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Phi 6 Bacteriophage Inactivation by Metal Salts, Metal Powders, and Metal Surfaces.
Molan, Katja; Rahmani, Ramin; Krklec, Daniel; Brojan, Miha; Stopar, David.
  • Molan K; Department of Microbiology, Biotechnical Faculty, University of Ljubljana, Vecna pot 111, 1000 Ljubljana, Slovenia.
  • Rahmani R; Department of Mechanical and Industrial Engineering, Tallinn University of Technology, Ehitajate tee 5, 19086 Tallinn, Estonia.
  • Krklec D; Department of Microbiology, Biotechnical Faculty, University of Ljubljana, Vecna pot 111, 1000 Ljubljana, Slovenia.
  • Brojan M; Laboratory for Nonlinear Mechanics, Faculty of Mechanical Engineering, University of Ljubljana, Askerceva cesta 6, 1000 Ljubljana, Slovenia.
  • Stopar D; Department of Microbiology, Biotechnical Faculty, University of Ljubljana, Vecna pot 111, 1000 Ljubljana, Slovenia.
Viruses ; 14(2)2022 01 21.
Article in English | MEDLINE | ID: covidwho-1715755
ABSTRACT
The interaction of phages with abiotic environmental surfaces is usually an understudied field of phage ecology. In this study, we investigated the virucidal potential of different metal salts, metal and ceramic powders doped with Ag and Cu ions, and newly fabricated ceramic and metal surfaces against Phi6 bacteriophage. The new materials were fabricated by spark plasma sintering (SPS) and/or selective laser melting (SLM) techniques and had different surface free energies and infiltration features. We show that inactivation of Phi6 in solutions with Ag and Cu ions can be as effective as inactivation by pH, temperature, or UV. Adding powder to Ag and Cu ion solutions decreased their virucidal effect. The newly fabricated ceramic and metal surfaces showed very good virucidal activity. In particular, 45%TiO2 + 5%Ag + 45%ZrO2 + 5%Cu, in addition to virus adhesion, showed virucidal and infiltration properties. The results indicate that more than 99.99% of viruses deposited on the new ceramic surface were inactivated or irreversibly attached to it.
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Full text: Available Collection: International databases Database: MEDLINE Main subject: Silver / Bacteriophage phi 6 / Copper Language: English Year: 2022 Document Type: Article Affiliation country: V14020204

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Full text: Available Collection: International databases Database: MEDLINE Main subject: Silver / Bacteriophage phi 6 / Copper Language: English Year: 2022 Document Type: Article Affiliation country: V14020204