间充质干细胞
角蛋白
角质形成细胞
再生(生物学)
病理
角蛋白14
生物
移植
毛囊
伤口愈合
细胞生物学
体外
医学
免疫学
基因
外科
转基因
转基因小鼠
生物化学
作者
Yoshikazu Hirose,Asaka Miura,Yuki Kobayashi,Takashi Shimbo,Yuya Ouchi,Tomomi Kitayama,Tomoya Mori,Akio Tanaka,Manabu Fujimoto,Kotaro Saga,Katsuto Tamai
标识
DOI:10.1016/j.xjidi.2025.100394
摘要
Skin transplantation is commonly used to compensate for normal cutaneous tissues in full-thickness wounds or surgically excised skin. Despite complete termination of initial blood flow, transplanted skin usually maintains its dermal and epidermal structures without scar formation. However, the precise role of engrafted cells in maintaining epidermal and dermal homeostasis remains unclear. In this study, we investigated the chronological changes in neonatal full-thickness skin grafts on mice at the histological and single-cell transcriptomic levels. We found devastating necrotic changes in the dermal and epidermal tissues on postoperative day 3, followed by significant regeneration of follicular and interfollicular tissues after postoperative day 6. We identified a unique mesenchymal subpopulation that expressed keratinocyte-specific genes (keratin 5 gene K rt 5, Epcam, and Irf6) involved in mesenchymal-epithelial transition. Mesenchymal cells transitioning to epithelial cells showed keratinocyte differentiation activity both in vitro and in vivo. These results highlight the contribution of unique mesenchymal cell populations to epithelial regeneration after severe necrosis of a skin graft.
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