This study found that culturing fibroblasts on stiffer substrates mimicking fibrotic wounds led to an aligned EDA fibronectin matrix with thinner fibers and decreased YAP activity, suggesting disrupted signaling that might be restored to promote regenerative wound repair.
2 citations
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August 2020 in “bioRxiv (Cold Spring Harbor Laboratory)” This study found that electrospun membranes with aligned surface topography enhanced wound healing and hair follicle regeneration while modulating the immune response in a mouse skin wound model.
June 2026 in “bioRxiv (Cold Spring Harbor Laboratory)” This study tested a microneedle patch on rabbit and pig models to support skin regeneration, revealing that the treatment accelerated wound closure, reduced scar formation, and promoted hair-bearing tissue and follicle growth, suggesting a trauma-guided framework for skin restoration.
October 2025 in “Materials Today Bio” In this study, researchers developed an axolotl skin-derived extracellular matrix scaffold that enhanced wound healing in mice by promoting skin regeneration and reducing fibrosis, offering potential as a regenerative biomaterial for clinical use.
11 citations
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January 2019 in “Dermatologic Surgery” In this study, hair follicle transplantation into nonhealing ulcers promoted rapid wound closure, with differing scar quality and hair growth between the central and peripheral wound areas.