Young fibroblast-derived exosomal microRNA-125b transfers beneficial effects on aged cutaneous wound healing

肌成纤维细胞 伤口愈合 成纤维细胞 微泡 细胞外基质 细胞生物学 外体 细胞迁移 再生(生物学) 真皮成纤维细胞 疤痕 小RNA 化学 癌症研究 病理 免疫学 细胞 医学 生物 纤维化 体外 生物化学 基因
作者
Wenzheng Xia,Minxiong Li,Xingyu Jiang,Xin Huang,Shuchen Gu,Jiaqi Ye,Liao-xiang Zhu,Meng Hou,Tao Zan
出处
期刊:Journal of Nanobiotechnology [BioMed Central]
卷期号:20 (1): 144-144 被引量:69
标识
DOI:10.1186/s12951-022-01348-2
摘要

Abstract Aged skin wounds heal poorly, resulting in medical, economic, and social burdens posed by nonhealing wounds. Age-related defects in repair are associated with reduced myofibroblasts and dysfunctional extracellular matrix (ECM) deposition. Bidirectional cell-cell communication involving exosome-borne cargo such as micro RNAs (miRs) has emerged as a critical mechanism for wound healing and aged tissue regeneration. Here we report that at the wound edge, aged fibroblasts display reduced migration and differentiation into myofibroblasts, with impaired ECM deposition, when compared with young tissue. Proper activation of fibroblasts to myofibroblasts may alleviate age-related defects in wound healing. Herein, an exosome-guided cell technique was performed to induce effective wound healing. Supplementing wounds with exosomes isolated from young mouse wound-edge fibroblasts (exosomes Young ) significantly improved the abundance of myofibroblasts and wound healing in aged mice and caused fibroblasts to migrate and transition to myofibroblasts in vitro. To determine the underlying mechanism, we found that exosomal transfer of miR-125b to fibroblasts inhibited sirtuin 7 (Sirt7), thus accelerating myofibroblast differentiation and wound healing in aged mice. Notably, after epidermal inhibition of miR-125b or overexpression of Sirt7 in fibroblasts, migration and myofibroblast transition were perturbed. Our findings thus reveal that miR-125b is transferred through exosomes from young fibroblasts to old fibroblasts contributes to promoting fibroblast migration and transition to counteract aging, suggesting a potential avenue for anti-aging interventions in wound healing. Graphical Abstract

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