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Single-cell and spatial transcriptomics identify a macrophage population associated with skeletal muscle fibrosis
Gérald Coulis, Diego Jaime, Christian F. Guerrero‐Juarez, Jenna M. Kastenschmidt, Philip K. Farahat, Quy Nguyen, Nicholas Pervolarakis, Katherine McLinden, Lauren Thurlow, Saba Movahedi, Brandon S. Hughes, Jorge Duarte, Andrew M. Sorn, Elizabeth Montoya, Izza Mozaffar
Science Advances · 2023 · ▲ 134 citations
Abstract
Macrophages are essential for skeletal muscle homeostasis, but how their dysregulation contributes to the development of fibrosis in muscle disease remains unclear. Here, we used single-cell transcriptomics to determine the molecular attributes of dystrophic and healthy muscle macrophages. We identified six clusters and unexpectedly found that none corresponded to traditional definitions of M1 or M2 macrophages. Rather, the predominant macrophage signature in dystrophic muscle was characterized by high expression of fibrotic factors, galectin-3 (gal-3) and osteopontin ( Spp1 ). Spatial transcriptomics, computational inferences of intercellular communication, and in vitro assays indicated that macrophage-derived Spp1 regulates stromal progenitor differentiation. Gal-3 + macrophages were chronically activated in dystrophic muscle, and adoptive transfer assays showed that the gal-3 + phenotype was the dominant molecular program induced within the dystrophic milieu. Gal-3 + macrophages were also elevated in multiple human myopathies. These studies advance our understanding of macrophages in muscular dystrophy by defining their transcriptional programs and reveal Spp1 as a major regulator of macrophage and stromal progenitor interactions.
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- 10.1126/sciadv.add9984
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- 2026-07-28 MST
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APA
Coulis, G., Jaime, D., Guerrero‐Juarez, C.F., Kastenschmidt, J.M., Farahat, P.K., Nguyen, Q., Pervolarakis, N., McLinden, K., Thurlow, L., Movahedi, S., Hughes, B.S., Duarte, J., Sorn, A.M., Montoya, E., Mozaffar, I., Dragan, M., Othy, S., Joshi, T., Hans, C.P., & Kimonis, V. (2023). Single-cell and spatial transcriptomics identify a macrophage population associated with skeletal muscle fibrosis. <em>Science Advances</em>. https://doi.org/10.1126/sciadv.add9984
Vancouver
Coulis G, Jaime D, Guerrero‐Juarez CF, Kastenschmidt JM, Farahat PK, Nguyen Q, et al. Single-cell and spatial transcriptomics identify a macrophage population associated with skeletal muscle fibrosis. Science Advances. 2023. doi:10.1126/sciadv.add9984.
BibTeX
@article{grald2023Single,
title = {Single-cell and spatial transcriptomics identify a macrophage population associated with skeletal muscle fibrosis},
author = {Gérald Coulis and Diego Jaime and Christian F. Guerrero‐Juarez and Jenna M. Kastenschmidt and Philip K. Farahat and Quy Nguyen and Nicholas Pervolarakis and Katherine McLinden and Lauren Thurlow and Saba Movahedi and Brandon S. Hughes and Jorge Duarte and Andrew M. Sorn and Elizabeth Montoya and Izza Mozaffar and Morgan Dragan and Shivashankar Othy and Trupti Joshi and Chetan P. Hans and Virginia Kimonis and Adam L. MacLean and Qing Nie and Lindsay M. Wallace and Scott Q. Harper and Tahseen Mozaffar},
journal = {Science Advances},
year = {2023},
doi = {10.1126/sciadv.add9984},
}
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