Optogenetics Sheds Light on Brown and Beige Adipocytes.

Aaron Clifford Brown
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Abstract

Excessive food intake leads to lipid accumulation in white adipose tissue, triggering inflammation, cellular stress, insulin resistance, and metabolic syndrome. In contrast, the dynamic energy expenditure and heat generation of brown and beige adipose tissue, driven by specialized mitochondria, render it an appealing candidate for therapeutic strategies aimed at addressing metabolic disorders. This review examines the therapeutic potential of brown and beige adipocytes for obesity and metabolic disorders, focusing on recent studies that employ optogenetics for thermogenesis control in these cells. The findings delve into the mechanisms underlying UCP1-dependent and UCP1-independent thermogenesis and how optogenetic approaches can be used to precisely modulate energy expenditure and induce thermogenesis. The convergence of adipocyte biology and optogenetics presents an exciting frontier in combating metabolic disorders and advancing our understanding of cellular regulation and energy balance.

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光遗传学揭示棕色和米色脂肪细胞。
过量的食物摄入会导致白色脂肪组织中的脂质堆积,引发炎症、细胞应激、胰岛素抵抗和代谢综合征。相比之下,由专门的线粒体驱动的棕色和米色脂肪组织的动态能量消耗和热量产生,使其成为治疗代谢紊乱的有吸引力的候选治疗策略。这篇综述考察了棕色和米色脂肪细胞对肥胖和代谢紊乱的治疗潜力,重点是最近利用光遗传学控制这些细胞产热的研究。研究结果深入探讨了UCP1依赖性和UCP1非依赖性产热的机制,以及光遗传学方法如何用于精确调节能量消耗和诱导产热。脂肪细胞生物学和光遗传学的融合为对抗代谢紊乱和推进我们对细胞调节和能量平衡的理解提供了一个令人兴奋的前沿。
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