Metal mediated high performance antimicrobial hydrogel films for wound infection management: Zn, Cu, and Mg versus Ag and Au

自愈水凝胶 抗菌剂 伤口愈合 壳聚糖 伤口护理 伤口敷料 聚乙烯醇 慢性伤口 材料科学 核化学 化学 医学 外科 高分子化学 有机化学 复合材料
作者
Raj Kumar Sen,Priyanka Prabhakar,Venkatesh Mayandi,Neeraj Dwivedi,Amit K. Yadav,Pratima R. Solanki,Ayush Gupta,V. Sorna Gowri,Rajamani Lakshminarayanan,Navin Kumar Verma,D.P. Mondal,Avanish Kumar Srivastava,Chetna Dhand
出处
期刊:Materials Chemistry and Physics [Elsevier]
卷期号:297: 127365-127365 被引量:18
标识
DOI:10.1016/j.matchemphys.2023.127365
摘要

Wound infection impedes wound healing and thus poses serious health risks in humans. Wound healing conventionally relies on gauze, lint, plasters, bandages, and cotton wool, with heavy doses of antibiotics in some of them. While silver-based materials have emerged as potential alternatives to antibiotics in wound care management, they are expensive (gold is an even more expensive antimicrobial agent), and their excessive use may promote silver-resistant microbial strains, and skin argyrosis. Furthermore, excessive wound exudate causes conventional wound dressings to become moistened and painful to remove due to adhesion to the wound. We present non-traditional yet high-performance hydrogel (HG)-based wound films based on polyvinyl alcohol (PVA), chitosan (CS), polyethylene glycol (PEG), and effective antibacterial metal ions (Zn2+, Cu2+, Ag+, Au3+, and Mg2+) for wound infection management. The resulting HG_Cu, HG_Zn, HG_Ag, and HG_Au films demonstrated excellent antibacterial efficacy against S. aureus, A. baumanni, and C. albicans, as well as high water absorption (213%, 169.50%, 338.62%, and 241.22%, respectively), swellability (3.21, 2.69, 4.38, and 3.41, respectively), and outstanding thermal stability. Strikingly, the Cu and Zn integrated hydrogels demonstrated broad-spectrum antimicrobial properties. The findings of this work thus reveal a more cost-effective, sustainable, and environmentally friendly approach to designing high-value-added wound care products.
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