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首页> 外文期刊>Scientific reports. >FGF21 does not require interscapular brown adipose tissue and improves liver metabolic profile in animal models of obesity and insulin-resistance
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FGF21 does not require interscapular brown adipose tissue and improves liver metabolic profile in animal models of obesity and insulin-resistance

机译:FGF21不需要肩inter间棕色脂肪组织,并能改善肥胖和胰岛素抵抗动物模型中的肝脏代谢状况

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FGF21 is a key metabolic regulator modulating physiological processes and its pharmacological administration improves metabolic profile in preclinical species and humans. We used native-FGF21 and a long-acting FGF21 (PF-05231023), to determine the contribution of liver and brown adipose tissue (BAT) towards metabolic improvements in Zucker rats and DIO mice (DIOs). FGF21 improved glucose tolerance and liver insulin sensitivity in Zuckers without affecting BW and improved liver function by decreased lipogenesis, increased fatty acid oxidation and improved insulin signaling. Through detailed lipidomic analyses of liver metabolites in DIOs, we demonstrate that FGF21 favorably alters liver metabolism. We observed a dose-dependent increase of [18F]-FDG-glucose uptake in interscapular BAT (iBAT) of DIOs upon FGF21 administration. Upon excision of iBAT (X-BAT) and administration of FGF21 to mice housed at 80?°F or 72?°F, the favorable effects of FGF21 on BW and glucose excursion were fully retained in both sham and X-BAT animals. Taken together, we demonstrate the liver as an organ that integrates the actions of FGF21 and provide metabolic benefits of FGF21 in Zucker rats and DIOs. Finally, our data demonstrates iBAT does not play a role in mediating favorable metabolic effects of FGF21 administration in DIOs housed at 80?°F or 72?°F.
机译:FGF21是调节生理过程的关键代谢调节剂,其药理作用可改善临床前物种和人类的代谢状况。我们使用天然FGF21和长效FGF21(PF-05231023)来确定肝脏和棕色脂肪组织(BAT)对Zucker大鼠和DIO小鼠(DIO)代谢改善的贡献。 FGF21通过减少脂肪生成,增加脂肪酸氧化和改善胰岛素信号传导,改善了Zuckers的葡萄糖耐量和肝胰岛素敏感性,而不会影响体重和改善肝功能。通过对DIOs中肝脏代谢物的详细脂质组学分析,我们证明FGF21有利地改变了肝脏的代谢。我们观察到FGF21给药后DIO的肩inter间BAT(iBAT)中[ 18 F] -FDG-葡萄糖摄取的剂量依赖性增加。切除iBAT(X-BAT)并向饲养在80?F或72?F的小鼠施用FGF21后,假手术和X-BAT动物均充分保留了FGF21对体重和葡萄糖偏移的有利作用。综上所述,我们证明了肝脏是整合FGF21作用的器官,并在Zucker大鼠和DIO中提供了FGF21的代谢益处。最后,我们的数据表明,iBAT在80°F或72°F的DIO中不介导FGF21给药的有利代谢作用。

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