ANTIMICROBIAL EFFECT OF SILVER NANOPARTICLE-BASED THIN FILMS

被引:0
作者
Rajninec, Miroslav [1 ,5 ]
Vidis, Marek [2 ]
Tomka, Marian [3 ]
Sediva, Maria [1 ]
Gaziova, Andrea [4 ]
Mucha, Jan [1 ]
机构
[1] Inst Chem SAS, Ctr Glyc, Dubravska Cesta 9, Bratislava 84538, Slovakia
[2] Comenius Univ, Fac Math Phys & Informat, Turany 1148, Turany 03853, Slovakia
[3] Slovak Univ Agr, Inst Biotechnol, Fac Biotechnol & Food Sci, Trieda Andreja Hlinku 2, Nitra 94976, Slovakia
[4] Publ Hlth ity Slovak Republ, Trnavska Cesta 52, Bratislava 82645, Slovakia
[5] Slovak Acad Sci, Inst Plant Genet & Biotechnol, Plant Sci Biodivers Ctr, Akad 2, Nitra 95007, Slovakia
来源
JOURNAL OF MICROBIOLOGY BIOTECHNOLOGY AND FOOD SCIENCES | 2023年
关键词
AgNPs; silver nanoparticle-based thin films; antimicrobial effect; TOXICITY;
D O I
10.55251/jmbfs.10037
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
The global pandemic of disease COVID-19 caused by the pathogenic SARS-Cov-2 virus brought more interest in the public health community for known silver with its potential antimicrobial properties to fight infection. One of the ways to stop virus to protect community transmission is the application of nanotechnology of silver nanoparticles on the exposed surfaces of daily used materials in public, e.g., transportation, community spaces, hospitals, and everywhere where the potential infection load is increased. Published technology to coat AgNPs on surfaces differs in the preparation of nanocomposites and substrates, which results in different mechanical and antimicrobial properties. In our study, we focused on the properties of AgNPs prepared by HiTUS and PVD technology with a challenge to test the antimicrobial effect towards the model of gram-negative bacteria (Escherichia coli), fungi (Trichoderma harzianum) and related enteroviruses (Poliovirus and Coxsackie). All tested materials showed 59% or more growth inhibition of E. coli. Growth of T. harzianum was inhibited by 16% in the presence of AgTiB2 50W, and other materials caused 37% to 68% inhibition. Enteroviruses infection was completely inhibited after 1 hour of AgNPs treatment. Only Coxsackie A7 retained infection capability after 30 minutes of treatment with AgNPs. Moreover, the ICP-OES-measured amounts of silver released in cultivation media are lower than most published studies of silver nanoparticles with a comparable antimicrobial effect. Keeping silver concentration at the lowest possible limit is one of the most critical factors for producing environmentally safe antimicrobial materials for everyday use.
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页数:6
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