Producción Científica Profesorado

Biocidal activity of CuO nanoleaves against AGS cells, S. Aureus, E. Coli, and Micrococcus



Mendoza Huizar, Luis Humberto

2018

Lashgari, A., Ghamami, S., Golzani, M., Salgado-Moran, G., Mendoza-Huizar, LH ., Romero, PM., Biocidal activity of CuO nanoleaves against AGS cells, S. Aureus, E. Coli, and Micrococcus, AFINIDAD, 2018, 75(583), 222-227.


Abstract


In the present work, we carried out the synthesis of copper oxide nanoleaves and evaluate their biocidal activity. The resulting nanoparticles were characterized by X-ray Diffraction, Scanning Electron Microscopy, and Fourier Transform Infrared Spectroscopy. The antibacterial activity of the CuO nanoleaves particles was studied through the minimum inhibitory concentration method employing Staphylococcusaureus, Escherichia coli, and Micrococcus as modelorganisms. The results indicate that a concentration of 0.05 g mL-1 generate an inhibition zone of 20, 17and 12 mm for S. aureus, E. Coli and Micrococcus, respectively. Also, the copper oxide nanoleaves exhibited antitumor activity agains



Producto de Investigación




Artículos relacionados

Hydrogen bond studies in substituted N-(2-hydroxyphenyl)--2-[(4-methylbenzenesulfonyl)amino]acetamid...

Nucleation and Growth Kinetics of Electrodeposited Sulfate-Doped Polypyrrole: Determination of the D...

A Voltammetric Study Of The Underpotential Deposition Of Cobalt Onto A Glassy Carbon Electrode

Cobalt electrodeposition on polycrystalline palladium. Influence of temperature on kinetic parameter...

The role of temperature in copper electrocrystallization in ammoniachloride solutions

Do Spiroarsoranes Exhibit Polytopal Equilibrium in Solution?

Influence of the Crystallinity of the Substrate on Kinetic Parameters of Zinc Electrodeposition Proc...

Synthesis of Zn compounds derived from 1H-benzimidazol-2-ylmethanamine

Estudio de las Interacciones Ácido Húmico-Metales Pesados y Determinación de sus Constantes de Estab...

Synthesis, Characterization and Catalytic Activity of Supported NiMo Catalysts