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Facile In-Situ Fabrication of a Ternary ZnO/TiO(2)/Ag Nanocomposite for Enhanced Bactericidal and Biocompatibility Properties

This paper presents for the first time a successful fabrication of ternary ZnO/TiO(2)/Ag nanocomposites consisting of zinc oxide (ZnO), titania (TiO(2)) and silver (Ag) nanoparticles (NPs) synthesised using Morinda citrifolia fruit (MCF) extract. ZnONPs were synthesised using the co-precipitation me...

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Autores principales: Sakthi Mohan, Priyadarshini, Sonsuddin, Faridah, Mainal, Azizah Binti, Yahya, Rosiyah, Venkatraman, Gopinath, Vadivelu, Jamuna, Al-Farraj, Dunia A., Al-Mohaimeed, Amal M., Alarijani, Khaloud Mohammed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7831044/
https://www.ncbi.nlm.nih.gov/pubmed/33477455
http://dx.doi.org/10.3390/antibiotics10010086
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author Sakthi Mohan, Priyadarshini
Sonsuddin, Faridah
Mainal, Azizah Binti
Yahya, Rosiyah
Venkatraman, Gopinath
Vadivelu, Jamuna
Al-Farraj, Dunia A.
Al-Mohaimeed, Amal M.
Alarijani, Khaloud Mohammed
author_facet Sakthi Mohan, Priyadarshini
Sonsuddin, Faridah
Mainal, Azizah Binti
Yahya, Rosiyah
Venkatraman, Gopinath
Vadivelu, Jamuna
Al-Farraj, Dunia A.
Al-Mohaimeed, Amal M.
Alarijani, Khaloud Mohammed
author_sort Sakthi Mohan, Priyadarshini
collection PubMed
description This paper presents for the first time a successful fabrication of ternary ZnO/TiO(2)/Ag nanocomposites consisting of zinc oxide (ZnO), titania (TiO(2)) and silver (Ag) nanoparticles (NPs) synthesised using Morinda citrifolia fruit (MCF) extract. ZnONPs were synthesised using the co-precipitation method, and TiO(2) and Ag were introduced into the precursor solutions under microwave irradiation to obtain ZnO/TiO(2)/Ag nanocomposites (NCs). This material demonstrated enhanced bactericidal effect towards bacterial pathogens compared to that of the binary TiO(2)/Ag, Ag and TiO(2) alone. In vitro cytotoxicity results of the as-synthesised ZnO/TiO(2)/AgNCs on RAW 264.7 macrophages and A549 cell lines revealed a negative role in cytotoxicity, but contributed astoundingly towards antimicrobials as compared of Ag alone and binary Ag/TiO(2). This study shows that the resultant ternary metal/bi-semiconductor nanocomposites may provide a therapeutic strategy for the eradication of bacterial pathogens without affecting the healthy mammalian cells.
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spelling pubmed-78310442021-01-26 Facile In-Situ Fabrication of a Ternary ZnO/TiO(2)/Ag Nanocomposite for Enhanced Bactericidal and Biocompatibility Properties Sakthi Mohan, Priyadarshini Sonsuddin, Faridah Mainal, Azizah Binti Yahya, Rosiyah Venkatraman, Gopinath Vadivelu, Jamuna Al-Farraj, Dunia A. Al-Mohaimeed, Amal M. Alarijani, Khaloud Mohammed Antibiotics (Basel) Article This paper presents for the first time a successful fabrication of ternary ZnO/TiO(2)/Ag nanocomposites consisting of zinc oxide (ZnO), titania (TiO(2)) and silver (Ag) nanoparticles (NPs) synthesised using Morinda citrifolia fruit (MCF) extract. ZnONPs were synthesised using the co-precipitation method, and TiO(2) and Ag were introduced into the precursor solutions under microwave irradiation to obtain ZnO/TiO(2)/Ag nanocomposites (NCs). This material demonstrated enhanced bactericidal effect towards bacterial pathogens compared to that of the binary TiO(2)/Ag, Ag and TiO(2) alone. In vitro cytotoxicity results of the as-synthesised ZnO/TiO(2)/AgNCs on RAW 264.7 macrophages and A549 cell lines revealed a negative role in cytotoxicity, but contributed astoundingly towards antimicrobials as compared of Ag alone and binary Ag/TiO(2). This study shows that the resultant ternary metal/bi-semiconductor nanocomposites may provide a therapeutic strategy for the eradication of bacterial pathogens without affecting the healthy mammalian cells. MDPI 2021-01-18 /pmc/articles/PMC7831044/ /pubmed/33477455 http://dx.doi.org/10.3390/antibiotics10010086 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
Sakthi Mohan, Priyadarshini
Sonsuddin, Faridah
Mainal, Azizah Binti
Yahya, Rosiyah
Venkatraman, Gopinath
Vadivelu, Jamuna
Al-Farraj, Dunia A.
Al-Mohaimeed, Amal M.
Alarijani, Khaloud Mohammed
Facile In-Situ Fabrication of a Ternary ZnO/TiO(2)/Ag Nanocomposite for Enhanced Bactericidal and Biocompatibility Properties
title Facile In-Situ Fabrication of a Ternary ZnO/TiO(2)/Ag Nanocomposite for Enhanced Bactericidal and Biocompatibility Properties
title_full Facile In-Situ Fabrication of a Ternary ZnO/TiO(2)/Ag Nanocomposite for Enhanced Bactericidal and Biocompatibility Properties
title_fullStr Facile In-Situ Fabrication of a Ternary ZnO/TiO(2)/Ag Nanocomposite for Enhanced Bactericidal and Biocompatibility Properties
title_full_unstemmed Facile In-Situ Fabrication of a Ternary ZnO/TiO(2)/Ag Nanocomposite for Enhanced Bactericidal and Biocompatibility Properties
title_short Facile In-Situ Fabrication of a Ternary ZnO/TiO(2)/Ag Nanocomposite for Enhanced Bactericidal and Biocompatibility Properties
title_sort facile in-situ fabrication of a ternary zno/tio(2)/ag nanocomposite for enhanced bactericidal and biocompatibility properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7831044/
https://www.ncbi.nlm.nih.gov/pubmed/33477455
http://dx.doi.org/10.3390/antibiotics10010086
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