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运动期间,乳酸为人类大脑提供能量。

Lactate fuels the human brain during exercise.

作者信息

Quistorff Bjørn, Secher Niels H, Van Lieshout Johannes J

机构信息

Department of Biomedical Sciences, Rigshospitalet, Faculty of Health Sciences, University of Copenhagen, Copenhagen, Denmark.

出版信息

FASEB J. 2008 Oct;22(10):3443-9. doi: 10.1096/fj.08-106104. Epub 2008 Jul 24.

Abstract

The human brain releases a small amount of lactate at rest, and even an increase in arterial blood lactate during anesthesia does not provoke a net cerebral lactate uptake. However, during cerebral activation associated with exercise involving a marked increase in plasma lactate, the brain takes up lactate in proportion to the arterial concentration. Cerebral lactate uptake, together with glucose uptake, is larger than the uptake accounted for by the concomitant O(2) uptake, as reflected by the decrease in cerebral metabolic ratio (CMR) [the cerebral molar uptake ratio O(2)/(glucose+(1/2) lactate)] from a resting value of 6 to <2. The CMR also decreases when plasma lactate is not increased, as during prolonged exercise, cerebral activation associated with mental activity, or exposure to a stressful situation. The CMR decrease is prevented with combined beta(1)- and beta(2)-adrenergic receptor blockade but not with beta(1)-adrenergic blockade alone. Also, CMR decreases in response to epinephrine, suggesting that a beta(2)-adrenergic receptor mechanism enhances glucose and perhaps lactate transport across the blood-brain barrier. The pattern of CMR decrease under various forms of brain activation suggests that lactate may partially replace glucose as a substrate for oxidation. Thus, the notion of the human brain as an obligatory glucose consumer is not without exceptions.

摘要

人类大脑在静息状态下会释放少量乳酸,甚至麻醉期间动脉血乳酸水平升高也不会引起大脑对乳酸的净摄取。然而,在与运动相关的大脑激活过程中,血浆乳酸显著增加,大脑会按动脉浓度比例摄取乳酸。大脑对乳酸的摄取,连同对葡萄糖的摄取,大于伴随氧摄取所解释的摄取量,这表现为大脑代谢率(CMR)[大脑摩尔摄取率:氧/(葡萄糖 +(1/2)乳酸)]从静息值6降至<2。当血浆乳酸未增加时,如在长时间运动、与精神活动相关的大脑激活或暴露于应激状态期间,CMR也会降低。联合β1和β2肾上腺素能受体阻断可防止CMR降低,但单独使用β1肾上腺素能阻断则不能。此外,CMR会因肾上腺素而降低,这表明β2肾上腺素能受体机制可增强葡萄糖以及可能还有乳酸通过血脑屏障的转运。在各种形式的大脑激活下CMR降低的模式表明,乳酸可能部分替代葡萄糖作为氧化底物。因此,认为人类大脑是绝对的葡萄糖消耗者这一观念并非毫无例外。

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