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HIF-1α in Myeloid Cells Promotes Adipose Tissue Remodeling Toward Insulin Resistance

Authors :
Kazuyuki Tobe
Kiyoshi Takatsu
Aminuddin Aminuddin
Yasuharu Watanabe
Koizumi Keiichi
Michihiro Matsumoto
Akiko Takikawa
Arshad Mahmood
Masashi Ikutani
Keisuke Okabe
Takashi Nakagawa
Kumiko Saeki
Shiho Fujisaka
Masakiyo Sasahara
Nobuhito Goda
Yoshiko Igarashi
Satoko Senda
Johji Imura
Tomonobu Kado
Isao Usui
Koichi Tsuneyama
Yoshinori Nagai
Allah Nawaz
Seiji Yamamoto
Source :
Diabetes. 65:3649-3659
Publication Year :
2016
Publisher :
American Diabetes Association, 2016.

Abstract

Adipose tissue hypoxia is an important feature of pathological adipose tissue expansion. Hypoxia-inducible factor-1α (HIF-1α) in adipocytes reportedly induces oxidative stress and fibrosis, rather than neoangiogenesis via vascular endothelial growth factor (VEGF)-A. We previously reported that macrophages in crown-like structures (CLSs) are both hypoxic and inflammatory. In the current study, we examined how macrophage HIF-1α is involved in high-fat diet (HFD)–induced inflammation, neovascularization, hypoxia, and insulin resistance using mice with myeloid cell–specific HIF-1α deletion that were fed an HFD. Myeloid cell–specific HIF-1α gene deletion protected against HFD-induced inflammation, CLS formation, poor vasculature development in the adipose tissue, and systemic insulin resistance. Despite a reduced expression of Vegfa in epididymal white adipose tissue (eWAT), the preadipocytes and endothelial cells of HIF-1α–deficient mice expressed higher levels of angiogenic factors, including Vegfa, Angpt1, Fgf1, and Fgf10 in accordance with preferable eWAT remodeling. Our in vitro study revealed that lipopolysaccharide-treated bone marrow–derived macrophages directly inhibited the expression of angiogenic factors in 3T3-L1 preadipocytes. Thus, macrophage HIF-1α is involved not only in the formation of CLSs, further enhancing the inflammatory responses, but also in the inhibition of neoangiogenesis in preadipocytes. We concluded that these two pathways contribute to the obesity-related physiology of pathological adipose tissue expansion, thus causing systemic insulin resistance.

Details

ISSN :
1939327X and 00121797
Volume :
65
Database :
OpenAIRE
Journal :
Diabetes
Accession number :
edsair.doi.dedup.....8e898efda30b7d2158d7f38296f45d92
Full Text :
https://doi.org/10.2337/db16-0012