Myofibroblast proliferation and heterogeneity are supported by macrophages during skin repair
Author(s) -
Brett A. Shook,
Renee R. Wasko,
Guillermo C. Rivera-Gonzalez,
Emilio Salazar-Gatzimas,
Francesc LópezGiráldez,
Biraja C. Dash,
Andrés Rojas,
Krystal D. Aultman,
Rachel K. Zwick,
Vivian Lei,
Jack L. Arbiser,
Kathryn MillerJensen,
Damon A. Clark,
Henry C. Hsia,
Valerie Horsley
Publication year - 2018
Publication title -
science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 12.556
H-Index - 1186
eISSN - 1095-9203
pISSN - 0036-8075
DOI - 10.1126/science.aar2971
Subject(s) - myofibroblast , extracellular matrix , fibrosis , fibroblast , wound healing , microbiology and biotechnology , macrophage , skin repair , pathology , biology , cancer research , immunology , medicine , cell culture , in vitro , genetics
During tissue repair, myofibroblasts produce extracellular matrix (ECM) molecules for tissue resilience and strength. Altered ECM deposition can lead to tissue dysfunction and disease. Identification of distinct myofibroblast subsets is necessary to develop treatments for these disorders. We analyzed profibrotic cells during mouse skin wound healing, fibrosis, and aging and identified distinct subpopulations of myofibroblasts, including adipocyte precursors (APs). Multiple mouse models and transplantation assays demonstrate that proliferation of APs but not other myofibroblasts is activated by CD301b-expressing macrophages through insulin-like growth factor 1 and platelet-derived growth factor C. With age, wound bed APs and differential gene expression between myofibroblast subsets are reduced. Our findings identify multiple fibrotic cell populations and suggest that the environment dictates functional myofibroblast heterogeneity, which is driven by fibroblast-immune interactions after wounding.
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