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Antibacterial Properties of Plasma-Activated Perfluorinated Substrates with Silver Nanoclusters Deposition

This article is focused on the evaluation of surface properties of polytetrafluoroethylene (PTFE) nanotextile and a tetrafluoroethylene-perfluoro(alkoxy vinyl ether) (PFA) film and their surface activation with argon plasma treatment followed with silver nanoclusters deposition. Samples were subject...

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Autores principales: Slepička, Petr, Rimpelová, Silvie, Slepičková Kasálková, Nikola, Fajstavr, Dominik, Sajdl, Petr, Kolská, Zdeňka, Švorčík, Václav
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7828452/
https://www.ncbi.nlm.nih.gov/pubmed/33450953
http://dx.doi.org/10.3390/nano11010182
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author Slepička, Petr
Rimpelová, Silvie
Slepičková Kasálková, Nikola
Fajstavr, Dominik
Sajdl, Petr
Kolská, Zdeňka
Švorčík, Václav
author_facet Slepička, Petr
Rimpelová, Silvie
Slepičková Kasálková, Nikola
Fajstavr, Dominik
Sajdl, Petr
Kolská, Zdeňka
Švorčík, Václav
author_sort Slepička, Petr
collection PubMed
description This article is focused on the evaluation of surface properties of polytetrafluoroethylene (PTFE) nanotextile and a tetrafluoroethylene-perfluoro(alkoxy vinyl ether) (PFA) film and their surface activation with argon plasma treatment followed with silver nanoclusters deposition. Samples were subjected to plasma modification for a different time exposure, silver deposition for different time periods, or their combination. As an alternative approach, the foils were coated with poly-L-lactic acid (PLLA) and silver. The following methods were used to study the surface properties of the polymers: goniometry, atomic force microscopy, and X-ray photoelectron microscopy. By combining the aforementioned methods for material surface modification, substrates with antibacterial properties eliminating the growth of Gram-positive and Gram-negative bacteria were prepared. Studies of antimicrobial activity showed that PTFE plasma-modified samples coated with PLLA and deposited with a thin layer of Ag had a strong antimicrobial effect, which was also observed for the PFA material against the bacterial strain of S. aureus. Significant antibacterial effect against S. aureus, Proteus sp. and E. coli has been demonstrated on PTFE nanotextile plasma-treated for 240 s, coated with PLLA, and subsequently sputtered with thin Ag layer.
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spelling pubmed-78284522021-01-25 Antibacterial Properties of Plasma-Activated Perfluorinated Substrates with Silver Nanoclusters Deposition Slepička, Petr Rimpelová, Silvie Slepičková Kasálková, Nikola Fajstavr, Dominik Sajdl, Petr Kolská, Zdeňka Švorčík, Václav Nanomaterials (Basel) Article This article is focused on the evaluation of surface properties of polytetrafluoroethylene (PTFE) nanotextile and a tetrafluoroethylene-perfluoro(alkoxy vinyl ether) (PFA) film and their surface activation with argon plasma treatment followed with silver nanoclusters deposition. Samples were subjected to plasma modification for a different time exposure, silver deposition for different time periods, or their combination. As an alternative approach, the foils were coated with poly-L-lactic acid (PLLA) and silver. The following methods were used to study the surface properties of the polymers: goniometry, atomic force microscopy, and X-ray photoelectron microscopy. By combining the aforementioned methods for material surface modification, substrates with antibacterial properties eliminating the growth of Gram-positive and Gram-negative bacteria were prepared. Studies of antimicrobial activity showed that PTFE plasma-modified samples coated with PLLA and deposited with a thin layer of Ag had a strong antimicrobial effect, which was also observed for the PFA material against the bacterial strain of S. aureus. Significant antibacterial effect against S. aureus, Proteus sp. and E. coli has been demonstrated on PTFE nanotextile plasma-treated for 240 s, coated with PLLA, and subsequently sputtered with thin Ag layer. MDPI 2021-01-13 /pmc/articles/PMC7828452/ /pubmed/33450953 http://dx.doi.org/10.3390/nano11010182 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Slepička, Petr
Rimpelová, Silvie
Slepičková Kasálková, Nikola
Fajstavr, Dominik
Sajdl, Petr
Kolská, Zdeňka
Švorčík, Václav
Antibacterial Properties of Plasma-Activated Perfluorinated Substrates with Silver Nanoclusters Deposition
title Antibacterial Properties of Plasma-Activated Perfluorinated Substrates with Silver Nanoclusters Deposition
title_full Antibacterial Properties of Plasma-Activated Perfluorinated Substrates with Silver Nanoclusters Deposition
title_fullStr Antibacterial Properties of Plasma-Activated Perfluorinated Substrates with Silver Nanoclusters Deposition
title_full_unstemmed Antibacterial Properties of Plasma-Activated Perfluorinated Substrates with Silver Nanoclusters Deposition
title_short Antibacterial Properties of Plasma-Activated Perfluorinated Substrates with Silver Nanoclusters Deposition
title_sort antibacterial properties of plasma-activated perfluorinated substrates with silver nanoclusters deposition
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7828452/
https://www.ncbi.nlm.nih.gov/pubmed/33450953
http://dx.doi.org/10.3390/nano11010182
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