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Selective De-Cross-Linking of Transformable, Double-Network Hydrogels: Preparation, Structural Conversion, and Controlled Release.

Doyoung JungKyoung Min LeeJi Young ChangMisun YunHak-Jong ChoiYoong Ahm KimHyeonseok YoonHyungwoo Kim
Published in: ACS applied materials & interfaces (2018)
This study has demonstrated the design of stimuli-responsive double-network hydrogels that are formed by sequential polymerization and show chemical transformation by selective de-cross-linking without structural failure owing to chemical orthogonality. Each self-immolative and thermoresponsive network established together the double-network structure through a thiol-ene click reaction and radical polymerization. The hydrogel exhibited enhanced mechanical strength but chemically transformed through the selective de-cross-linking of specific network triggered by a molecular stimulus, which significantly alters physical properties of the material such as tunable toughness and lower critical solution temperature behavior. In addition, the material displayed a thermoresponsive, controlled release. Only after treatment with the stimulus did the hydrogel release cargo molecules on demand via de-cross-linking while maintaining the entire structure.
Keyphrases
  • drug delivery
  • hyaluronic acid
  • wound healing
  • tissue engineering
  • physical activity
  • extracellular matrix
  • network analysis
  • cancer therapy
  • drug release
  • mass spectrometry