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与睡眠相关的大脑激活不会增加血脑屏障对葡萄糖的通透性。

Sleep-related brain activation does not increase the permeability of the blood-brain barrier to glucose.

作者信息

Silvani Alessandro, Asti Valentina, Berteotti Chiara, Bojic Tijana, Cianci Tullia, Ferrari Vera, Franzini Carlo, Lenzi Pierluigi, Zoccoli Giovanna

机构信息

Dipartimento di Fisiologia Umana e Generale, Università di Bologna, Bologna, Italy.

出版信息

J Cereb Blood Flow Metab. 2005 Aug;25(8):990-7. doi: 10.1038/sj.jcbfm.9600100.

Abstract

We compared blood-brain barrier (BBB) permeability to glucose between quiet wakefulness and rapid-eye-movement (REM) sleep to assess whether changes in BBB permeability play a role in coupling glucose supply to the physiologic metabolic needs of the brain. Male Sprague-Dawley rats were prepared with electrodes for wake-sleep state scoring and with arterial and venous catheters. Using the single-pass, dual-label indicator method, unidirectional glucose extraction by the brain and cerebral blood flow (CBF) were simultaneously measured during states of quiet wakefulness (n=12) or REM sleep (n=7). The product of BBB surface area and permeability to glucose (PS product) was computed in each state. During REM sleep, CBF significantly exceeded that during quiet wakefulness in all regions but the cerebellum, whereas the difference in the PS product between quiet wakefulness and REM sleep was not statistically significant in any brain region. In the brain as a whole, CBF significantly increased 29% from quiet wakefulness to REM sleep, while a nonsignificant 0.8% increase occurred in the PS product. During REM sleep, the increase in CBF indicates a higher rate of brain glucose consumption than in quiet wakefulness, given the tight flow-metabolism coupling in the brain. Therefore, these data show that modulation of BBB permeability to glucose is not a mechanism that provides 'energy on demand' during the physiologic brain activation characterising REM sleep.

摘要

我们比较了安静觉醒状态和快速眼动(REM)睡眠状态下血脑屏障(BBB)对葡萄糖的通透性,以评估BBB通透性的变化是否在将葡萄糖供应与大脑的生理代谢需求相耦合中发挥作用。对雄性Sprague-Dawley大鼠植入电极用于睡眠-觉醒状态评分,并插入动脉和静脉导管。采用单通道、双标记指示剂法,在安静觉醒状态(n = 12)或REM睡眠状态(n = 7)下同时测量大脑对葡萄糖的单向摄取和脑血流量(CBF)。计算每种状态下BBB表面积与葡萄糖通透性的乘积(PS乘积)。在REM睡眠期间,除小脑外,所有区域的CBF均显著超过安静觉醒期间,而安静觉醒和REM睡眠之间PS乘积的差异在任何脑区均无统计学意义。在整个大脑中,从安静觉醒到REM睡眠,CBF显著增加了29%,而PS乘积则无显著增加,仅增加了0.8%。鉴于大脑中血流与代谢的紧密耦合,在REM睡眠期间,CBF的增加表明大脑葡萄糖消耗率高于安静觉醒状态。因此,这些数据表明,在REM睡眠所特有的生理性大脑激活过程中,调节BBB对葡萄糖的通透性并非提供“按需能量”的机制。

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