Intracerebral Adenosine During Sleep Deprivation: A Meta-Analysis and New Experimental Data.

Q2 Biochemistry, Genetics and Molecular Biology Journal of Circadian Rhythms Pub Date : 2018-10-09 DOI:10.5334/jcr.171
Cathalijn H C Leenaars, Sergey A Savelyev, Stevie Van der Mierden, Ruud N J M A Joosten, Maurice Dematteis, Tarja Porkka-Heiskanen, Matthijs G P Feenstra
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引用次数: 22

Abstract

The neuroregulator adenosine is involved in sleep-wake control. Basal forebrain (BF) adenosine levels increase during sleep deprivation. Only a few studies have addressed the effect of sleep deprivation on extracellular adenosine concentrations in other brain regions. In this paper, we describe a microdialysis experiment as well as a meta-analysis of published data. The 64 h microdialysis experiment determined the extracellular adenosine and adenosine monophosphate (AMP) concentrations in the medial prefrontal cortex of rats before, during and after 12 h of sleep deprivation by forced locomotion. The meta-analysis comprised published sleep deprivation animal experiments measuring adenosine by means of microdialysis. In the animal experiment, the overall median adenosine concentration was 0.36 nM and ranged from 0.004 nM to 27 nM. No significant differences were observed between the five conditions: 12 h of wash-out, baseline light phase, baseline dark phase, 12 h of sleep deprivation and 12 h of subsequent recovery. The overall median AMP concentration was 0.10 nM and ranged from 0.001 nM to 7.56 nM. Median AMP concentration increased during sleep deprivation (T = 47; p = 0.047) but normalised during subsequent recovery. The meta-analysis indicates that BF dialysate adenosine concentrations increase with 74.7% (95% CI: 54.1-95.3%) over baseline during sleep deprivation. Cortex dialysate adenosine concentrations during sleep deprivation were so far only reported by 2 publications. The increase in adenosine during sleep deprivation might be specific to the BF. At this stage, the evidence for adenosine levels in other brain regions is based on single experiments and insufficient for generalised conclusions. Further experiments are currently still warranted.

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睡眠剥夺时脑内腺苷:一项荟萃分析和新的实验数据。
神经调节剂腺苷参与睡眠-觉醒控制。睡眠剥夺时基底前脑(BF)腺苷水平升高。只有少数研究涉及睡眠剥夺对大脑其他区域胞外腺苷浓度的影响。在本文中,我们描述了一个微透析实验以及对已发表数据的荟萃分析。64 h微透析实验测定大鼠在强迫运动剥夺睡眠前、睡眠中、睡眠后12 h内前额叶内侧皮质细胞外腺苷和单磷酸腺苷(AMP)浓度。荟萃分析包括发表的睡眠剥夺动物实验,通过微透析测量腺苷。动物实验中,腺苷总中位浓度为0.36 nM,范围为0.004 nM ~ 27 nM。12小时的洗脱期、基线亮期、基线暗期、12小时的睡眠剥夺和随后12小时的恢复这5种情况之间没有显著差异。AMP的总中位浓度为0.10 nM,范围为0.001 nM至7.56 nM。睡眠剥夺时AMP中位浓度升高(T = 47;P = 0.047),但在随后的恢复中正常化。荟萃分析表明,在睡眠剥夺期间,BF透析液腺苷浓度比基线增加74.7% (95% CI: 54.1-95.3%)。睡眠剥夺期间皮质透析液腺苷浓度的研究迄今仅有2篇文献报道。睡眠剥夺期间腺苷的增加可能是BF特有的。在这个阶段,关于其他脑区腺苷水平的证据是基于单一的实验,不足以得出普遍的结论。目前还需要进一步的实验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Circadian Rhythms
Journal of Circadian Rhythms Biochemistry, Genetics and Molecular Biology-Physiology
CiteScore
7.10
自引率
0.00%
发文量
0
审稿时长
12 weeks
期刊介绍: Journal of Circadian Rhythms is an Open Access, peer-reviewed online journal that publishes research articles dealing with circadian and nycthemeral (daily) rhythms in living organisms, including processes associated with photoperiodism and daily torpor. Journal of Circadian Rhythms aims to include both basic and applied research at any level of biological organization (molecular, cellular, organic, organismal, and populational). Studies of daily rhythms in environmental factors that directly affect circadian rhythms are also pertinent to the journal"s mission.
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