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表面最低杀菌浓度:不同粒径银纳米粒子功能化活性玻璃的比较研究。

Surface Minimal Bactericidal Concentration: A comparative study of active glasses functionalized with different-sized silver nanoparticles.

机构信息

Quantum Metrology and Nanotechnology Division, Istituto Nazionale di Ricerca Metrologica (INRiM), Strada delle Cacce, 91, 10135, Turin, Italy; Departement of Electronics and Telecommunications, Politecnico di Torino, Corso Duca degli Abruzzi, 24, 10129, Turin, Italy.

Department of Chemistry and NIS Inter-Departmental Centre, University of Torino, Via Pietro Giuria, 9, 10125, Turin, Italy.

出版信息

Colloids Surf B Biointerfaces. 2021 Aug;204:111800. doi: 10.1016/j.colsurfb.2021.111800. Epub 2021 Apr 29.

Abstract

In this work the quantification of antimicrobial properties of differently sized AgNPs immobilized on a surface was studied. Three different sizes of spheroidal AgNPs with a diameter of (6, 30 and 52) nm were synthetized and characterized with UV-vis, SEM, TEM and ICP-MS. The MIC (Minimal Inhibitory Concentration) and MBC (Minimal Bactericidal Concentration) against Escherichia coli were investigated. Then, the antibacterial efficacy (R) of amino-silanized glasses coated with different amounts of the three sizes of AgNPs were quantified by international standard ISO 22196 adapted protocol against E. coli, clarifying the relationship between size and antibacterial properties of immobilized AgNPs on a surface. The total amount of silver present on glasses with an R ∼ 6 for each AgNPs size was quantified with ICP-MS and this was considered the Surface MBC (SMBC), which were found to be (0.023, 0.026 and 0.034) μg/cm for (6, 30 and 52) nm AgNPs, respectively. Thus, this study demonstrates that active surfaces with a bactericidal effect at least ≥ 99.9999 % could be obtained using an amount of silver almost 100 times lower than the MBC found for colloidal AgNPs. The immobilization reduces the aggregation phenomena normally occuring in liquid media, maximizing the exposed specific superficial area of the AgNPs and their direct contact with bacterial cells. Starting from this glass model system, our work could broaden the way to the development of a wide range of antibacterial materials with very low amount of silver that can be safely applied in biomedical and food packaging fields.

摘要

本工作研究了固定在表面上的不同尺寸的 AgNPs 的抗菌性能的定量评估。合成并通过 UV-vis、SEM、TEM 和 ICP-MS 对直径分别为 (6、30 和 52)nm 的三种不同尺寸的球形 AgNPs 进行了表征。测定了其对大肠杆菌的最小抑菌浓度 (MIC) 和最小杀菌浓度 (MBC)。然后,通过国际标准 ISO 22196 适应的协议,定量评估了涂有不同量三种尺寸 AgNPs 的氨基硅烷化玻璃对大肠杆菌的抗菌效果 (R),阐明了固定在表面上的 AgNPs 的尺寸与抗菌性能之间的关系。使用 ICP-MS 对具有每种 AgNPs 尺寸的 R ∼ 6 的玻璃上存在的总银量进行了定量,将其视为表面 MBC (SMBC),分别为 (6、30 和 52)nm AgNPs 的 (0.023、0.026 和 0.034)μg/cm。因此,这项研究表明,使用比胶体 AgNPs 的 MBC 低约 100 倍的银量,就可以获得具有至少 ≥ 99.9999 %杀菌效果的活性表面。固定化可减少通常在液体介质中发生的聚集现象,最大限度地增加 AgNPs 的暴露比表面积,并使其与细菌细胞直接接触。从这个玻璃模型系统出发,我们的工作可以拓宽开发具有非常低银含量的抗菌材料的途径,这些材料可安全地应用于生物医学和食品包装领域。

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