Cocktail Cell‐Reprogrammed Hydrogel Microspheres Achieving Scarless Hair Follicle Regeneration

Abstract: The scar repair inevitably causes damage of skin function and loss of skin appendages such as hair follicles (HF). It is of great challenge in wound repair that how to intervene in scar formation while simultaneously remodeling HF niche and inducing in situ HF regeneration. Here, chemical reprogramming techniques are used to identify a clinically chemical cocktail (Tideglusib and Tamibarotene) that can drive fibroblasts toward dermal papilla cell (DPC) fate. Considering the advantage of biomaterials in tissue repair and their regulation in cell behavior that may contributes to cellular reprogramming, the artificial HF seeding (AHFS) hydrogel microspheres, inspired by the natural processes of “seeding and harvest”, are constructed via using a combination of liposome nanoparticle drug delivery system, photoresponsive hydrogel shell, positively charged polyamide modification, microfluidic and photocrosslinking techniques. The identified chemical cocktail is as the core nucleus of AHFS. In vitro and in vivo studies show that AHFS can regulate fibroblast fate, induce fibroblast‐to‐DPC reprogramming by activating the PI3K/AKT pathway, finally promoting wound healing and in situ HF regeneration while inhibiting scar formation in a two‐pronged translational approach. In conclusion, AHFS provides a new and effective strategy for functional repair of skin wounds.

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch

Bibliographic citation
Cocktail Cell‐Reprogrammed Hydrogel Microspheres Achieving Scarless Hair Follicle Regeneration ; day:15 ; month:01 ; year:2024 ; extent:16
Advanced science ; (15.01.2024) (gesamt 16)

Creator
Ji, Shuaifei
Li, Yingying
Xiang, Lei
Liu, Mingyue
Xiong, Mingchen
Cui, Wenguo
Fu, Xiaobing
Sun, Xiaoyan

DOI
10.1002/advs.202306305
URN
urn:nbn:de:101:1-2024011614373188954678
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
2025-08-15T07:31:14+0200

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Associated

  • Ji, Shuaifei
  • Li, Yingying
  • Xiang, Lei
  • Liu, Mingyue
  • Xiong, Mingchen
  • Cui, Wenguo
  • Fu, Xiaobing
  • Sun, Xiaoyan

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