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Hydrogel Functionalized Janus Membrane for Skin Regeneration

Cited 41 time in Web of Science Cited 41 time in Scopus
Authors

An, Young-Hyeon; Yu, Seung Jung; Kim, In Seon; Kim, Su-Hwan; Moon, Jeong-Mi; Kim, Seunghyun L.; Choi, Young Hwan; Choi, Joon Sig; Im, Sung Gap; Lee, Kyung Eun; Hwang, Nathaniel S.

Issue Date
2017-03
Publisher
John Wiley and Sons Ltd
Citation
Advanced healthcare materials, Vol.6 No.5, p. 1600795
Abstract
In this study, a hydrogel functionalized Janus membrane is developed and its capacity is examined as a wound dressing biomaterial. A hydrophobic fluoropolymer, poly(3,3,4,4,5,5,6,6,7,7,8,8,9,9,10,10,10-heptadecafluorodecyl methacrylate) (PHFDMA), is uniformly coated onto macroporous polyester membrane through initiated chemical vapor deposition process on both sides. PHFDMA-coated macroporous membrane exhibits antibacterial property, allows air permeation, and inhibits water penetration. Janus membrane property is obtained by exposing one side of PHFDMA coated membrane with 1 m KOH solution, which allows PHFDMA cleavage resulting in carboxylic acid residue. This carboxylic acid residue is then further functionalized with gelatin methacrylate-based photocrosslinkable hydrogel for moisture retention and growth factor release. When applied to full thickness dorsal skin defect model, functionalized hydrogel allows moisture retention and hydrophobic surface prevents exudate leaks via water repellence. Furthermore, hydrogel functionalized Janus membrane enhances the wound healing rate and induces thick epidermal layer formation. In conclusion, the multifunctional Janus membrane with hydrophobic outer surface and immobilized hydrogel on the other surface is fabricated for an innovative strategy for wound healing.
ISSN
2192-2640
URI
https://hdl.handle.net/10371/198358
DOI
https://doi.org/10.1002/adhm.201600795
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