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Environmentally Friendly Cross-Linked Antifouling Coatings Based on Dual Antimicrobial Action

The synthesis of environmentally friendly antimicrobial polymeric coatings, especially in the case of aquaculture, that inhibit the growth of bio-deposits is a very important issue that will contribute to the cost reduction of nets’ cleaning process as well as the protection of the submarine wealth...

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Autores principales: Lainioti, Georgia C., Tsapikouni, Anthi, Druvari, Denisa, Avramidis, Pavlos, Prevedouros, Ioannis, Glaropoulos, Alexios, Kallitsis, Joannis K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8125455/
https://www.ncbi.nlm.nih.gov/pubmed/33925039
http://dx.doi.org/10.3390/ijms22094658
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author Lainioti, Georgia C.
Tsapikouni, Anthi
Druvari, Denisa
Avramidis, Pavlos
Prevedouros, Ioannis
Glaropoulos, Alexios
Kallitsis, Joannis K.
author_facet Lainioti, Georgia C.
Tsapikouni, Anthi
Druvari, Denisa
Avramidis, Pavlos
Prevedouros, Ioannis
Glaropoulos, Alexios
Kallitsis, Joannis K.
author_sort Lainioti, Georgia C.
collection PubMed
description The synthesis of environmentally friendly antimicrobial polymeric coatings, especially in the case of aquaculture, that inhibit the growth of bio-deposits is a very important issue that will contribute to the cost reduction of nets’ cleaning process as well as the protection of the submarine wealth from the biostatic substances used so far. In the present work, the antimicrobial polymers P(SSAmC(16)-co-VBCHAMx) and the terpolymer P(SSAmC(16)w-co-VBCHAMx-co-GMAy) were synthesized, bearing quaternary ammonium compounds, electrostatically bound and covalently attached at the same polymer chain. The combination of the two types is of particular importance, as it can provide effective antimicrobial polymeric materials with self-polishing capabilities as a result of the released nature of the antimicrobial, in combination with the permanent local action of the immobilized species. The cross-linking reaction of the terpolymer P(SSAmC(16)w-co-VBCHAMx-co-GMAy) with the homopolymer polyacrylic acid (PAA) was tested at 120 °C in terms of the equivalent ratio between epoxy and carboxyl groups. The synthesized polymers were further used for the coating of aquaculture nets and tested in terms of antifouling efficiency in lab and scale-up conditions. Uncoated nets were also used in all applications for comparison reasons. The coated nets performed efficiently for 35 days in lab-scale and 66 days in scale-up conditions, showing a high antifouling activity in both fields compared to the uncoated nets.
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spelling pubmed-81254552021-05-17 Environmentally Friendly Cross-Linked Antifouling Coatings Based on Dual Antimicrobial Action Lainioti, Georgia C. Tsapikouni, Anthi Druvari, Denisa Avramidis, Pavlos Prevedouros, Ioannis Glaropoulos, Alexios Kallitsis, Joannis K. Int J Mol Sci Article The synthesis of environmentally friendly antimicrobial polymeric coatings, especially in the case of aquaculture, that inhibit the growth of bio-deposits is a very important issue that will contribute to the cost reduction of nets’ cleaning process as well as the protection of the submarine wealth from the biostatic substances used so far. In the present work, the antimicrobial polymers P(SSAmC(16)-co-VBCHAMx) and the terpolymer P(SSAmC(16)w-co-VBCHAMx-co-GMAy) were synthesized, bearing quaternary ammonium compounds, electrostatically bound and covalently attached at the same polymer chain. The combination of the two types is of particular importance, as it can provide effective antimicrobial polymeric materials with self-polishing capabilities as a result of the released nature of the antimicrobial, in combination with the permanent local action of the immobilized species. The cross-linking reaction of the terpolymer P(SSAmC(16)w-co-VBCHAMx-co-GMAy) with the homopolymer polyacrylic acid (PAA) was tested at 120 °C in terms of the equivalent ratio between epoxy and carboxyl groups. The synthesized polymers were further used for the coating of aquaculture nets and tested in terms of antifouling efficiency in lab and scale-up conditions. Uncoated nets were also used in all applications for comparison reasons. The coated nets performed efficiently for 35 days in lab-scale and 66 days in scale-up conditions, showing a high antifouling activity in both fields compared to the uncoated nets. MDPI 2021-04-28 /pmc/articles/PMC8125455/ /pubmed/33925039 http://dx.doi.org/10.3390/ijms22094658 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
Lainioti, Georgia C.
Tsapikouni, Anthi
Druvari, Denisa
Avramidis, Pavlos
Prevedouros, Ioannis
Glaropoulos, Alexios
Kallitsis, Joannis K.
Environmentally Friendly Cross-Linked Antifouling Coatings Based on Dual Antimicrobial Action
title Environmentally Friendly Cross-Linked Antifouling Coatings Based on Dual Antimicrobial Action
title_full Environmentally Friendly Cross-Linked Antifouling Coatings Based on Dual Antimicrobial Action
title_fullStr Environmentally Friendly Cross-Linked Antifouling Coatings Based on Dual Antimicrobial Action
title_full_unstemmed Environmentally Friendly Cross-Linked Antifouling Coatings Based on Dual Antimicrobial Action
title_short Environmentally Friendly Cross-Linked Antifouling Coatings Based on Dual Antimicrobial Action
title_sort environmentally friendly cross-linked antifouling coatings based on dual antimicrobial action
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8125455/
https://www.ncbi.nlm.nih.gov/pubmed/33925039
http://dx.doi.org/10.3390/ijms22094658
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