Fibroblast‐Derived Extracellular Vesicles Ameliorate the Skin Injury Microenvironment to Promote Wound Healing
作者:Minjie Liu, G. Ye, Ruiyang Li, Tenghui Gao, Caiwei Zhuang, Shiyun Huang, Sheng Wang, Jinhua Hu, Andy Peng Xiang, Meihua Jiang · 发表于:Cell Biology International · 年份:2025 · DOI:10.1002/cbin.70063 · 被引用次数:4 · 研究领域:Extracellular vesicles in disease、Wound Healing and Treatments、Tendon Structure and Treatment
Fibroblasts are pivotal cellular components in cutaneous wound healing and are regarded as promising therapeutic candidates. However, their functional heterogeneity within tissue microenvironments significantly limits their clinical application. In contrast, whether fibroblast-derived extracellular vesicles (EVs) can overcome fibroblast heterogeneity while retaining the bioactivity and regenerative potential of homeostatic fibroblasts remains unclear. In this study, we systematically analyzed and compared the therapeutic potential and functional advantages of human dermal fibroblast-derived EVs (hDF-EVs) in promoting cutaneous wound healing. Our findings highlight the translational potential of fibroblast-derived EVs as a novel strategy to improve clinical outcomes for skin injuries. hDF-EVs were internalized by fibroblasts and keratinocytes at the wound margins, thereby attenuating early inflammatory responses and accelerating tissue repair following dermal excisional injuries. hDF-EVs significantly enhanced the proliferation and migration of both fibroblasts and keratinocytes in a coculture system. Transcriptomic analysis revealed that hDF-EVs upregulated genes involved in cell proliferation and cytokine regulation. Integrated miRNA profiling revealed a subset of hDF-EVs-enriched miRNAs that mechanistically orchestrate fibroblast activation through coordinated MAPK, Wnt, and Ras signaling axis engagement, consequently reprogramming inflammatory mediator secretion dynamics i...