articleAdvanced Functional MaterialsMar 7, 2025BRONZE OA

Laser‐Induced Nanozyme Biofuel Cell‐Based Self‐Powered Patch for Accelerating Diabetic Wound Healing With Real‐Time Monitoring

Qingdao Agricultural University

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Abstract

Abstract Chronic wounds are a common complication of diabetes, causing significant inconvenience, persistent pain, and economic burden to patients. Real‐time monitoring of wound status and timely treatment with intelligent dressings is a promising way to treat wound infection and accelerate healing. However, the traditional dressings make it difficult to simultaneously maintain the true state of the wound and meet the dynamic needs of chronic wounds. Herein, a multifunctional self‐powered patch (MSPP) featured with antibacterial, hypoglycemic, and electrical stimulation is designed to promote wound healing and real‐time monitoring of wound status, in which laser‐induced nanozyme electrodes are prepared in situ…

Citation impact

58
total citations
FWCI
26.66
Percentile
100%
References
51
Citations per year

Authors

6

Topics & keywords

Keywords
  • Wound healing
  • Biomedical engineering
  • Diabetes mellitus
  • Diabetic foot
  • Materials science
  • Diabetic foot ulcer
  • Debridement (dental)
  • Medicine
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