion results in sleep impairment after sleep loss and in cold environment. These findings point to the role of macrophage-derived signals in maintaining normal sleep. Macrophages exist either in resting form, classically activated, pro-inflammatory (M1) or alternatively activated, anti-inflammatory (M2) phenotypes. In the present study we determined the contribution of M2 macrophages to sleep signaling by using IL-4 receptor α-chain-deficient [IL-4Rα knockout (KO)] mice, which are unable to produce M2 macrophages. Sleep deprivation induced robust increases in non-rapid-eye-movement sleep (NREMS) and slow-wave activity in wild-type (WT) animals. NREMS rebound after sleep deprivation was ~50% less in IL-4Rα KO mice. Cold exposure induced reductions in rapid-eye-movement sleep (REMS) and NREMS in both WT and KO mice. These differences were augmented in IL-4Rα KO mice, which lost ~100% more NREMS and ~25% more REMS compared to WTs. Our finding that M2 macrophage-deficient mice have the same sleep phenotype as mice with global macrophage depletion reconfirms the significance of macrophages in sleep regulation and suggests that the main contributors are the alternatively activated M2 cells.
机译:睡眠,代谢和免疫功能之间的关系已被描述,但相互作用的细胞成分尚未完全确定。我们先前曾报道全身性巨噬细胞耗竭会导致失眠后和寒冷环境中的睡眠障碍。这些发现指出巨噬细胞源性信号在维持正常睡眠中的作用。巨噬细胞以静息形式存在,经典激活,促炎(M1)或激活,消炎(M2)表型。在本研究中,我们通过使用无法产生M2巨噬细胞的IL-4受体α链缺陷型[IL-4Rα敲除(KO)]小鼠确定了M2巨噬细胞对睡眠信号的贡献。睡眠剥夺导致野生型(WT)动物的非快速眼动睡眠(NREMS)和慢波活动急剧增加。在IL-4RαKO小鼠中,睡眠剥夺后的NREMS反弹少约50%。冷暴露引起WT和KO小鼠快速眼动睡眠(REMS)和NREMS减少。这些差异在IL-4RαKO小鼠中得到了增强,与WT相比,它们的NREMS损失了约100%,REMS损失了约25%。我们的发现M2巨噬细胞缺陷型小鼠与整体巨噬细胞耗竭型小鼠具有相同的睡眠表型,这再次证实了巨噬细胞在睡眠调节中的重要性,并表明主要的贡献者是交替激活的M2细胞。

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