Preparation of polyvinyl alcohol/chitosan nanofibrous films incorporating graphene oxide and lanthanum chloride by electrospinning method for potential photothermal and chemical synergistic antibacterial applications in wound dressings

材料科学 聚乙烯醇 静电纺丝 抗菌活性 壳聚糖 纳米纤维 光热治疗 化学工程 复合材料 核化学 纳米技术 聚合物 化学 生物 细菌 工程类 遗传学
作者
Wenjie Tang,Jinxin Zhang,Meiling Wen,Yan Wei,Tingting Tang,Tiantian Yang,Hao-ting Bai,Chai-qiong Guo,Xiang Gao,Zichen Wang,Ludan Xu,Yang Liu,Meiwen An
出处
期刊:Journal of The Mechanical Behavior of Biomedical Materials [Elsevier]
卷期号:148: 106162-106162 被引量:9
标识
DOI:10.1016/j.jmbbm.2023.106162
摘要

Electrospun fibres have been widely used as skin dressings due to their unique structur. However, due to the lack of intrinsic antimicrobial activity, it is easy for the wound to become infected. Bacterial infection, which leads to chronic inflammation, severely hinders the normal process of skin regeneration. In this study, a polyvinyl alcohol/chitosan (PVA/CS) composite films with chemical sterilization and near-infrared (NIR) photothermal antibacterial activity was fabricated by electrospinning. Graphene oxide (GO), a photosensitiser, was incorporated into the films, and lanthanum chloride (Lacl3) as a chemical antibacterial agent was also doped in the electrospun films. The structure, morphology, mechanical properties, wettability, and antimicrobial and photothermal antibacterial activity of the PVA/CS-based fibre films were investigated. The results showed that the addition of Lacl3 to the PVA/CS/GO nanofibres (PVA/CS/GO-La) improved the hydrophilicity, tensile strength and resistance to elastic deformation of the nanofibres. The PVA/CS/GO-La12.5 mM sample exhibited the best antibacterial performance, showing high inhibition against Staphylococcus aureus (82% antibacterial efficacy) and Escherichia coli (99.7% antibacterial efficacy). Furthermore, the antibacterial efficacy of the films surface was further enhanced after exposure to NIR light (808 nm, 0.01 W) for 20 min. In addition, the nanofibre films showed no cytotoxicity against human skin fibroblasts (HSFs), indicating its potential application in the field of broad-spectrum antibacterial materials.
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