首页> 美国卫生研究院文献>PLoS Clinical Trials >Continuous Exposure to a Novel Stressor Based on Water Aversion Induces Abnormal Circadian Locomotor Rhythms and Sleep-Wake Cycles in Mice
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Continuous Exposure to a Novel Stressor Based on Water Aversion Induces Abnormal Circadian Locomotor Rhythms and Sleep-Wake Cycles in Mice

机译:连续暴露于基于厌恶情绪的新型应激源可导致小鼠昼夜节律性运动节律和睡眠-觉醒周期

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摘要

Psychological stressors prominently affect diurnal rhythms, including locomotor activity, sleep, blood pressure, and body temperature, in humans. Here, we found that a novel continuous stress imposed by the perpetual avoidance of water on a wheel (PAWW) affected several physiological diurnal rhythms in mice. One week of PAWW stress decayed robust circadian locomotor rhythmicity, while locomotor activity was evident even during the light period when the mice are normally asleep. Daytime activity was significantly upregulated, whereas nighttime activity was downregulated, resulting in a low amplitude of activity. Total daily activity gradually decreased with increasing exposure to PAWW stress. The mice could be exposed to PAWW stress for over 3 weeks without adaptation. Furthermore, continuous PAWW stress enhanced food intake, but decreased body weight and plasma leptin levels, indicating that sleep loss and PAWW stress altered the energy balance in these mice. The diurnal rhythm of corticosterone levels was not severely affected. The body temperature rhythm was diurnal in the stressed mice, but significantly dysregulated during the dark period. Plasma catecholamines were elevated in the stressed mice. Continuous PAWW stress reduced the duration of daytime sleep, especially during the first half of the light period, and increased nighttime sleepiness. Continuous PAWW stress also simultaneously obscured sleep/wake and locomotor activity rhythms compared with control mice. These sleep architecture phenotypes under stress are similar to those of patients with insomnia. The stressed mice could be entrained to the light/dark cycle, and when they were transferred to constant darkness, they exhibited a free-running circadian rhythm with a timing of activity onset predicted by the phase of their entrained rhythms. Circadian gene expression in the liver and muscle was unaltered, indicating that the peripheral clocks in these tissues remained intact.
机译:心理压力源显着影响人类的昼夜节律,包括运动能力,睡眠,血压和体温。在这里,我们发现永久避免车轮上的水(PAWW)施加了一种新颖的持续压力,影响了小鼠的几种生理昼夜节律。 PAWW的一周应力减弱了强健的昼夜节律性节律,而即使在正常睡眠状态下的轻度睡眠期,运动性活动也很明显。白天活动明显上调,而夜间活动下调,导致活动幅度较低。随着暴露于PAWW压力的增加,每日总活动逐渐减少。小鼠可能不适应而暴露于PAWW应激超过3周。此外,连续的PAWW应激会增加食物摄入量,但会降低体重和血浆瘦素水平,这表明睡眠不足和PAWW应激会改变这些小鼠的能量平衡。皮质酮水平的昼夜节律并未受到严重影响。压力小鼠的体温节律是昼夜的,但在黑暗时期却明显失调。应激小鼠血浆儿茶酚胺水平升高。持续的PAWW压力减少了白天的睡眠时间,尤其是在光亮的前半段,并增加了夜间的嗜睡。与对照小鼠相比,持续的PAWW应激也同时掩盖了睡眠/唤醒和运动活动的节奏。这些在压力下的睡眠结构表型与失眠患者的表型相似。压力大的小鼠可能被带入了明/暗循环,当它们转移到恒定的黑暗中时,它们表现出了自由奔跑的昼夜节律,其活动发作的时机由其所包裹的节律的阶段来预测。肝脏和肌肉中的昼夜节律基因表达未改变,表明这些组织中的外周时钟保持完整。

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