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Designing self-healing hydrogels for biomedical applications.

Xiaoya DingLu FanLi WangMin ZhouYongxiang WangYuan Jin Zhao
Published in: Materials horizons (2023)
Self-healing hydrogels have emerged as the most promising alternatives to conventional brittle hydrogels used in the biomedical field due to the features of long-term stability and durability. However, the incompatibility between the fast self-healing property and enough mechanical strength of hydrogels remains a challenge. Therefore, hydrogels that possess not only mechanical toughness but also autonomous self-healing capacity are sought after. This review presents a comprehensive summary of the latest self-healing mechanisms. Specifically, we review various systems based on dynamic bonds, ranging from dynamic covalent bonds to non-covalent bonds. Additionally, this review presents different characterization methods for self-healing hydrogels, and also highlights their potential applications in the biomedical field, such as tissue engineering, drug delivery, cell therapy, and wound dressing. Furthermore, this review aims to provide valuable guidance for constructing diverse self-healing hydrogels with tailored functions.
Keyphrases
  • tissue engineering
  • drug delivery
  • hyaluronic acid
  • drug release
  • wound healing
  • cell therapy
  • extracellular matrix
  • cancer therapy
  • stem cells
  • risk assessment
  • smoking cessation
  • human health