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银纳米星涂层表面具有强大的杀菌性能。

Silver Nanostars-Coated Surfaces with Potent Biocidal Properties.

机构信息

LAQV/REQUIMTE, Departamento de Química e Bioquímica, Faculdade de Ciências, Universidade do Porto, 4169-007 Porto, Portugal.

出版信息

Int J Environ Res Public Health. 2020 Oct 28;17(21):7891. doi: 10.3390/ijerph17217891.

Abstract

Bacterial proliferation on certain surfaces is of concern as it tends to lead to infectious health problems. Nanotechnology is offering new options for engineering antimicrobial surfaces. Herein, the antibiofilm and biocidal properties of star-shaped silver nanoparticles (AgNSs) in suspension and as coating surfaces were studied. AgNSs and spherical silver nanoparticles (AgNPs) (used for comparison purposes) were synthesized using reported methods. Glass disks (9 mm diameter) were covered with AgNSs using deposition by centrifugation. Minimum inhibitory concentrations (MICs) of AgNSs and AgNPs were determined against several reference strains and multidrug-resistant isolates and their antibiofilm activity was assessed against preformed biofilms of and by both Live/Dead staining and atomic force microscopy (AFM). The antimicrobial properties of AgNSs-coated surfaces were evaluated by the "touch test" method on agar, and also Live/Dead staining and AFM. The MIC values of the AgNSs were 2-4 times lower than those of the AgNPs. Biofilms treated with AgNSs at a concentration equal to the MIC were not significantly affected, although they exhibited more dead cells than the non-treated biofilms. The biocidal activity of AgNSs-coated surfaces was attested, since no growth on agar nor viable cells were observed after contact of the inoculated bacteria with the coated surface for 6 and 24 h. Thus, AgNSs show greater potential as a surface coating with biocidal effects than used as suspension for antimicrobial purposes.

摘要

某些表面的细菌增殖令人担忧,因为它往往会导致感染性健康问题。纳米技术为工程抗菌表面提供了新的选择。本文研究了悬浮液中和涂层表面星形银纳米粒子 (AgNSs) 的抗生物膜和杀菌性能。AgNSs 和球形银纳米粒子 (AgNPs)(用于比较目的)是使用报道的方法合成的。使用离心沉积法将玻璃圆盘(直径 9 毫米)覆盖有 AgNSs。通过琼脂稀释法测定了 AgNSs 和 AgNPs 对几种参考菌株和多药耐药分离株的最小抑菌浓度 (MIC),并通过 Live/Dead 染色和原子力显微镜 (AFM) 评估了它们对 和 的预形成生物膜的抗生物膜活性。通过琼脂上的“触摸测试”方法以及 Live/Dead 染色和 AFM 评估了 AgNSs 涂层表面的抗菌性能。AgNSs 的 MIC 值比 AgNPs 低 2-4 倍。用等于 MIC 的浓度处理的生物膜没有受到明显影响,尽管它们显示出比未经处理的生物膜更多的死细胞。AgNSs 涂层表面具有杀菌活性,因为在接种细菌与涂层表面接触 6 和 24 小时后,在琼脂上未观察到生长,也未观察到存活细胞。因此,AgNSs 作为具有杀菌作用的表面涂层比用作抗菌目的的悬浮液具有更大的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86b6/7662325/84b3e6f7b525/ijerph-17-07891-g001.jpg

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