基因敲除
流式细胞术
人口
祖细胞
脂肪生成
纤维化
细胞生物学
免疫学
癌症研究
异种移植
心肌细胞
生物
医学
细胞
渗透(HVAC)
体外
肌肉萎缩
细胞疗法
化学
心脏毒素
骨骼肌
基因表达
作者
Steven Garcia,Justin Lau,Agustin Diaz,Miguel Lizarraga,Hannah Chi,Aboubacar Wague,Sankalp Sharma,Gardner Rees,Cristhian Montenegro,Michael R. Davies,Xuhui Liu,Brian T. Feeley
标识
DOI:10.1126/scitranslmed.aeb7213
摘要
Fatty infiltration and fibrosis drive poor outcomes after chronic muscle injury. Here, we characterized fibroadipogenic progenitor cell (FAP) subpopulations from healthy and injured human rotator cuff muscle by single-cell RNA sequencing, full-spectrum flow cytometry, and functional assays and found distinct subpopulations, including a preadipogenic population that expresses delta-like noncanonical notch ligand 1 (DLK1 + ) and a prefibrogenic population that expresses decay-accelerating factor (CD55 + ). We used in vitro and flow cytometry experiments to show that human FAP lineages displayed unique surface marker expression across adipogenic and fibrogenic differentiation. In chronic human rotator cuff injury, expression of DLK1 RNA and DLK1 protein was decreased compared with that in healthy muscle. Overexpression of DLK1 in primary human FAPs suppressed differentiation into adipocytes in vitro, whereas DLK1 knockdown increased adipogenesis. In an immunodeficient murine model of glycerol-induced acute muscle injury, xenotransplantation of DLK1-overexpressing human FAPs into the injured murine muscle resulted in reduced fatty infiltration after 14 days by histological assessment, supporting a functional role for DLK1 in restraining adipogenesis. Together, we defined molecularly distinct, clinically relevant human FAP subpopulations, established DLK1 as a regulator of adipogenic potential in vivo, and provided a framework to identify pathogenic FAP states that may be used in the pursuit to prevent maladaptive muscle remodeling.
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