Ryan Catherine, Alcock Emma, Buttimer Finbarr, Schmidt Michael, Clarke David, Pemble Martyn, Bardosova Maria
Micro & Nano Systems Centre, Tyndall National Institute, University College Cork, Cork, Ireland.
Department of Chemistry, University College Cork, Cork, Ireland.
Sci Technol Adv Mater. 2017 Jul 20;18(1):528-540. doi: 10.1080/14686996.2017.1344929. eCollection 2017.
We present a study of a range of cross-linked chitosan composites with potential antimicrobial applications. They were formed by cross-linking chitosan and siloxane networks and by introducing silver and gold nanoparticles (NPs). The aim was to investigate whether adding the metal NPs to the chitosan-siloxane composite would lead to a material with enhanced antimicrobial ability as compared to chitosan itself. The composites were synthesised in hydrogel form with the metal NPs embedded in the cross-linked chitosan network. Spectroscopic and microscopic techniques were employed to investigate the structural properties of the composite and the tensile strength of the structures was measured. It was found that the addition of metal NPs did not influence the mechanical strength of the composite. A crystal violet attachment assay results displayed a significant reduction in the attachment of to the cross-linked chitosan surfaces. Release profile tests suggest that the metal NPs do not contribute to the overall antimicrobial activity under neutral conditions. The contribution to the mechanical and antimicrobial properties from cross-linking with siloxane is significant, giving rise to a versatile, durable, antimicrobial material suitable for thin film formation, wound dressings or the coating of various surfaces where robustness and antimicrobial control are required.
我们展示了一项关于一系列具有潜在抗菌应用的交联壳聚糖复合材料的研究。它们是通过壳聚糖和硅氧烷网络交联并引入银和金纳米颗粒(NPs)形成的。目的是研究与壳聚糖本身相比,向壳聚糖 - 硅氧烷复合材料中添加金属纳米颗粒是否会产生具有增强抗菌能力的材料。复合材料以水凝胶形式合成,金属纳米颗粒嵌入交联的壳聚糖网络中。采用光谱和显微镜技术研究复合材料的结构性质,并测量结构的拉伸强度。发现添加金属纳米颗粒不会影响复合材料的机械强度。结晶紫附着试验结果显示,其在交联壳聚糖表面的附着量显著减少。释放曲线测试表明,在中性条件下金属纳米颗粒对整体抗菌活性没有贡献。与硅氧烷交联对机械和抗菌性能的贡献显著,从而产生一种通用、耐用的抗菌材料,适用于薄膜形成、伤口敷料或各种需要坚固性和抗菌控制的表面涂层。