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IGF-1C domain-modified chitosan hydrogel accelerates cutaneous wound healing by promoting angiogenesis.

Qiong LiJian CuiHaoyan HuangZhiwei YueYuqiao ChangNana LiZhibo HanZhong-Chao HanZhikun GuoZongjin Li
Published in: Future medicinal chemistry (2020)
Background: Complete regeneration after skin injury remains a critical clinical challenge. Hydrogels, modified with growth factors or mimicking peptides, have been applied for functional tissue regeneration by increasing the bioactivity of engineered matrices. Methodology & results: We synthesized an injectable biological hydrogel, C domain of IGF-1 (IGF-1C)-modified chitosan (CS-IGF-1C) hydrogel. Mouse model of cutaneous wound healing was established to investigate whether this hydrogel could promote wound healing. Our results demonstrated that CS-IGF-1C hydrogel exhibited superior proangiogenic effects, resulting in accelerated wound closure and improved extracellular matrix remodeling. Bioluminescence imaging and histology analysis confirmed the proangiogenic role of CS-IGF-1C hydrogel. Conclusion: CS-IGF-1C hydrogel could accelerate cutaneous wound healing by stimulating angiogenesis.
Keyphrases
  • wound healing
  • pi k akt
  • binding protein
  • growth hormone
  • extracellular matrix
  • stem cells
  • hyaluronic acid
  • signaling pathway
  • cell proliferation
  • amino acid
  • drug release
  • fluorescence imaging