Muscle regeneration is impaired with aging, due to both intrinsic defects of muscle stem cells (MuSCs) and alterations of their niche. Here, we monitor the cells constituting the MuSC niche over time in young and old regenerating mouse muscle. Aging alters the expansion of all niche cells, with prominent phenotypes in macrophages that show impaired resolution of inflammation. RNA sequencing of FACS-isolated mononucleated cells uncovers specific profiles and kinetics of genes and molecular pathways in old versus young muscle cells, indicating that each cell type responds to aging in a specific manner. Moreover, we show that macrophages have an altered expression of Selenoprotein P (Sepp1). Macrophage-specific deletion of Sepp1 is sufficient to impair the acquisition of their restorative profile and causes inefficient skeletal muscle regeneration. When transplanted in aged mice, bone marrow from young WT mice, but not Sepp1-KOs, restores muscle regeneration. This work provides a unique resource to study MuSC niche aging, reveals that niche cell aging is asynchronous and establishes the antioxidant Selenoprotein P as a driver of age-related decline of muscle regeneration.
Immune aging impairs muscle regeneration via macrophage-derived anti-oxidant selenoprotein P.
免疫衰老通过巨噬细胞衍生的抗氧化硒蛋白 P 损害肌肉再生
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作者:Hoang Dieu-Huong, Bouvière Jessica, Galvis Johanna, Moullé Pauline, Mercier Orane, Migliavacca Eugenia, Ghosh Ananga, Juban Gaëtan, Liot Sophie, Stuelsatz Pascal, Le Grand Fabien, Feige Jérôme N, Mounier Rémi, Chazaud Bénédicte
| 期刊: | EMBO Reports | 影响因子: | 6.200 |
| 时间: | 2025 | 起止号: | 2025 Aug;26(16):4153-4179 |
| doi: | 10.1038/s44319-025-00516-3 | 研究方向: | 细胞生物学 |
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