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Multifunctional Chitosan/Gold Nanoparticles Coatings for Biomedical Textiles

机译:用于生物医学纺织品的多功能壳聚糖/金纳米颗粒涂料

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摘要

Gold nanoparticles (AuNPs), chemically synthesized by citrate reduction, were for the first time immobilized onto chitosan-treated soybean knitted fabric via exhaustion method. AuNPs were successfully produced in the form of highly spherical, moderated polydisperse, stable structures. Their average size was estimated at ≈35 nm. Successful immobilization of chitosan and AuNPs were confirmed by alterations in the fabric’s spectrophotometric reflectance spectrum and by detection of nitrogen and gold, non-conjugated C=O stretching vibrations of carbonyl functional groups and residual N-acetyl groups characteristic bands by X-ray photoelectron spectroscopy (XPS) and Fourier-Transform Infrared Spectroscopy (FTIR) analysis. XPS analysis confirms the strong binding of AuNPs on the chitosan matrix. The fabrics’ thermal stability increased with the introduction of both chitosan and AuNPs. Coated fabrics revealed an ultraviolet protection factor (UPF) of +50, which established their effectiveness in ultraviolet (UV) radiation shielding. They were also found to resist up to 5 washing cycles with low loss of immobilized AuNPs. Compared with AuNPs or chitosan alone, the combined functionalized coating on soy fabrics demonstrated an improved antimicrobial effect by reducing Staphylococcus aureus adhesion (99.94%) and Escherichia coli (96.26%). Overall, the engineered fabrics were confirmed as multifunctional, displaying attractive optical properties, UV-light protection and important antimicrobial features, that increase their interest for potential biomedical applications.
机译:通过柠檬酸盐还原化学合成的金纳米颗粒(AuNPs)首次通过吸尽法固定在壳聚糖处理的大豆针织物上。 AuNP以高度球形,适度的多分散,稳定结构的形式成功生产。它们的平均尺寸估计为约35 nm。通过改变织物的分光光度反射光谱,并通过检测氮和金,羰基官能团的非共轭C = O拉伸振动和X射线光电子能谱法检测残留的N-乙酰基特征带,证实了壳聚糖和AuNPs的成功固定。 (XPS)和傅立叶变换红外光谱(FTIR)分析。 XPS分析证实了AuNP在壳聚糖基质上的牢固结合。引入壳聚糖和AuNPs可以提高织物的热稳定性。涂层织物的紫外线保护因子(UPF)为+50,这证明了它们在紫外线(UV)辐射屏蔽方面的有效性。还发现它们可以抵抗多达5个洗涤循环,而固定化AuNP的损失低。与单独的AuNPs或壳聚糖相比,大豆织物上的组合功能涂层通过降低金黄色葡萄球菌的黏附力(99.94%)和大肠杆菌(96.26%)表现出改善的抗菌效果。总体而言,工程织物被证实具有多功能性,显示出诱人的光学性能,防紫外线和重要的抗菌功能,这增加了它们对潜在生物医学应用的兴趣。

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