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环境温度对小鼠睡眠和心血管调节的影响:下丘脑食欲素神经元的作用。

Effects of ambient temperature on sleep and cardiovascular regulation in mice: the role of hypocretin/orexin neurons.

机构信息

Department of Human and General Physiology, Alma Mater Studiorum - University of Bologna, Italy.

出版信息

PLoS One. 2012;7(10):e47032. doi: 10.1371/journal.pone.0047032. Epub 2012 Oct 8.

Abstract

The central neural pathways underlying the physiological coordination between thermoregulation and the controls of the wake-sleep behavior and cardiovascular function remain insufficiently understood. Growing evidence supports the involvement of hypocretin (orexin) peptides in behavioral, cardiovascular, and thermoregulatory functions. We investigated whether the effects of ambient temperature on wake-sleep behavior and cardiovascular control depend on the hypothalamic neurons that release hypocretin peptides. Orexin-ataxin3 transgenic mice with genetic ablation of hypocretin neurons (n = 11) and wild-type controls (n = 12) were instrumented with electrodes for sleep scoring and a telemetric blood pressure transducer. Simultaneous sleep and blood pressure recordings were performed on freely-behaving mice at ambient temperatures ranging between mild cold (20°C) and the thermoneutral zone (30°C). In both mouse groups, the time spent awake and blood pressure were higher at 20°C than at 30°C. The cold-related increase in blood pressure was significantly smaller in rapid-eye-movement sleep (REMS) than either in non-rapid-eye-movement sleep (NREMS) or wakefulness. Blood pressure was higher in wakefulness than either in NREMS or REMS at both ambient temperatures. This effect was significantly blunted in orexin-ataxin3 mice irrespective of ambient temperature and particularly during REMS. These data demonstrate that hypocretin neurons are not a necessary part of the central pathways that coordinate thermoregulation with wake-sleep behavior and cardiovascular control. Data also support the hypothesis that hypocretin neurons modulate changes in blood pressure between wakefulness and the sleep states. These concepts may have clinical implications in patients with narcolepsy with cataplexy, who lack hypocretin neurons.

摘要

目前对于体温调节与觉醒-睡眠行为和心血管功能控制之间的生理协调的中枢神经通路仍知之甚少。越来越多的证据表明,食欲肽(orexin)肽参与了行为、心血管和体温调节功能。我们研究了环境温度对觉醒-睡眠行为和心血管控制的影响是否取决于释放食欲肽肽的下丘脑神经元。使用电极进行睡眠评分和遥测血压换能器对具有遗传缺失食欲肽神经元的 orexin-ataxin3 转基因小鼠(n = 11)和野生型对照(n = 12)进行了仪器操作。在环境温度范围从轻度寒冷(20°C)到体温适中区(30°C)之间,对自由活动的小鼠进行了同时的睡眠和血压记录。在这两个小鼠组中,在 20°C 时的觉醒时间和血压均高于 30°C。在快速眼动睡眠(REMS)中,与非快速眼动睡眠(NREMS)或觉醒相比,与寒冷相关的血压升高幅度明显较小。在两种环境温度下,觉醒时的血压均高于 NREMS 或 REMS。在 orexin-ataxin3 小鼠中,这种作用无论环境温度如何,尤其是在 REMS 期间,都明显减弱。这些数据表明,食欲肽神经元不是协调体温调节与觉醒-睡眠行为和心血管控制的中枢通路的必要组成部分。这些数据还支持了这样一种假说,即食欲肽神经元调节了觉醒和睡眠状态之间血压的变化。这些概念在缺乏食欲肽神经元的猝倒性嗜睡症患者中可能具有临床意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c9c/3466227/4142155506f2/pone.0047032.g001.jpg

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