Gold nanoclusters encapsulated microneedle patches with antibacterial and self‐monitoring capacities for wound management

Author:

Yi Kexin12ORCID,Yu Yunru12,Fan Lu1,Wang Li1,Wang Yu1,Zhao Yuanjin123

Affiliation:

1. Department of Rheumatology and Immunology Institute of Translational Medicine Nanjing Drum Tower Hospital, School of Biological Science and Medical Engineering, Southeast University Nanjing China

2. Oujiang Laboratory (Zhejiang Lab for Regenerative Medicine, Vision and Brain Health), Wenzhou Institute University of Chinese Academy of Sciences Wenzhou Zhejiang China

3. Shenzhen Research Institute Southeast University Shenzhen China

Abstract

AbstractThe management of infected wounds is always of great significance and urgency in clinical and biomedical fields. Recent efforts in this area are focusing on the development of functional wound patches with effective antibacterial, drug delivery, and sensor properties. Here, we present novel hyaluronic acid (HA) microneedle patches with these features by encapsulating aminobenzeneboronic acid‐modified gold nanoclusters (A‐GNCs) for infected wound management. The A‐GNCs loaded microneedle patches were derived from negative‐mold replication and showed high mechanical strength to penetrate the skin. The release of the A‐GNCs was realized by the degradation of HA, and the self‐monitor of the released actives was based on the dynamic bright orange fluorescence emitted from A‐GNCs under ultraviolet radiation. As the A‐GNCs could destroy bacteria membranes, the microneedle patches were with excellent in vitro antibiosis ability. Based on these features, we have demonstrated the bacteria inhibition, residual drug self‐monitoring, and wound healing promotion abilities of the microneedle patches in Escherichia coli‐ or Staphylococcus aureus‐infected wound management. These results indicated the great potential of such A‐GNCs loaded microneedle patches for clinical applications.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Shenzhen Fundamental Research Program

Publisher

Wiley

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