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Optimisation of Cobalt Oxide Nanoparticles Synthesis as Bactericidal Agents

AIM: With the increased bacterial resistance and the resulting problems in recent years, it seems necessary to find new biocompatible compounds to confront this problem. This research was conducted to optimise the synthesis of cobalt oxide nanoparticles with the highest antibacterial activity. METHO...

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Autores principales: Moradpoor, Hedaiat, Safaei, Mohsen, Rezaei, Farzad, Golshah, Amin, Jamshidy, Ladan, Hatam, Reza, Abdullah, Rawand S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Republic of Macedonia 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6901869/
https://www.ncbi.nlm.nih.gov/pubmed/31844432
http://dx.doi.org/10.3889/oamjms.2019.747
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author Moradpoor, Hedaiat
Safaei, Mohsen
Rezaei, Farzad
Golshah, Amin
Jamshidy, Ladan
Hatam, Reza
Abdullah, Rawand S.
author_facet Moradpoor, Hedaiat
Safaei, Mohsen
Rezaei, Farzad
Golshah, Amin
Jamshidy, Ladan
Hatam, Reza
Abdullah, Rawand S.
author_sort Moradpoor, Hedaiat
collection PubMed
description AIM: With the increased bacterial resistance and the resulting problems in recent years, it seems necessary to find new biocompatible compounds to confront this problem. This research was conducted to optimise the synthesis of cobalt oxide nanoparticles with the highest antibacterial activity. METHODS: In the present study, 9 experiments were designed using the Taguchi method. The effect of three factors of cobalt nitrate, KOH and the stirring time in the synthesis of cobalt oxide nanoparticles with the highest antibacterial activity was investigated. The bactericidal effect of synthesised nanoparticles was evaluated using the colony-forming unit (CFU) and disk diffusion methods. The characteristics of nanoparticles were studied using the Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD) and the scanning electron microscopy (SEM). RESULTS: The results indicated that all three evaluated factors were effective on the antibacterial properties of the synthesised nanoparticles. The best antibacterial activity of cobalt oxide nanoparticles was observed in experiment 9 (cobalt nitrate 0.6 M, KOH 2M and stirring time 60 min). The study of nanoparticles synthesised by FTIR, XRD, and SEM confirmed the formation of cobalt oxide nanoparticles with size (24 nm) and a proper structure (spinel structure). CONCLUSION: Due to the optimal antibacterial properties of the synthesised cobalt oxide nanoparticles, they can be used in the fabrication of dental and medical equipment with antibacterial properties.
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spelling pubmed-69018692019-12-16 Optimisation of Cobalt Oxide Nanoparticles Synthesis as Bactericidal Agents Moradpoor, Hedaiat Safaei, Mohsen Rezaei, Farzad Golshah, Amin Jamshidy, Ladan Hatam, Reza Abdullah, Rawand S. Open Access Maced J Med Sci Basic Science AIM: With the increased bacterial resistance and the resulting problems in recent years, it seems necessary to find new biocompatible compounds to confront this problem. This research was conducted to optimise the synthesis of cobalt oxide nanoparticles with the highest antibacterial activity. METHODS: In the present study, 9 experiments were designed using the Taguchi method. The effect of three factors of cobalt nitrate, KOH and the stirring time in the synthesis of cobalt oxide nanoparticles with the highest antibacterial activity was investigated. The bactericidal effect of synthesised nanoparticles was evaluated using the colony-forming unit (CFU) and disk diffusion methods. The characteristics of nanoparticles were studied using the Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD) and the scanning electron microscopy (SEM). RESULTS: The results indicated that all three evaluated factors were effective on the antibacterial properties of the synthesised nanoparticles. The best antibacterial activity of cobalt oxide nanoparticles was observed in experiment 9 (cobalt nitrate 0.6 M, KOH 2M and stirring time 60 min). The study of nanoparticles synthesised by FTIR, XRD, and SEM confirmed the formation of cobalt oxide nanoparticles with size (24 nm) and a proper structure (spinel structure). CONCLUSION: Due to the optimal antibacterial properties of the synthesised cobalt oxide nanoparticles, they can be used in the fabrication of dental and medical equipment with antibacterial properties. Republic of Macedonia 2019-08-30 /pmc/articles/PMC6901869/ /pubmed/31844432 http://dx.doi.org/10.3889/oamjms.2019.747 Text en Copyright: © 2019 Hedaiat Moradpoor, Mohsen Safaei, Farzad Rezaei, Amin Golshah, Ladan Jamshidy, Reza Hatam, Rawand S. Abdullah. http://creativecommons.org/licenses/CC BY-NC/4.0 This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 International License (CC BY-NC 4.0).
spellingShingle Basic Science
Moradpoor, Hedaiat
Safaei, Mohsen
Rezaei, Farzad
Golshah, Amin
Jamshidy, Ladan
Hatam, Reza
Abdullah, Rawand S.
Optimisation of Cobalt Oxide Nanoparticles Synthesis as Bactericidal Agents
title Optimisation of Cobalt Oxide Nanoparticles Synthesis as Bactericidal Agents
title_full Optimisation of Cobalt Oxide Nanoparticles Synthesis as Bactericidal Agents
title_fullStr Optimisation of Cobalt Oxide Nanoparticles Synthesis as Bactericidal Agents
title_full_unstemmed Optimisation of Cobalt Oxide Nanoparticles Synthesis as Bactericidal Agents
title_short Optimisation of Cobalt Oxide Nanoparticles Synthesis as Bactericidal Agents
title_sort optimisation of cobalt oxide nanoparticles synthesis as bactericidal agents
topic Basic Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6901869/
https://www.ncbi.nlm.nih.gov/pubmed/31844432
http://dx.doi.org/10.3889/oamjms.2019.747
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