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睡眠片段化会改变大脑能量代谢,而不会改变海马体对新异刺激的电生理反应。

Sleep fragmentation alters brain energy metabolism without modifying hippocampal electrophysiological response to novelty exposure.

作者信息

Baud Maxime O, Parafita Julia, Nguyen Audrey, Magistretti Pierre J, Petit Jean-Marie

机构信息

LNDC, Brain Mind Institute, Faculté des Sciences de la Vie, Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.

Department of Neurology, UCSF, San Francisco, CA, USA.

出版信息

J Sleep Res. 2016 Oct;25(5):583-590. doi: 10.1111/jsr.12419. Epub 2016 May 3.

Abstract

Sleep is viewed as a fundamental restorative function of the brain, but its specific role in neural energy budget remains poorly understood. Sleep deprivation dampens brain energy metabolism and impairs cognitive functions. Intriguingly, sleep fragmentation, despite normal total sleep duration, has a similar cognitive impact, and in this paper we ask the question of whether it may also impair brain energy metabolism. To this end, we used a recently developed mouse model of 2 weeks of sleep fragmentation and measured 2-deoxy-glucose uptake and glycogen, glucose and lactate concentration in different brain regions. In order to homogenize mice behaviour during metabolic measurements, we exposed them to a novel environment for 1 h. Using an intra-hippocampal electrode, we first showed that hippocampal electroencephalograph (EEG) response to exploration was unaltered by 1 or 14 days of sleep fragmentation. However, after 14 days, sleep fragmented mice exhibited a lower uptake of 2-deoxy-glucose in cortex and hippocampus and lower cortical lactate levels than control mice. Our results suggest that long-term sleep fragmentation impaired brain metabolism to a similar extent as total sleep deprivation without affecting the neuronal responsiveness of hippocampus to a novel environment.

摘要

睡眠被视为大脑的一项基本恢复功能,但其在神经能量预算中的具体作用仍知之甚少。睡眠剥夺会抑制大脑能量代谢并损害认知功能。有趣的是,尽管总睡眠时间正常,但睡眠片段化也会产生类似的认知影响,在本文中,我们提出一个问题,即它是否也会损害大脑能量代谢。为此,我们使用了一种最近开发的、经历2周睡眠片段化的小鼠模型,并测量了不同脑区的2-脱氧葡萄糖摄取量以及糖原、葡萄糖和乳酸浓度。为了在代谢测量期间使小鼠行为同质化,我们将它们置于新环境中1小时。使用海马内电极,我们首先表明,1天或14天的睡眠片段化并未改变海马脑电图(EEG)对探索的反应。然而,14天后,与对照小鼠相比,睡眠片段化小鼠在皮质和海马中的2-脱氧葡萄糖摄取量较低,皮质乳酸水平也较低。我们的结果表明,长期睡眠片段化对大脑代谢的损害程度与完全睡眠剥夺相似,且不影响海马对新环境的神经元反应性。

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