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Biocompatible Injectable Magnetic Hydrogel Formed by Dynamic Coordination Network.

Liyang ShiYuqin ZengYannan ZhaoBin YangDmitri OssipovCheuk-Wai TaiJian-Wu DaiChanggang Xu
Published in: ACS applied materials & interfaces (2019)
Magnetic hydrogel that can respond to a magnetic stimulus is a promising biomaterial for tissue regeneration and cancer treatment. In this study, a novel magnetic hydrogel is formed by simply mixing bisphosphonate (BP)-modified hyaluronic acid (i.e., HA-BP) polymeric solution and iron oxide (Fe3O4) nanoparticle dispersion, in which the hydrogel networks are cross-linked by BP groups and iron atoms on the surface of particle. The iron-BP coordination chemistry affords a dynamic network, characterized by self-healing, shear-thinning, and smoothly injectable properties. Moreover, the HA-BP·Fe3O4 magnetic hydrogel demonstrates heat-generation characterization under an alternating magnetic field. The animal experiments confirm the biocompatibilities of HA-BP·Fe3O4 hydrogel, which presents the hydrogels potential for tissue regeneration and anticancer treatment applications.
Keyphrases
  • hyaluronic acid
  • drug delivery
  • molecularly imprinted
  • tissue engineering
  • wound healing
  • stem cells
  • iron oxide
  • drug release
  • cancer therapy
  • mass spectrometry
  • heat stress
  • climate change