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Cold acclimation recruits human brown fat and increases nonshivering thermogenesis

机译:冷适应会吸收人的棕色脂肪并增加无颤抖的生热作用

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摘要

In recent years, it has been shown that humans have active brown adipose tissue (BAT) depots, raising the question of whether activation and recruitment of BAT can be a target to counterbalance the current obesity pandemic. Here, we show that a 10-day cold acclimation protocol in humans increases BAT activity in parallel with an increase in nonshivering thermogenesis (NST). No sex differences in BAT presence and activity were found either before or after cold acclimation. Respiration measurements in permeabilized fibers and isolated mitochondria revealed no significant contribution of skeletal muscle mitochondrial uncoupling to the increased NST. Based on cell-specific markers and on uncoupling protein-1 (characteristic of both BAT and beige/brite cells), this study did not show “browning” of abdominal subcutaneous white adipose tissue upon cold acclimation. The observed physiological acclimation is in line with the subjective changes in temperature sensation; upon cold acclimation, the subjects judged the environment warmer, felt more comfortable in the cold, and reported less shivering. The combined results suggest that a variable indoor environment with frequent cold exposures might be an acceptable and economic manner to increase energy expenditure and may contribute to counteracting the current obesity epidemic.
机译:近年来,已经显示出人类具有活跃的棕色脂肪组织(BAT)库,这引发了一个问题,即BAT的激活和募集是否可以作为抵消当前肥胖病大流行的目标。在这里,我们显示了在人类中进行为期10天的冷驯化协议会增加BAT的活动,同时增加非颤抖的生热作用(NST)。在冷驯化之前或之后,未发现BAT存在和活动的性别差异。透化纤维和孤立的线粒体中的呼吸测量结果显示,骨骼肌线粒体解偶联对NST增加无明显贡献。基于细胞特异性标记物和解偶联蛋白-1(BAT和米色/ brite细胞的特征),该研究未显示冷驯化后腹部皮下白色脂肪组织“变褐”。观察到的生理适应与温度感觉的主观变化一致;在冷适应后,受试者判断环境更温暖,在寒冷中感觉更舒适,并且发抖更少。综合结果表明,经常暴露于寒冷环境中的可变室内环境可能是增加能源消耗的可接受且经济的方式,并且可能有助于抵制当前的肥胖病流行。

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