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Common and distinct regulation of human and mouse brown and beige adipose tissues: a promising therapeutic target for obesity

机译:人类和小鼠棕色和米色脂肪组织的共同而独特的调节:肥胖的有希望的治疗目标

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Obesity, which underlies various metabolic and cardiovascular diseases, is a growing public health challenge for which established therapies are inadequate. Given the current obesity epidemic, there is a pressing need for more novel therapeutic strategies that will help adult individuals to manage their weight. One promising therapeutic intervention for reducing obesity is to enhance energy expenditure. Investigations into human brown fat and the recently discovered beige/brite fat have galvanized intense research efforts during the past decade because of their pivotal roles in energy dissipation. In this review, we summarize the evolution of human brown adipose tissue (hBAT) research and discuss new in vivo methodologies for evaluating energy expenditure in patients. We highlight the differences between human and mouse BAT by integrating and comparing their cellular morphology, function, and gene expression profiles. Although great advances in hBAT biology have been achieved in the past decade, more cellular models are needed to acquire a better understanding of adipose-specific processes and molecular mechanisms. Thus, this review also describes the development of a human brown fat cell line, which could provide promising mechanistic insights into hBAT function, signal transduction, and development. Finally, we focus on the therapeutic potential and current limitations of hBAT as an anti-glycemic, anti-lipidemic, and weight loss-inducing ‘metabolic panacea’.
机译:肥胖是各种新陈代谢和心血管疾病的基础,是日益严重的公共卫生挑战,其既定治疗方法不足。考虑到当前的肥胖病流行,迫切需要更新颖的治疗策略,以帮助成年人控制体重。一种减少肥胖的有希望的治疗干预措施是增加能量消耗。在过去的十年中,对人类棕色脂肪和最近发现的米色/棕褐色脂肪的研究激起了广泛的研究努力,因为它们在能量消散中起着关键作用。在这篇综述中,我们总结了人类棕色脂肪组织(hBAT)研究的进展,并讨论了用于评估患者能量消耗的新体内方法。通过整合和比较它们的细胞形态,功能和基因表达谱,我们强调了人类和小鼠BAT之间的差异。尽管在过去十年中hBAT生物学取得了巨大进步,但仍需要更多的细胞模型来更好地了解脂肪特定的过程和分子机制。因此,本综述还描述了人类棕色脂肪细胞系的发展,这可能为hBAT功能,信号转导和发育提供有前途的机理见解。最后,我们重点研究hBAT作为抗血糖,抗血脂和体重减轻的“新陈代谢的灵丹妙药”的治疗潜力和当前局限性。

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