PDGFRβ Regulates Adipose Tissue Expansion and Glucose Metabolism via Vascular Remodeling in Diet-Induced Obesity

Author:

Onogi Yasuhiro1,Wada Tsutomu1,Kamiya Chie1,Inata Kento1,Matsuzawa Takatoshi1,Inaba Yuka23,Kimura Kumi2,Inoue Hiroshi23,Yamamoto Seiji4,Ishii Yoko4,Koya Daisuke5,Tsuneki Hiroshi1,Sasahara Masakiyo4,Sasaoka Toshiyasu1

Affiliation:

1. Department of Clinical Pharmacology, University of Toyama, Toyama, Japan

2. Department of Physiology and Metabolism, Brain/Liver Interface Medicine Research Center, Institute for Frontier Science Initiative, Kanazawa University, Ishikawa, Japan

3. Metabolism and Nutrition Research Unit, Innovative Integrated Bio-Research Core, Institute for Frontier Science Initiative, Kanazawa University, Ishikawa, Japan

4. Department of Pathology, University of Toyama, Toyama, Japan

5. Department of Internal Medicine, Kanazawa Medical University, Ishikawa, Japan

Abstract

Platelet-derived growth factor (PDGF) is a key factor in angiogenesis; however, its role in adult obesity remains unclear. In order to clarify its pathophysiological role, we investigated the significance of PDGF receptor β (PDGFRβ) in adipose tissue expansion and glucose metabolism. Mature vessels in the epididymal white adipose tissue (eWAT) were tightly wrapped with pericytes in normal mice. Pericyte desorption from vessels and the subsequent proliferation of endothelial cells were markedly increased in the eWAT of diet-induced obese mice. Analyses with flow cytometry and adipose tissue cultures indicated that PDGF-B caused the detachment of pericytes from vessels in a concentration-dependent manner. M1-macrophages were a major type of cells expressing PDGF-B in obese adipose tissue. In contrast, pericyte detachment was attenuated and vascularity within eWAT was reduced in tamoxifen-inducible conditional Pdgfrb-knockout mice with decreases in adipocyte size and chronic inflammation. Furthermore, Pdgfrb-knockout mice showed enhanced energy expenditure. Consequently, diet-induced obesity and the associated deterioration of glucose metabolism in wild-type mice were absent in Pdgfrb-knockout mice. Therefore, PDGF-B–PDGFRβ signaling plays a significant role in the development of adipose tissue neovascularization and appears to be a fundamental target for the prevention of obesity and type 2 diabetes.

Funder

Promotion of Science Grants-in-Aid for Scientific Research

Japan Diabetes Foundation

Takeda Science Foundation

Suzuken Memorial Foundation

The Hokuriku Bank Grant-in-Aid for Young Scientists

Foundation for Growth Science

Promotion of Science Grants-in-Aid for Scientific Research (KAKENHI)

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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