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解析生物钟紊乱:评估外周振荡器幅度降低对肥胖和葡萄糖不耐受小鼠的影响。

Deconstructing circadian disruption: Assessing the contribution of reduced peripheral oscillator amplitude on obesity and glucose intolerance in mice.

机构信息

Department of Neurobiology, University of Massachusetts Medical School, Worcester, MA, USA.

Neuroscience Program, Smith College, Northampton, MA, USA.

出版信息

J Pineal Res. 2020 Aug;69(1):e12654. doi: 10.1111/jpi.12654. Epub 2020 Apr 19.

DOI:10.1111/jpi.12654
PMID:32243642
Abstract

Disturbing the circadian regulation of physiology by disruption of the rhythmic environment is associated with adverse health outcomes but the underlying mechanisms are unknown. Here, the response of central and peripheral circadian clocks to an advance or delay of the light-dark cycle was determined in mice. This identified transient damping of peripheral clocks as a consequence of an advanced light-dark cycle. Similar depression of peripheral rhythm amplitude was observed in mice exposed to repeated phase shifts. To assess the metabolic consequences of such peripheral amplitude depression in isolation, temporally chimeric mice lacking a functional central clock (Vgat-Cre Bmal1 ) were housed in the absence of environmental rhythmicity. In vivo PER2::LUC bioluminescence imaging of anesthetized and freely moving mice revealed that this resulted in a state of peripheral amplitude depression, similar in severity to that observed transiently following an advance of the light-dark cycle. Surprisingly, our mice did not show alterations in body mass or glucose tolerance in males or females on regular or high-fat diets. Overall, our results identify transient damping of peripheral rhythm amplitude as a consequence of exposure to an advanced light-dark cycle but chronic damping of peripheral clocks in isolation is insufficient to induce adverse metabolic outcomes in mice.

摘要

扰乱生理的昼夜节律调节会导致不良的健康后果,但潜在机制尚不清楚。在这里,研究人员确定了中央和外周生物钟对光-暗周期提前或延迟的反应。这表明,光-暗周期提前会导致外周时钟的短暂阻尼。在反复进行相位移动的小鼠中也观察到类似的外周节律幅度降低。为了评估单独的这种外周幅度降低的代谢后果,研究人员在缺乏环境节律的情况下,将缺乏功能性中枢时钟(Vgat-Cre Bmal1 )的嵌合小鼠隔离开来。对麻醉和自由活动的小鼠进行活体 PER2::LUC 生物发光成像显示,这导致了外周幅度降低,严重程度与光-暗周期提前后短暂观察到的幅度降低相似。令人惊讶的是,我们的小鼠在常规或高脂肪饮食下,雄性或雌性小鼠的体重或葡萄糖耐量均未发生改变。总体而言,我们的研究结果表明,暴露于提前的光-暗周期会导致外周节律幅度的短暂降低,但单独慢性抑制外周时钟不足以在小鼠中引起不良的代谢后果。

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