Pharmacological treatment with FGF21 strongly improves plasma cholesterol metabolism to reduce atherosclerosis

内科学 FGF21型 内分泌学 医学 药理学 胆固醇 新陈代谢 脂质代谢 心脏病学 生物 生物信息学 成纤维细胞生长因子 受体
作者
Cong Liu,Milena Schönke,Enchen Zhou,Zhuang Li,Sander Kooijman,Mariëtte R. Boon,Mikael Larsson,Kristina Wallenius,Niek Dekker,Louise Barlind,Xiaorong Peng,Yanan Wang,Patrick C.N. Rensen
出处
期刊:Cardiovascular Research [Oxford University Press]
卷期号:118 (2): 489-502 被引量:54
标识
DOI:10.1093/cvr/cvab076
摘要

Abstract Aims Fibroblast growth factor (FGF) 21, a key regulator of energy metabolism, is currently evaluated in humans for treatment of type 2 diabetes and non-alcoholic steatohepatitis. However, the effects of FGF21 on cardiovascular benefit, particularly on lipoprotein metabolism in relation to atherogenesis, remain elusive. Methods and results Here, the role of FGF21 in lipoprotein metabolism in relation to atherosclerosis development was investigated by pharmacological administration of a half-life extended recombinant FGF21 protein to hypercholesterolaemic APOE*3-Leiden.CETP mice, a well-established model mimicking atherosclerosis initiation and development in humans. FGF21 reduced plasma total cholesterol, explained by a reduction in non-HDL-cholesterol. Mechanistically, FGF21 promoted brown adipose tissue (BAT) activation and white adipose tissue (WAT) browning, thereby enhancing the selective uptake of fatty acids from triglyceride-rich lipoproteins into BAT and into browned WAT, consequently accelerating the clearance of the cholesterol-enriched remnants by the liver. In addition, FGF21 reduced body fat, ameliorated glucose tolerance and markedly reduced hepatic steatosis, related to up-regulated hepatic expression of genes involved in fatty acid oxidation and increased hepatic VLDL-triglyceride secretion. Ultimately, FGF21 largely decreased atherosclerotic lesion area, which was mainly explained by the reduction in non-HDL-cholesterol as shown by linear regression analysis, decreased lesion severity, and increased atherosclerotic plaque stability index. Conclusion FGF21 improves hypercholesterolaemia by accelerating triglyceride-rich lipoprotein turnover as a result of activating BAT and browning of WAT, thereby reducing atherosclerotic lesion severity and increasing atherosclerotic lesion stability index. We have thus provided additional support for the clinical use of FGF21 in the treatment of atherosclerotic cardiovascular disease.
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