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Catechol functionalized chitosan/active peptide microsphere hydrogel for skin wound healing

  • Dongying Zhang
  • , Qianqian Ouyang
  • , Zhang Hu*
  • , Sitong Lu
  • , Weiyan Quan
  • , Puwang Li
  • , Yu Chen
  • , Sidong Li
  • *此作品的通讯作者
  • Guangdong Ocean University
  • Southern Marine Science and Engineering Guangdong Laboratory (Zhanjiang)
  • Guangdong Medical College
  • Chinese Academy of Tropical Agricultural Sciences

科研成果: 期刊稿件文章同行评审

摘要

Chitosan-based thermosensitive hydrogels have been widely used in drug delivery and tissue engineering, but their poor bioactivity has limited their further applications. Integral active oyster peptide microspheres (OPM) with an average particle diameter of 3.9 μm were prepared with high encapsulation efficiency (72.8%) and loading capacity (11.9%), exhibiting desirable sustained release effects. Using catechol functionalized chitosan (CS-C) as the polymeric matrix, OPM as the filler, and β-sodium glycerophosphate (β-GP) as a thermal sensitizer, the thermosensitive hydrogel CS-C/OPM/β-GP was prepared. Besides, the application of the hydrogel on wound healing was studied, and its biosafety was evaluated. The results of cell migration in vitro showed that the cell migration rate of CS-C/OPM/β-GP reached 97.47 ± 5.41% within 48 h, indicating that the hydrogel accelerated the migration of L929 cells. As demonstrated in the mouse skin wound experiment, CS-C/OPM/β-GP hydrogel not only inhibited the aggregation of diversified inflammatory cells and accelerated the generation of collagen fibers and new blood vessels of the wound, but also enhanced the synthesis of total protein (TP) in granulation tissue, and up-regulated the expression of Ki-67 and VEGF in the injury, thereby achieving fast wound healing. Safety evaluation results showed that CS-C/OPM/β-GP hydrogel was not cytotoxic to L929 cells, and the hemolysis ratio was less than 5% within 1 mg/mL. In conclusion, CS-C/OPM/β-GP hydrogel is expected as a promising medical dressing for wound healing.

源语言英语
页(从-至)591-606
页数16
期刊International Journal of Biological Macromolecules
173
DOI
出版状态已出版 - 15 3月 2021

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