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Human Umbilical Cord Mesenchymal Stromal Cell-Derived Extracellular Vesicles Induce Fetal Wound Healing Features Revealed by Single-Cell RNA Sequencing

Yuanyuan Liu, Mingwang Zhang, Chenhui Wang, Hongbo Chen, Dandan Su, Cheng Yang, Yuandong Tao, Xuexue Lv, Zhe Zhou, Jiangbo Li, Yong Liao, Jia You, Zheng-Xu Wang, Fang Cheng, Rongya Yang

2024ACS Nano21 citationsDOI

Abstract

The potential of human umbilical cord mesenchymal stromal cell-derived extracellular vesicles (hucMSC-EVs) in wound healing is promising, yet a comprehensive understanding of how fibroblasts and keratinocytes respond to this treatment remains limited. This study utilizes single-cell RNA sequencing (scRNA-seq) to investigate the impact of hucMSC-EVs on the cutaneous wound microenvironment in mice. Through rigorous single-cell analyses, we unveil the emergence of hucMSC-EV-induced hematopoietic fibroblasts and MMP13+ fibroblasts. Notably, MMP13+ fibroblasts exhibit fetal-like expressions of MMP13, MMP9, and HAS1, accompanied by heightened migrasome activity. Activation of MMP13+ fibroblasts is orchestrated by a distinctive PIEZO1-calcium-HIF1α-VEGF-MMP13 pathway, validated through murine models and dermal fibroblast assays. Organotypic culture assays further affirm that these activated fibroblasts induce keratinocyte migration via MMP13-LRP1 interactions. This study significantly contributes to our understanding of fibroblast heterogeneities as well as intercellular interactions in wound healing and identifies hucMSC-EV-induced hematopoietic fibroblasts as potential targets for reprogramming. The therapeutic targets presented by these fibroblasts offer exciting prospects for advancing wound healing strategies.

Topics & Concepts

Mesenchymal stem cellUmbilical cordWound healingCellCell biologyCord liningStromal cellRNAExtracellularExtracellular vesiclesBiologyChemistryPathologyMedicineImmunologyCellular differentiationBiochemistryGeneAdult stem cellExtracellular vesicles in diseaseMesenchymal stem cell researchMicroRNA in disease regulation
Human Umbilical Cord Mesenchymal Stromal Cell-Derived Extracellular Vesicles Induce Fetal Wound Healing Features Revealed by Single-Cell RNA Sequencing | Litcius