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Printable Resin Modified by Grafted Silver Nanoparticles for Preparation of Antifouling Microstructures with Antibacterial Effect

The usage of three-dimensional (3D) printed materials in many bioapplications has been one of the fastest-growing sectors in the nanobiomaterial industry in the last couple of years. In this work, we present a chemical approach for grafting silver nanoparticles (AgNPs) into a resin matrix, which is...

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Autores principales: Idriss, Hazem, Elashnikov, Roman, Rimpelová, Silvie, Vokatá, Barbora, Haušild, Petr, Kolská, Zdeňka, Lyukatov, Oleksiy, Švorčík, Václav
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8587023/
https://www.ncbi.nlm.nih.gov/pubmed/34771393
http://dx.doi.org/10.3390/polym13213838
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author Idriss, Hazem
Elashnikov, Roman
Rimpelová, Silvie
Vokatá, Barbora
Haušild, Petr
Kolská, Zdeňka
Lyukatov, Oleksiy
Švorčík, Václav
author_facet Idriss, Hazem
Elashnikov, Roman
Rimpelová, Silvie
Vokatá, Barbora
Haušild, Petr
Kolská, Zdeňka
Lyukatov, Oleksiy
Švorčík, Václav
author_sort Idriss, Hazem
collection PubMed
description The usage of three-dimensional (3D) printed materials in many bioapplications has been one of the fastest-growing sectors in the nanobiomaterial industry in the last couple of years. In this work, we present a chemical approach for grafting silver nanoparticles (AgNPs) into a resin matrix, which is convenient for 3D printing. In this way, the samples can be prepared and are able to release silver ions (Ag(+)) with excellent antibacterial effect against bacterial strains of E. coli and S. epidermidis. By the proposed process, the AgNPs are perfectly mixed and involved in the polymerization process and their distribution in the matrix is homogenous. It was also demonstrated that this approach does not affect the printing resolution and the resin is therefore suitable for the construction of microstructures enabling controlled silver ion release and antifouling properties. At the same time the physical properties of the material, such as viscosity and elasticity modulus are preserved. The described approach can be used for the fabrication of facile, low-cost 3D printed resin with antifouling-antibacterial properties with the possibility to control the release of Ag(+) through microstructuring.
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spelling pubmed-85870232021-11-13 Printable Resin Modified by Grafted Silver Nanoparticles for Preparation of Antifouling Microstructures with Antibacterial Effect Idriss, Hazem Elashnikov, Roman Rimpelová, Silvie Vokatá, Barbora Haušild, Petr Kolská, Zdeňka Lyukatov, Oleksiy Švorčík, Václav Polymers (Basel) Article The usage of three-dimensional (3D) printed materials in many bioapplications has been one of the fastest-growing sectors in the nanobiomaterial industry in the last couple of years. In this work, we present a chemical approach for grafting silver nanoparticles (AgNPs) into a resin matrix, which is convenient for 3D printing. In this way, the samples can be prepared and are able to release silver ions (Ag(+)) with excellent antibacterial effect against bacterial strains of E. coli and S. epidermidis. By the proposed process, the AgNPs are perfectly mixed and involved in the polymerization process and their distribution in the matrix is homogenous. It was also demonstrated that this approach does not affect the printing resolution and the resin is therefore suitable for the construction of microstructures enabling controlled silver ion release and antifouling properties. At the same time the physical properties of the material, such as viscosity and elasticity modulus are preserved. The described approach can be used for the fabrication of facile, low-cost 3D printed resin with antifouling-antibacterial properties with the possibility to control the release of Ag(+) through microstructuring. MDPI 2021-11-06 /pmc/articles/PMC8587023/ /pubmed/34771393 http://dx.doi.org/10.3390/polym13213838 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Idriss, Hazem
Elashnikov, Roman
Rimpelová, Silvie
Vokatá, Barbora
Haušild, Petr
Kolská, Zdeňka
Lyukatov, Oleksiy
Švorčík, Václav
Printable Resin Modified by Grafted Silver Nanoparticles for Preparation of Antifouling Microstructures with Antibacterial Effect
title Printable Resin Modified by Grafted Silver Nanoparticles for Preparation of Antifouling Microstructures with Antibacterial Effect
title_full Printable Resin Modified by Grafted Silver Nanoparticles for Preparation of Antifouling Microstructures with Antibacterial Effect
title_fullStr Printable Resin Modified by Grafted Silver Nanoparticles for Preparation of Antifouling Microstructures with Antibacterial Effect
title_full_unstemmed Printable Resin Modified by Grafted Silver Nanoparticles for Preparation of Antifouling Microstructures with Antibacterial Effect
title_short Printable Resin Modified by Grafted Silver Nanoparticles for Preparation of Antifouling Microstructures with Antibacterial Effect
title_sort printable resin modified by grafted silver nanoparticles for preparation of antifouling microstructures with antibacterial effect
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8587023/
https://www.ncbi.nlm.nih.gov/pubmed/34771393
http://dx.doi.org/10.3390/polym13213838
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