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Bioactive Coatings Based on Nanostructured TiO(2) Modified with Noble Metal Nanoparticles and Lysozyme for Ti Dental Implants

This work presents the synthesis of nanostructured TiO(2) modified with noble metal nanoparticles (Au, Ag) and lysozyme and coated on titanium foil. Moreover, the specific structural and functional properties of the resulting inorganic and hybrid materials were explored. The purpose of this study wa...

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Autores principales: Chifor, Emilian, Bordeianu, Ion, Anastasescu, Crina, Calderon-Moreno, Jose Maria, Bratan, Veronica, Eftemie, Diana-Ioana, Anastasescu, Mihai, Preda, Silviu, Plavan, Gabriel, Pelinescu, Diana, Ionescu, Robertina, Stoica, Ileana, Zaharescu, Maria, Balint, Ioan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9502567/
https://www.ncbi.nlm.nih.gov/pubmed/36144974
http://dx.doi.org/10.3390/nano12183186
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author Chifor, Emilian
Bordeianu, Ion
Anastasescu, Crina
Calderon-Moreno, Jose Maria
Bratan, Veronica
Eftemie, Diana-Ioana
Anastasescu, Mihai
Preda, Silviu
Plavan, Gabriel
Pelinescu, Diana
Ionescu, Robertina
Stoica, Ileana
Zaharescu, Maria
Balint, Ioan
author_facet Chifor, Emilian
Bordeianu, Ion
Anastasescu, Crina
Calderon-Moreno, Jose Maria
Bratan, Veronica
Eftemie, Diana-Ioana
Anastasescu, Mihai
Preda, Silviu
Plavan, Gabriel
Pelinescu, Diana
Ionescu, Robertina
Stoica, Ileana
Zaharescu, Maria
Balint, Ioan
author_sort Chifor, Emilian
collection PubMed
description This work presents the synthesis of nanostructured TiO(2) modified with noble metal nanoparticles (Au, Ag) and lysozyme and coated on titanium foil. Moreover, the specific structural and functional properties of the resulting inorganic and hybrid materials were explored. The purpose of this study was to identify the key parameters for developing engineered coatings on titanium foil appropriate for efficient dental implants with intrinsic antibacterial activity. TiO(2) nanoparticles obtained using the sol–gel method were deposited on Ti foil and modified with Au/Ag nanoparticles. Morphological and structural investigations (scanning electron and atomic force microscopies, X-ray diffraction, photoluminescence, and UV–Vis spectroscopies) were carried out for the characterization of the resulting inorganic coatings. In order to modify their antibacterial activity, which is essential for safe dental implants, the following aspects were investigated: (a) singlet oxygen ((1)O(2)) generation by inorganic coatings exposed to visible light irradiation; (b) the antibacterial behavior emphasized by titania-based coatings deposited on titanium foil (TiO(2)/Ti foil; Au–TiO(2)/Ti foil, Ag–TiO(2)/Ti foil); (c) the lysozyme bioactivity on the microbial substrate (Micrococcus lysodeicticus) after its adsorption on inorganic surfaces (Lys/TiO(2)/Ti foil; Lys/Au–TiO(2)/Ti foil, Lys/Ag–TiO(2)/Ti foil); (d) the enzymatic activity of the above-mentioned hybrids materials for the hydrolysis reaction of a synthetic organic substrate usually used for monitoring the lysozyme biocatalytic activity, namely, 4-Methylumbelliferyl β-D-N,N′,N″-triacetylchitotrioside [4-MU-β- (GlcNAc)(3)]. This was evaluated by identifying the presence of a fluorescent reaction product, 7-hydroxy-4-metyl coumarin (4-methylumbelliferone).
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spelling pubmed-95025672022-09-24 Bioactive Coatings Based on Nanostructured TiO(2) Modified with Noble Metal Nanoparticles and Lysozyme for Ti Dental Implants Chifor, Emilian Bordeianu, Ion Anastasescu, Crina Calderon-Moreno, Jose Maria Bratan, Veronica Eftemie, Diana-Ioana Anastasescu, Mihai Preda, Silviu Plavan, Gabriel Pelinescu, Diana Ionescu, Robertina Stoica, Ileana Zaharescu, Maria Balint, Ioan Nanomaterials (Basel) Article This work presents the synthesis of nanostructured TiO(2) modified with noble metal nanoparticles (Au, Ag) and lysozyme and coated on titanium foil. Moreover, the specific structural and functional properties of the resulting inorganic and hybrid materials were explored. The purpose of this study was to identify the key parameters for developing engineered coatings on titanium foil appropriate for efficient dental implants with intrinsic antibacterial activity. TiO(2) nanoparticles obtained using the sol–gel method were deposited on Ti foil and modified with Au/Ag nanoparticles. Morphological and structural investigations (scanning electron and atomic force microscopies, X-ray diffraction, photoluminescence, and UV–Vis spectroscopies) were carried out for the characterization of the resulting inorganic coatings. In order to modify their antibacterial activity, which is essential for safe dental implants, the following aspects were investigated: (a) singlet oxygen ((1)O(2)) generation by inorganic coatings exposed to visible light irradiation; (b) the antibacterial behavior emphasized by titania-based coatings deposited on titanium foil (TiO(2)/Ti foil; Au–TiO(2)/Ti foil, Ag–TiO(2)/Ti foil); (c) the lysozyme bioactivity on the microbial substrate (Micrococcus lysodeicticus) after its adsorption on inorganic surfaces (Lys/TiO(2)/Ti foil; Lys/Au–TiO(2)/Ti foil, Lys/Ag–TiO(2)/Ti foil); (d) the enzymatic activity of the above-mentioned hybrids materials for the hydrolysis reaction of a synthetic organic substrate usually used for monitoring the lysozyme biocatalytic activity, namely, 4-Methylumbelliferyl β-D-N,N′,N″-triacetylchitotrioside [4-MU-β- (GlcNAc)(3)]. This was evaluated by identifying the presence of a fluorescent reaction product, 7-hydroxy-4-metyl coumarin (4-methylumbelliferone). MDPI 2022-09-14 /pmc/articles/PMC9502567/ /pubmed/36144974 http://dx.doi.org/10.3390/nano12183186 Text en © 2022 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
Chifor, Emilian
Bordeianu, Ion
Anastasescu, Crina
Calderon-Moreno, Jose Maria
Bratan, Veronica
Eftemie, Diana-Ioana
Anastasescu, Mihai
Preda, Silviu
Plavan, Gabriel
Pelinescu, Diana
Ionescu, Robertina
Stoica, Ileana
Zaharescu, Maria
Balint, Ioan
Bioactive Coatings Based on Nanostructured TiO(2) Modified with Noble Metal Nanoparticles and Lysozyme for Ti Dental Implants
title Bioactive Coatings Based on Nanostructured TiO(2) Modified with Noble Metal Nanoparticles and Lysozyme for Ti Dental Implants
title_full Bioactive Coatings Based on Nanostructured TiO(2) Modified with Noble Metal Nanoparticles and Lysozyme for Ti Dental Implants
title_fullStr Bioactive Coatings Based on Nanostructured TiO(2) Modified with Noble Metal Nanoparticles and Lysozyme for Ti Dental Implants
title_full_unstemmed Bioactive Coatings Based on Nanostructured TiO(2) Modified with Noble Metal Nanoparticles and Lysozyme for Ti Dental Implants
title_short Bioactive Coatings Based on Nanostructured TiO(2) Modified with Noble Metal Nanoparticles and Lysozyme for Ti Dental Implants
title_sort bioactive coatings based on nanostructured tio(2) modified with noble metal nanoparticles and lysozyme for ti dental implants
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9502567/
https://www.ncbi.nlm.nih.gov/pubmed/36144974
http://dx.doi.org/10.3390/nano12183186
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