疤痕
细胞外基质
缝隙连接
成纤维细胞
筋膜
细胞生物学
纤维化
皮肤修复
解剖
细胞外
医学
基质(化学分析)
伤口愈合
化学
病理
生物
外科
细胞内
细胞培养
遗传学
色谱法
作者
Li Wan,Dongsheng Jiang,Donovan Correa‐Gallegos,Pushkar Ramesh,Jiakuan Zhao,Haifeng Ye,Zhu Shao-hua,Juliane Wannemacher,Thomas Volz,Yuval Rinkevich
标识
DOI:10.1016/j.matbio.2021.01.005
摘要
Deep and voluminous skin wounds are repaired with scars, by mobilization of fibroblasts and extracellular matrix from fascia, deep below the skin. The molecular trigger of this novel repair mechanism is incompletely understood. Here we reveal that the gap junction alpha-1 protein (Connexin43, Cx43) is the key to patch repair of deep wounds. By combining full-thickness wound models with fibroblast lineage specific transgenic lines, we show Cx43 expression is substantially upregulated in specialized fibroblasts of the fascia deep beneath the skin that are responsible for scar formation. Using live imaging of fascia fibroblasts and fate tracing of the fascia extracellular matrix we show that Cx43 inhibition disrupts calcium oscillations in cultured fibroblasts and that this inhibits collective migration of fascia EPFs necessary to mobilize fascia matrix into open wounds. Cell-cell communication through Cx43 thus mediates matrix movement and scar formation, and is necessary for patch repair of voluminous wounds. These mechanistic findings have broad clinical implications toward treating fibrosis, aggravated scarring and impaired wound healing.
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