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Preparation of Laser-Ablated Ag Nanoparticle–MMT Clay-Based Beeswax Antibiofilm Coating

Unlike other antimicrobial agents, Ag-based composites are stable and currently widely used as broad spectral additives, fighting microbial biofilms and other biological threats. The goal of the present study is to develop a green, multifunctional, and robust antibiofilm water-insoluble coating, inh...

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Autores principales: Hossain, Syed Imdadul, Bajrami, Diellza, Sportelli, Maria Chiara, Picca, Rosaria Anna, Volpe, Annalisa, Gaudiuso, Caterina, Ancona, Antonio, Gentile, Luigi, Palazzo, Gerardo, Ditaranto, Nicoletta, Mizaikoff, Boris, Cioffi, Nicola
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9952241/
https://www.ncbi.nlm.nih.gov/pubmed/36830105
http://dx.doi.org/10.3390/antibiotics12020194
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author Hossain, Syed Imdadul
Bajrami, Diellza
Sportelli, Maria Chiara
Picca, Rosaria Anna
Volpe, Annalisa
Gaudiuso, Caterina
Ancona, Antonio
Gentile, Luigi
Palazzo, Gerardo
Ditaranto, Nicoletta
Mizaikoff, Boris
Cioffi, Nicola
author_facet Hossain, Syed Imdadul
Bajrami, Diellza
Sportelli, Maria Chiara
Picca, Rosaria Anna
Volpe, Annalisa
Gaudiuso, Caterina
Ancona, Antonio
Gentile, Luigi
Palazzo, Gerardo
Ditaranto, Nicoletta
Mizaikoff, Boris
Cioffi, Nicola
author_sort Hossain, Syed Imdadul
collection PubMed
description Unlike other antimicrobial agents, Ag-based composites are stable and currently widely used as broad spectral additives, fighting microbial biofilms and other biological threats. The goal of the present study is to develop a green, multifunctional, and robust antibiofilm water-insoluble coating, inhibiting histamine-producing Lentilactobacillus parabuchneri biofilms. Herein, laser-ablated Ag NPs (L-Ag NPs) were incorporated into and onto a montmorillonite (MMT) surface layer with a simple wet chemical method, provided that the electrostatic interaction between L-Ag NPs and MMT clay led to the formation of L-Ag/MMT nanoantimicrobials (NAMs). The use of MMT support can facilitate handling Ag NPs in industrial applications. The Ag/MMT composite was characterized with transmission electron microscopy (TEM) and scanning electron microscopy (SEM), which confirmed the entrapment of L-Ag NPs into MMT clay. The surface chemical composition was assessed with X-ray photoelectron spectroscopy, proving that Ag NPs were in contact with and deposited onto the surface of MMT. The characteristic L-Ag/MMT band was investigated with UV–vis spectroscopy. Following that, the L-Ag/MMT composite was embedded into a biosafe water-insoluble beeswax agent with a spin coating technique. The antimicrobial ion release kinetic profile of the L-Ag/MMT/beeswax coating through an electrothermal atomic absorption spectroscopy (ETAAS) study supported the controlled release of Ag ions, reaching a plateau at 420 ± 80 nM, which is safe from the point of view of Ag toxicity. Microbial biofilm growth inhibition was assessed with real-time in situ Fourier transform infrared attenuated total reflection spectroscopy (FTIR-ATR) in a flow cell assembly over 32 h. The study was further supported by optical density (OD) measurements and SEM on bacteria incubated in the presence of the L-Ag/MMT/beeswax coating.
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spelling pubmed-99522412023-02-25 Preparation of Laser-Ablated Ag Nanoparticle–MMT Clay-Based Beeswax Antibiofilm Coating Hossain, Syed Imdadul Bajrami, Diellza Sportelli, Maria Chiara Picca, Rosaria Anna Volpe, Annalisa Gaudiuso, Caterina Ancona, Antonio Gentile, Luigi Palazzo, Gerardo Ditaranto, Nicoletta Mizaikoff, Boris Cioffi, Nicola Antibiotics (Basel) Article Unlike other antimicrobial agents, Ag-based composites are stable and currently widely used as broad spectral additives, fighting microbial biofilms and other biological threats. The goal of the present study is to develop a green, multifunctional, and robust antibiofilm water-insoluble coating, inhibiting histamine-producing Lentilactobacillus parabuchneri biofilms. Herein, laser-ablated Ag NPs (L-Ag NPs) were incorporated into and onto a montmorillonite (MMT) surface layer with a simple wet chemical method, provided that the electrostatic interaction between L-Ag NPs and MMT clay led to the formation of L-Ag/MMT nanoantimicrobials (NAMs). The use of MMT support can facilitate handling Ag NPs in industrial applications. The Ag/MMT composite was characterized with transmission electron microscopy (TEM) and scanning electron microscopy (SEM), which confirmed the entrapment of L-Ag NPs into MMT clay. The surface chemical composition was assessed with X-ray photoelectron spectroscopy, proving that Ag NPs were in contact with and deposited onto the surface of MMT. The characteristic L-Ag/MMT band was investigated with UV–vis spectroscopy. Following that, the L-Ag/MMT composite was embedded into a biosafe water-insoluble beeswax agent with a spin coating technique. The antimicrobial ion release kinetic profile of the L-Ag/MMT/beeswax coating through an electrothermal atomic absorption spectroscopy (ETAAS) study supported the controlled release of Ag ions, reaching a plateau at 420 ± 80 nM, which is safe from the point of view of Ag toxicity. Microbial biofilm growth inhibition was assessed with real-time in situ Fourier transform infrared attenuated total reflection spectroscopy (FTIR-ATR) in a flow cell assembly over 32 h. The study was further supported by optical density (OD) measurements and SEM on bacteria incubated in the presence of the L-Ag/MMT/beeswax coating. MDPI 2023-01-17 /pmc/articles/PMC9952241/ /pubmed/36830105 http://dx.doi.org/10.3390/antibiotics12020194 Text en © 2023 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
Hossain, Syed Imdadul
Bajrami, Diellza
Sportelli, Maria Chiara
Picca, Rosaria Anna
Volpe, Annalisa
Gaudiuso, Caterina
Ancona, Antonio
Gentile, Luigi
Palazzo, Gerardo
Ditaranto, Nicoletta
Mizaikoff, Boris
Cioffi, Nicola
Preparation of Laser-Ablated Ag Nanoparticle–MMT Clay-Based Beeswax Antibiofilm Coating
title Preparation of Laser-Ablated Ag Nanoparticle–MMT Clay-Based Beeswax Antibiofilm Coating
title_full Preparation of Laser-Ablated Ag Nanoparticle–MMT Clay-Based Beeswax Antibiofilm Coating
title_fullStr Preparation of Laser-Ablated Ag Nanoparticle–MMT Clay-Based Beeswax Antibiofilm Coating
title_full_unstemmed Preparation of Laser-Ablated Ag Nanoparticle–MMT Clay-Based Beeswax Antibiofilm Coating
title_short Preparation of Laser-Ablated Ag Nanoparticle–MMT Clay-Based Beeswax Antibiofilm Coating
title_sort preparation of laser-ablated ag nanoparticle–mmt clay-based beeswax antibiofilm coating
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9952241/
https://www.ncbi.nlm.nih.gov/pubmed/36830105
http://dx.doi.org/10.3390/antibiotics12020194
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