甜蜜科学利用光衍射断层扫描探索果糖和葡萄糖对棕色脂肪细胞分化的影响

Pooja Anantha, Xiangdong Wu, Salaheldeen Elsaid, Piyush Raj, Ishan Barman, Sui Seng Tee
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摘要

棕色脂肪组织(BAT)的产热能力因其调节全身能量平衡的潜力而备受关注。需要严格控制棕色脂肪组织的大小和功能,以防止由于非颤抖性产热导致能量耗散而失去代谢平衡。虽然控制产热的脂肪细胞内在机制至关重要,但人们对 BAT 微环境作用的认识也在不断提高。例如,膳食摄入导致的循环己糖变化已被证明会影响脂肪细胞的功能。在这里,我们发现当果糖被用作唯一碳源时,小鼠 BAT 前脂肪细胞的新陈代谢会受到影响。同样,仅含果糖的分化培养基产生的成熟脂肪细胞脂滴较少,同时脂肪生成基因也会减少。在人类 BAT 前脂肪细胞中也观察到了这些缺陷,最先进的光学成像模式显示,在仅含果糖的培养基中,细胞总质量和脂质质量都有所下降。总之,代谢微环境对 BAT 的生长和功能有重大影响,对饮食的作用有潜在影响,可能会减轻 BAT 靶向疗法的疗效。
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Sweet science: Exploring the impact of fructose and glucose on brown adipocyte differentiation using optical diffraction tomography
The thermogenic capacity of brown adipose tissue (BAT) has garnered much attention for its potential to regulate systemic energy balance. BAT depot size and function need to be tightly to prevent loss of metabolic homeostasis due to energy dissipation via non-shivering thermogenesis. While adipocyte-intrinsic mechanisms controlling thermogenesis are critical, an increasing appreciation for the role of the BAT microenvironment is emerging. For example, changes in circulating hexoses due to dietary intake have shown to impact BAT function. Here, we show that murine BAT preadipocytes metabolism is impacted when fructose is used as the sole carbon source. Similarly, differentiation medium containing only fructose yield mature adipocytes with fewer lipid droplets, with a concomitant decrease in adipogenic genes. These deficiencies are also observed in human BAT preadipocytes, where cutting-edge optical imaging modalities show a decrease in total cell mass and lipid mass in fructose only medium. Taken together, the metabolic microenvironment significantly impacts BAT growth and function, with implications for the role of diets potentially mitigating the efficacy of BAT-targeted therapies.
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