脂肪组织
产热
内分泌学
内科学
生物
白色脂肪组织
FGF21型
平衡
代谢综合征
褐色脂肪组织
肥胖
医学
成纤维细胞生长因子
受体
作者
Kyoung-Han Kim,Yun Hye Kim,Joe Eun Son,Ju Hee Lee,Sarah Kim,Min Seon Choe,Joon Ho Moon,Jian Zhong,Kiya Fu,Florine Lenglin,Jeong-Ah Yoo,Philip J. Bilan,Amira Klip,András Nagy,Jae-Ryong Kim,Jin Gyoon Park,Samer M. I. Hussein,Kyung-Oh Doh,Chi-chung Hui,Hoon‐Ki Sung
出处
期刊:Cell Research
[Springer Nature]
日期:2017-10-17
卷期号:27 (11): 1309-1326
被引量:196
摘要
Intermittent fasting (IF), a periodic energy restriction, has been shown to provide health benefits equivalent to prolonged fasting or caloric restriction. However, our understanding of the underlying mechanisms of IF-mediated metabolic benefits is limited. Here we show that isocaloric IF improves metabolic homeostasis against diet-induced obesity and metabolic dysfunction primarily through adipose thermogenesis in mice. IF-induced metabolic benefits require fasting-mediated increases of vascular endothelial growth factor (VEGF) expression in white adipose tissue (WAT). Furthermore, periodic adipose-VEGF overexpression could recapitulate the metabolic improvement of IF in non-fasted animals. Importantly, fasting and adipose-VEGF induce alternative activation of adipose macrophage, which is critical for thermogenesis. Human adipose gene analysis further revealed a positive correlation of adipose VEGF-M2 macrophage-WAT browning axis. The present study uncovers the molecular mechanism of IF-mediated metabolic benefit and suggests that isocaloric IF can be a preventive and therapeutic approach against obesity and metabolic disorders.
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