Nanozyme-chitosan-aerogel immobilized enzyme-driven biocatalytic cascade for therapeutic engineering of diabetic wounds

Bowen Shen, Zhaoxu Yan, Yuxian Wang, Liying Zhu, Qianru Zhao, Ling Jiang

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

A novel strategy that has emerged in recent years involves the use of aerogels for anti-inflammatory treatment, which has been extensively studied for its powerful application prospects in wound healing, diabetic complications, and tissue regeneration. However, the therapeutic efficacy of aerogels alone is compromised due to bacterial infections at the wound site. Therefore, it is necessary to incorporate effective antibacterial systems onto the aerogels to enhance their efficacy against bacterial infections. For instance, the design of cascade reactions targeting specific disease biomarkers for diagnostic and therapeutic purposes holds promise for enhancing treatment efficacy and precision. In this study, we successfully achieved the immobilization of glucose oxidase within an aerogel prepared from nanozymes, demonstrating remarkable catalytic activity and high-temperature stability. The cascade catalytic system comprising nanozymes and glucose oxidase was applied to combat Methicillin-resistant Staphylococcus aureus (MASR) bacterial infections, exhibiting effective biofilm removal capabilities. In therapeutic experiments on ulcerated wounds in diabetic mice, the cascade catalytic system demonstrated outstanding efficacy with excellent biocompatibility. The therapeutic effects were primarily manifested in the rapid clearance of biofilms formed by MASR, achieved by locally depleting glucose in the wound area, thereby promoting the healing process of ulcerated wounds.

Original languageEnglish
Article number122690
JournalCarbohydrate Polymers
Volume347
DOIs
StatePublished - 1 Jan 2025

Keywords

  • Aerogel
  • Anti-biofilm
  • Cascade catalysis
  • Diabetes
  • Immobilized
  • Nanozyme

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