Synthesis of Copper Oxide (CuO) Nanoparticles and Surveying Its Bactericidal Properties against Aeromonas Hydrophila Bacteria
Background & Objective: CuO is one of the most important transition metal oxides due to its exclusive properties. It is used in various technological applications such as superconductors and gas sensors. Recently, it has been used as an antimicrobial agent against various bacterial species. In t...
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doaj-09e8c5be34dd4b759ebeb6a6beba80ac2020-11-25T00:12:20ZfasFasa University of Medical SciencesJournal of Fasa University of Medical Sciences2228-51052228-73292015-05-01513643Synthesis of Copper Oxide (CuO) Nanoparticles and Surveying Its Bactericidal Properties against Aeromonas Hydrophila BacteriaSF Shaffiey0M Ahmadi1SR Shaffiey2M Shapoori3H Varshoie4F Azari5 Department of Natural Science, Savadkooh Branch, Islamic Azad University, Savadkooh, Iran. Department of Natural Science, Savadkooh Branch, Islamic Azad University, Savadkooh, Iran Young Researchers Club, Islamic Azad University, Qaemshahr Branch, Qaemshahr, Iran. Department of Natural Science, Savadkooh Branch, Islamic Azad University, Savadkooh, Iran Department of Natural Science, Savadkooh Branch, Islamic Azad University, Savadkooh, Iran Young Researchers Club, Islamic Azad University, Savadkooh Branch, Savadkooh, Iran Background & Objective: CuO is one of the most important transition metal oxides due to its exclusive properties. It is used in various technological applications such as superconductors and gas sensors. Recently, it has been used as an antimicrobial agent against various bacterial species. In this study, we synthesized CuO nanoparticles and evaluated their antibacterial property. Materials & Methods: Single crystalline nanoparticles of copper oxide having almost uniform particle size of 5-6 nm have been synthesized. The used technique is free from toxic solvents and amines, and it is based on a simple reaction of copper sulfate and De-ionized water (DI). In addition, their bactericidal effects against Aeromonas hydrophila ATCC 7966T bacteria were investigated. Minimum Inhibitory Concentration (MIC) and Minimum Bactericidal Concentration (MBC) were determined with well diffusion method and liquid culture for all of the Aeromonas hydrophila culture Medias. Results: XRD(X Ray Diffraction) spectra confirmed the formation of single phase CuO nanoparticles. A minimum crystallite size of 5-6 nm was observed in the case of CuO nanoparticles. Transmission electron microscopy results corroborate well with XRD results. CuO nanoparticles exhibited inhibitory effects against Gram-negative bacteria. Conclusion: The present study confirms that copper oxide nanoparticles have great ability as an antimicrobial agent against Aeromonas hydrophila.http://journal.fums.ac.ir/browse.php?a_code=A-10-303-1&slc_lang=en&sid=1Nanoparticles Aeromonas hydrophila Copper oxide Antimicrobial activity |
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DOAJ |
language |
fas |
format |
Article |
sources |
DOAJ |
author |
SF Shaffiey M Ahmadi SR Shaffiey M Shapoori H Varshoie F Azari |
spellingShingle |
SF Shaffiey M Ahmadi SR Shaffiey M Shapoori H Varshoie F Azari Synthesis of Copper Oxide (CuO) Nanoparticles and Surveying Its Bactericidal Properties against Aeromonas Hydrophila Bacteria Journal of Fasa University of Medical Sciences Nanoparticles Aeromonas hydrophila Copper oxide Antimicrobial activity |
author_facet |
SF Shaffiey M Ahmadi SR Shaffiey M Shapoori H Varshoie F Azari |
author_sort |
SF Shaffiey |
title |
Synthesis of Copper Oxide (CuO) Nanoparticles and Surveying Its Bactericidal Properties against Aeromonas Hydrophila Bacteria |
title_short |
Synthesis of Copper Oxide (CuO) Nanoparticles and Surveying Its Bactericidal Properties against Aeromonas Hydrophila Bacteria |
title_full |
Synthesis of Copper Oxide (CuO) Nanoparticles and Surveying Its Bactericidal Properties against Aeromonas Hydrophila Bacteria |
title_fullStr |
Synthesis of Copper Oxide (CuO) Nanoparticles and Surveying Its Bactericidal Properties against Aeromonas Hydrophila Bacteria |
title_full_unstemmed |
Synthesis of Copper Oxide (CuO) Nanoparticles and Surveying Its Bactericidal Properties against Aeromonas Hydrophila Bacteria |
title_sort |
synthesis of copper oxide (cuo) nanoparticles and surveying its bactericidal properties against aeromonas hydrophila bacteria |
publisher |
Fasa University of Medical Sciences |
series |
Journal of Fasa University of Medical Sciences |
issn |
2228-5105 2228-7329 |
publishDate |
2015-05-01 |
description |
Background
& Objective: CuO is one of the most important transition
metal oxides due to its exclusive properties. It is used in various
technological applications such as superconductors and gas sensors. Recently,
it has been used as an antimicrobial agent against various bacterial species.
In this study, we synthesized CuO nanoparticles and evaluated their
antibacterial property. Materials
& Methods: Single crystalline nanoparticles of copper
oxide having almost uniform particle size of 5-6 nm have been synthesized. The
used technique is free from toxic solvents and amines, and it is based on a
simple reaction of copper sulfate and De-ionized water (DI). In addition, their
bactericidal effects against Aeromonas hydrophila ATCC 7966T bacteria were
investigated. Minimum Inhibitory Concentration (MIC) and Minimum Bactericidal
Concentration (MBC) were determined with well diffusion method and liquid
culture for all of the Aeromonas hydrophila culture Medias. Results: XRD(X Ray Diffraction) spectra confirmed the
formation of single phase CuO nanoparticles. A minimum crystallite size of 5-6
nm was observed in the case of CuO nanoparticles. Transmission electron
microscopy results corroborate well with XRD results. CuO nanoparticles
exhibited inhibitory effects against Gram-negative bacteria. Conclusion: The present study confirms that copper oxide nanoparticles have
great ability as an antimicrobial agent against Aeromonas hydrophila. |
topic |
Nanoparticles Aeromonas hydrophila Copper oxide Antimicrobial activity |
url |
http://journal.fums.ac.ir/browse.php?a_code=A-10-303-1&slc_lang=en&sid=1 |
work_keys_str_mv |
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