Identification of a physiologic vasculogenic fibroblast state to achieve tissue repair

识别生理性血管生成成纤维细胞状态以实现组织修复

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作者:Durba Pal # ,Subhadip Ghatak #,Kanhaiya Singh #,Ahmed Safwat Abouhashem,Manishekhar Kumar,Mohamed S El Masry,Sujit K Mohanty,Ravichand Palakurti,Yashika Rustagi,Saba Tabasum,Dolly K Khona,Savita Khanna,Sedat Kacar,Rajneesh Srivastava,Pramod Bhasme,Sumit S Verma,Edward Hernandez,Anu Sharma,Diamond Reese,Priyanka Verma,Nandini Ghosh,Mahadeo Gorain,Jun Wan,Sheng Liu,Yunlong Liu,Natalia Higuita Castro,Surya C Gnyawali,William Lawrence,Jordan Moore,Daniel Gallego Perez,Sashwati Roy,Mervin C Yoder,Chandan K Sen

Abstract

Tissue injury to skin diminishes miR-200b in dermal fibroblasts. Fibroblasts are widely reported to directly reprogram into endothelial-like cells and we hypothesized that miR-200b inhibition may cause such changes. We transfected human dermal fibroblasts with anti-miR-200b oligonucleotide, then using single cell RNA sequencing, identified emergence of a vasculogenic subset with a distinct fibroblast transcriptome and demonstrated blood vessel forming function in vivo. Anti-miR-200b delivery to murine injury sites likewise enhanced tissue perfusion, wound closure, and vasculogenic fibroblast contribution to perfused vessels in a FLI1 dependent manner. Vasculogenic fibroblast subset emergence was blunted in delayed healing wounds of diabetic animals but, topical tissue nanotransfection of a single anti-miR-200b oligonucleotide was sufficient to restore FLI1 expression, vasculogenic fibroblast emergence, tissue perfusion, and wound healing. Augmenting a physiologic tissue injury adaptive response mechanism that produces a vasculogenic fibroblast state change opens new avenues for therapeutic tissue vascularization of ischemic wounds.

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