Polarized macrophages regulate fibro/adipogenic progenitor (FAP) adipogenesis through exosomes

微泡 外体 祖细胞 肌肉萎缩 渗透(HVAC) 脂肪生成 萎缩 生物 细胞生物学 内科学 内分泌学 癌症研究 间充质干细胞 干细胞 医学 小RNA 生物化学 物理 基因 热力学
作者
Mengyao Liu,Martin Ng,Tuan Anh Phu,Laura Bouchareychas,Brian T. Feeley,Hubert T. Kim,Robert L. Raffaı̈,Xuhui Liu
出处
期刊:Stem Cell Research & Therapy [BioMed Central]
卷期号:14 (1): 321-321 被引量:19
标识
DOI:10.1186/s13287-023-03555-6
摘要

Abstract Background Macrophage polarization has been observed in the process of muscle injuries including rotator cuff (RC) muscle atrophy and fatty infiltration after large tendon tears. In our previous study, we showed that fibrogenesis and white adipogenesis of muscle residential fibro/adipogenic progenitors (FAPs) cause fibrosis and fatty infiltration and that brown/beige adipogenesis of FAPs promotes rotator cuff muscle regeneration. However, how polarized macrophages and their exosomes regulate FAP differentiation remains unknown. Methods We cultured FAPs with M0, M1, and M2 macrophages or 2 × 10 9 exosomes derived from M0, M1 and M2 with and without GW4869, an exosome inhibitor. In vivo, M0, M1, and M2 macrophages were transplanted or purified macrophage exosomes (M0, M1, M2) were injected into supraspinatus muscle (SS) after massive tendon tears in mice ( n = 6). SS were harvested at six weeks after surgery to evaluate the level of muscle atrophy and fatty infiltration. Results Our results showed that M2 rather than M0 or M1 macrophages stimulates brown/beige fat differentiation of FAPs. However, the effect of GW4869, the exosome inhibitor, diminished this effect. M2 exosomes also promoted FAP Beige differentiation in vitro. The transplantation of M2 macrophages reduced supraspinatus muscle atrophy and fatty infiltration. In vivo injections of M2 exosomes significantly reduced muscle atrophy and fatty infiltration in supraspinatus muscle. Conclusion Results from our study demonstrated that polarized macrophages directly regulated FAP differentiation through their exosomes and M2 macrophage-derived exosomes may serve as a novel treatment option for RC muscle atrophy and fatty infiltration.
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