|  Help  |  About  |  Contact Us

Publication : Multi-omic analysis reveals divergent molecular events in scarring and regenerative wound healing.

First Author  Mascharak S Year  2022
Journal  Cell Stem Cell Volume  29
Issue  2 Pages  315-327.e6
PubMed ID  35077667 Mgi Jnum  J:323227
Mgi Id  MGI:6874750 Doi  10.1016/j.stem.2021.12.011
Citation  Mascharak S, et al. (2022) Multi-omic analysis reveals divergent molecular events in scarring and regenerative wound healing. Cell Stem Cell 29(2):315-327.e6
abstractText  Regeneration is the holy grail of tissue repair, but skin injury typically yields fibrotic, non-functional scars. Developing pro-regenerative therapies requires rigorous understanding of the molecular progression from injury to fibrosis or regeneration. Here, we report the divergent molecular events driving skin wound cells toward scarring or regenerative fates. We profile scarring versus YAP-inhibition-induced wound regeneration at the transcriptional (single-cell RNA sequencing), protein (timsTOF proteomics), and tissue (extracellular matrix ultrastructural analysis) levels. Using cell-surface barcoding, we integrate these data to reveal fibrotic and regenerative "molecular trajectories" of healing. We show that disrupting YAP mechanotransduction yields regenerative repair by fibroblasts with activated Trps1 and Wnt signaling. Finally, via in vivo gene knockdown and overexpression in wounds, we identify Trps1 as a key regulatory gene that is necessary and partially sufficient for wound regeneration. Our findings serve as a multi-omic map of wound regeneration and could have therapeutic implications for pathologic fibroses.
Quick Links:
 
Quick Links:
 

Expression

Publication --> Expression annotations

 

Other

16 Bio Entities

0 Expression