TGFβ‐mediated inhibition of hypodermal adipocyte progenitor differentiation promotes wound‐induced skin fibrosis

Author:

Yin Meimei1ORCID,Sun Lixiang12ORCID,Wu Shuai3,Ma Jinhang1,Zhang Wenlu1,Ji Xiaoxuan1,Tang Zhichong3,Zhang Xiaowei1ORCID,Yang Yichun2,Zhang Xinyuan1,Huang Jin‐wen4,Zheng Shaoluan5,Liu Wen‐jie1ORCID,Ji Chao4,Zhang Ling‐juan1ORCID

Affiliation:

1. State Key Laboratory of Cellular Stress Biology, School of Pharmaceutical Sciences Xiamen University Xiamen China

2. Central Laboratory, Zhongshan Hospital (Xiamen) Fudan University Xiamen China

3. State Key Laboratory of Cellular Stress Biology, School of Life Sciences Xiamen University Xiamen China

4. Department of Dermatology The First Affiliated Hospital of Fujian Medical University Fuzhou China

5. Department of Plastic and Reconstructive Surgery, Zhongshan Hospital (Xiamen) Fudan University Xiamen China

Abstract

AbstractAberrant activation of dermal fibroblasts during wound healing often leads to debilitating fibrotic changes in the skin, such as scleroderma and keloids. However, the underlying cellular and molecular mechanisms remain elusive. Here, we established a wound‐induced skin fibrosis (WISF) mouse model in mature adult mice, characterised by excessive deposition of collagen bundles, loss of dermal adipocytes, and enrichment of DPP4+Ly6A+THY1+ hypodermal interstitial adipocyte progenitors (HI‐APs) and pericytes, resembling human fibrotic skin diseases. This WISF model exhibited an age‐dependent gain of fibrotic characteristics, contrasting with the wound‐induced hair neogenesis observed in younger mice. Through comprehensive analyses of the WISF, we delineated a trajectory of fibroblast differentiation that originates from HI‐APs. These progenitors highly expressed several extracellular matrix (ECM) genes and exhibited a TGFβ pathway signature. TGFβ was identified as the key signal to inhibit the adipogenic potential and maintain the fibrogenic potential of dermal APs. Additionally, administering a TGFβ receptor inhibitor to wound scar reduced the abundance of ECM‐producing APs. Finally, analysis of human scleroderma skin tissues revealed a negative correlation between the expression of AP‐, ECM‐, and TGFβ pathway‐related genes and PPARG. Overall, this study establishes a wound‐induced skin fibrosis mouse model and demonstrates that TGFβ‐mediated blockage of HI‐AP differentiation is crucial for driving fibrotic pathology. Targeting HI‐APs and adipogenesis may provide novel avenues for developing disease‐modifying therapies for fibrotic skin diseases.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Publisher

Wiley

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