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PVA Films with Mixed Silver Nanoparticles and Gold Nanostars for Intrinsic and Photothermal Antibacterial Action

机译:具有混合银纳米颗粒和金纳米键的PVA薄膜用于固有和光热抗菌作用

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摘要

PVA films with embedded either silver nanoparticles (AgNP), NIR-absorbing photothermal gold nanostars (GNS), or mixed AgNP+GNS were prepared in this research. The optimal conditions to obtain stable AgNP+GNS films with intact, long lasting photothermal GNS were obtained. These require coating of GNS with a thiolated polyethylene glycol (PEG) terminated with a carboxylic acid function, acting as reticulant in the film formation. In the mixed AgNP+GNS films, the total noble metal content is <0.15% w/w and in the Ag films < 0.025% w/w. The slow but prolonged Ag+ release from film-embedded AgNP (8–11% of total Ag released after 24 h, in the mixed films) results in a very strong microbicidal effect against planktonic Escherichia coli and Staphylococcus aureus bacterial strains (the release of Au from films is instead negligible). Beside this intrinsic effect, the mixed films also exert an on-demand, fast hyperthermal bactericidal action, switched on by NIR laser irradiation (800 nm, i.e., inside the biotransparent window) of the localized surface plasmon resonance (LSPR) absorption bands of GNS. Temperature increases of 30 °C are obtained using irradiances as low as 0.27 W/cm2. Moreover, 80–90% death on both strains was observed in bacteria in contact with the GNS-containing films, after 30 min of irradiation. Finally, the biocompatibility of all films was verified on human fibroblasts, finding negligible viability decrease in all cases.
机译:在本研究中制备了具有嵌入的银纳米粒子(AgNP),吸收光热金纳略纳米纳米(GNS)或混合AgNP + GNS的PVA薄膜。获得具有完整的稳定AgNP + GNS膜的最佳条件,得到长持久的光热GNS。这些需要用终止于羧酸功能的硫醇化聚乙二醇(PEG)涂覆GNS,用作膜形成中的配音。在混合AgNP + GNS膜中,总贵金属含量<0.15%w / w,在Ag膜中<0.025%w / w。慢性但延长的Ag +释放来自薄膜嵌入式AGNP(24小时后释放的总Ag的8-11%,在混合膜上)导致对浮游生物大肠杆菌和金黄色葡萄球菌细菌菌株(Au释放的荧光菌效应非常强烈的微生物作用从电影取决于忽略不计)。除此之外的效果外,混合膜还发挥了按需,快速的热热杀菌作用,通过NIR激光照射(800nm,即生物翻透窗口)接通的局部表面等离子体共振(LSPR)吸收带的局部化学辐射(LSPR)吸收带接通。使用低至0.27W / cm 2的辐射获得温度增加30℃。此外,在辐照30分钟后,在与含GNS的薄膜接触的细菌中观察到80-90%的死亡。最后,验证了所有薄膜的生物相容性,在人的成纤维细胞上验证,发现所有病例中的可忽略的活力降低。

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