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Colloidal Gold Nanoclusters Spiked Silica Fillers in Mixed Matrix Coatings: Simultaneous Detection and Inhibition of Healthcare-Associated Infections

机译:混合基质涂层中的胶体金纳米簇刺激了二氧化硅填充剂:同时检测和抑制医疗保健相关感染

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Healthcare-associated infections (HAIs) are the infections that patients get while receiving medical treatment in a medical facility with bacterial HAIs being the most common. Silver and gold nanoparticles (NPs) have been successfully employed as antibacterial motifs; however, NPs leaching in addition to poor dispersion and overall reproducibility are major hurdles to further product development. In this study, the authors design and fabricate a smart antibacterial mixed-matrix membrane coating comprising colloidal lysozyme-templated gold nanoclusters as nanofillers in poly(ethylene oxide)/poly(butylene terephthalate) amphiphilic polymer matrix. Mesoporous silica nanoparticles-lysozyme functionalized gold nanoclusters disperse homogenously within the polymer matrix with no phase separation and zero NPs leaching. This mixed-matrix coating can successfully sense and inhibit bacterial contamination via a controlled release mechanism that is only triggered by bacteria. The system is coated on a common radiographic dental imaging device (photostimulable phosphor plate) that is prone to oral bacteria contamination. Variation and eventually disappearance of the red fluorescence surface under UV light signals bacterial infection. Kanamycin, an antimicrobial agent, is controllably released to instantly inhibit bacterial growth. Interestingly, the quality of the images obtained with these coated surfaces is the same as uncoated surfaces and thus the safe application of such smart coatings can be expanded to include other medical devices without compromising their utility.
机译:与医疗保健相关的感染(HAI)是患者在医疗机构接受药物治疗的感染,而细菌HAI是最常见的。银和金纳米颗粒(NP)已成功用作抗菌基序。但是,除分散不良和总体可重复性外,NPS浸出是进一步开发产品的主要障碍。在这项研究中,作者设计并制造了一个智能抗菌混合质子膜涂层,其中包括胶体溶菌酶膜,以胶体溶菌酶为主层,作为聚(氧化乙烷)/聚二苯甲酸丁烷二苯二甲酸酯)的含量(二苯甲酸酯)两生型聚合物矩阵。介孔二氧化硅纳米颗粒 - 溶酶体功能化的金纳米簇在聚合物基质中均匀地分散,没有相分离和零NPS浸出。这种混合垫涂层可以通过仅由细菌触发的受控释放机制成功地感知并抑制细菌污染。该系统被涂在一个容易受到口服细菌污染的公共X光牙科牙科成像装置(可刺激磷光板)上。在紫外光下,红色荧光表面的变异和最终消失了细菌感染。卡纳米霉素是一种抗菌剂,可控制地释放以立即抑制细菌生长。有趣的是,使用这些涂层表面获得的图像的质量与未涂层的表面相同,因此可以将这种智能涂层的安全应用扩展到包括其他医疗设备而不会损害其效用。

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