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人类锁骨上棕色脂肪的产热能力与冷刺激下大脑的葡萄糖代谢

Thermogenic Capacity of Human Supraclavicular Brown Fat and Cold-Stimulated Brain Glucose Metabolism.

作者信息

U-Din Mueez, Rebelos Eleni, Saari Teemu, Niemi Tarja, Kuellmer Katharina, Eskola Olli, Fromme Tobias, Rajander Johan, Taittonen Markku, Klingenspor Martin, Nuutila Pirjo, Nummenmaa Lauri, Virtanen Kirsi A

机构信息

Turku PET Centre, Turku University Hospital, 20520 Turku, Finland.

Turku PET Centre, University of Turku, 20520 Turku, Finland.

出版信息

Metabolites. 2023 Mar 5;13(3):387. doi: 10.3390/metabo13030387.

Abstract

Human brain metabolism is susceptible to temperature changes. It has been suggested that the supraclavicular brown adipose tissue (BAT) protects the brain from these fluctuations by regulating heat production through the presence of uncoupling protein 1 (UCP-1). It remains unsolved whether inter-individual variation in the expression of , which represents the thermogenic capacity of the supraclavicular BAT, is linked with brain metabolism during cold stress. Ten healthy human participants underwent F-FDG PET scanning of the brain under cold stimulus to determine brain glucose uptake (BGU). On a separate day, an excision biopsy of the supraclavicular fat-the fat proximal to the carotid arteries supplying the brain with warm blood-was performed to determine the mRNA expression of the thermogenic protein . Expression of in supraclavicular BAT was directly related to the whole brain glucose uptake rate determined under cold stimulation ( = 0.71, = 0.03). In sub-compartmental brain analysis, expression in supraclavicular BAT was directly related to cold-stimulated glucose uptake rates in the hypothalamus, medulla, midbrain, limbic system, frontal lobe, occipital lobe, and parietal lobe (all ≥ 0.67, < 0.05). These relationships were independent of body mass index and age. When analysing gene expressions of BAT secretome, we found a positive correlation between cold-stimulated BGU and . These findings provide evidence of functional links between brain metabolism under cold stimulation and and expressions in BAT in humans. More research is needed to evaluate the importance of these findings in clinical outcomes, for instance, in examining the supporting role of BAT in cognitive functions under cold stress.

摘要

人类大脑代谢易受温度变化影响。有人提出,锁骨上棕色脂肪组织(BAT)通过解偶联蛋白1(UCP - 1)调节产热,从而保护大脑免受这些波动的影响。代表锁骨上BAT产热能力的[具体蛋白名称未给出]表达的个体间差异是否与冷应激期间的大脑代谢相关,这一问题仍未解决。十名健康人类参与者在冷刺激下接受了大脑的F - FDG PET扫描,以确定脑葡萄糖摄取(BGU)。在另一天,对锁骨上脂肪(即向大脑供应温血的颈动脉近端的脂肪)进行切除活检,以确定产热蛋白的mRNA表达。锁骨上BAT中[具体蛋白名称未给出]的表达与冷刺激下测定的全脑葡萄糖摄取率直接相关(r = 0.71,P = 0.03)。在脑亚区分析中,锁骨上BAT中[具体蛋白名称未给出]的表达与下丘脑、延髓、中脑、边缘系统、额叶、枕叶和顶叶的冷刺激葡萄糖摄取率直接相关(所有r≥0.67,P < 0.05)。这些关系独立于体重指数和年龄。在分析BAT分泌组的基因表达时,我们发现冷刺激的BGU与[具体蛋白名称未给出]之间存在正相关。这些发现为人类冷刺激下的大脑代谢与BAT中[具体蛋白名称未给出]和[另一具体蛋白名称未给出]表达之间的功能联系提供了证据。需要更多研究来评估这些发现在临床结果中的重要性,例如,研究BAT在冷应激下对认知功能的支持作用。

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