ZnO-incorporated chitin hydrogels for infected wound therapy

Author:

Zhang Hongli1,Xu Mengqing1,Wang Liang2,Luo Haihua1,Wu Shuangquan3,Gao Tian1,Wu Qiong1,Xu Huan1

Affiliation:

1. Wuhan University of Science and Technology

2. Wuhan No.1 Hospital, Wuhan, China

3. Zhongnan Hospital of Wuhan University

Abstract

Abstract Chronic wounds caused by pathogenic bacterial infections have been a worldwide medical threat and challenge, ZnO is a promising antibacterial agent to promote infected wound healing. However, ZnO particles need to be with a wound dressing material to improve low-dose antibacterial efficacy while reducing cytotoxicity. The natural polysaccharide, chitin-based hydrogels can be applied as a preferential supporting matrix for the deposition of ZnO. In this study, we developed chitin/ZnO composite hydrogels (CZG hydrogels), which were applied for the biofilm-infected full-thickness wound treatment. The three-dimensional hydrophilic network structure of chitin hydrogels provided a large number of absorption sites for Zn2+ ions, and CZG hydrogels were prepared by in situ synthesis of ZnO. CZG hydrogels had potent broad-spectrum and long-lasting antibacterial activity, good bacteriostatic ability against high concentration of bacterial fluids. The in vivo studies showed that CZG hydrogels have a significant effect of accelerating biofilm-infected wound healing. Collectively, this work confirmed that chitin hydrogels could be applied as a preferential natural supporting matrix for the deposition of inorganic metal and metal oxide nanoparticles, and provided alternative antibacterial dressing for treating microbial infections and promoting wound healing.

Publisher

Research Square Platform LLC

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