Senescent skeletal muscle fibroadipogenic progenitors recruit and promote M2 polarization of macrophages

Author:

Zhang Xu123ORCID,Ng Yan Er1,Chini Lucas C. S.1,Heeren Amanda A.1,White Thomas A.1,Li Hao2,Huang Haojie2,Doolittle Madison L.14,Khosla Sundeep14ORCID,LeBrasseur Nathan K.135ORCID

Affiliation:

1. Robert and Arlene Kogod Center on Aging Mayo Clinic Rochester Minnesota USA

2. Department of Biochemistry and Molecular Biology Mayo Clinic Rochester Minnesota USA

3. Paul F. Glenn Center for Biology of Aging Research at Mayo Clinic Rochester Minnesota USA

4. Division of Endocrinology Mayo Clinic Rochester Minnesota USA

5. Department of Physical Medicine and Rehabilitation Mayo Clinic Rochester Minnesota USA

Abstract

AbstractSenescent cells compromise tissue structure and function in older organisms. We recently identified senescent fibroadipogenic progenitors (FAPs) with activated chemokine signaling pathways in the skeletal muscle of old mice, and hypothesized these cells may contribute to the age‐associated accumulation of immune cells in skeletal muscle. In this study, through cell–cell communication analysis of skeletal muscle single‐cell RNA‐sequencing data, we identified unique interactions between senescent FAPs and macrophages, including those mediated by Ccl2 and Spp1. Using mouse primary FAPs in vitro, we verified increased expression of Ccl2 and Spp1 and secretion of their respective proteins in the context of both irradiation‐ and etoposide‐induced senescence. Compared to non‐senescent FAPs, the medium of senescent FAPs markedly increased the recruitment of macrophages in an in vitro migration assay, an effect that was mitigated by preincubation with antibodies to either CCL2 or osteopontin (encoded by Spp1). Further studies demonstrated that the secretome of senescent FAPs promotes polarization of macrophages toward an M2 subtype. These data suggest the unique secretome of senescent FAPs may compromise skeletal muscle homeostasis by recruiting and directing the behavior of macrophages.

Funder

National Institute on Aging

Publisher

Wiley

Subject

Cell Biology,Aging

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