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The Composites of Graphene Oxide with Metal or Semimetal Nanoparticles and Their Effect on Pathogenic Microorganisms

The present experiment describes a synthesis process of composites based on graphene oxide, which was tested as a carrier for composites of metal- or metalloid-based nanoparticles (Cu, Zn, Mn, Ag, AgP, Se) and subsequently examined as an antimicrobial agent for some bacterial strains (Staphylococcus...

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Autores principales: Richtera, Lukas, Chudobova, Dagmar, Cihalova, Kristyna, Kremplova, Monika, Milosavljevic, Vedran, Kopel, Pavel, Blazkova, Iva, Hynek, David, Adam, Vojtech, Kizek, Rene
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5455720/
http://dx.doi.org/10.3390/ma8062994
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author Richtera, Lukas
Chudobova, Dagmar
Cihalova, Kristyna
Kremplova, Monika
Milosavljevic, Vedran
Kopel, Pavel
Blazkova, Iva
Hynek, David
Adam, Vojtech
Kizek, Rene
author_facet Richtera, Lukas
Chudobova, Dagmar
Cihalova, Kristyna
Kremplova, Monika
Milosavljevic, Vedran
Kopel, Pavel
Blazkova, Iva
Hynek, David
Adam, Vojtech
Kizek, Rene
author_sort Richtera, Lukas
collection PubMed
description The present experiment describes a synthesis process of composites based on graphene oxide, which was tested as a carrier for composites of metal- or metalloid-based nanoparticles (Cu, Zn, Mn, Ag, AgP, Se) and subsequently examined as an antimicrobial agent for some bacterial strains (Staphylococcus aureus (S. aureus), methicillin-resistant Staphylococcus aureus (MRSA) and Escherichia coli (E. coli). The composites were first applied at a concentration of 300 µM on all types of model organisms and their effect was observed by spectrophotometric analysis, which showed a decrease in absorbance values in comparison with the control, untreated strain. The most pronounced inhibition (87.4%) of S. aureus growth was observed after the application of graphene oxide composite with selenium nanoparticles compared to control. Moreover, the application of the composite with silver and silver phosphate nanoparticles showed the decrease of 68.8% and 56.8%, respectively. For all the tested composites, the observed antimicrobial effect was found in the range of 26% to 87.4%. Interestingly, the effects of the composites with selenium nanoparticles significantly differed in Gram-positive (G(+)) and Gram-negative (G(−)) bacteria. The effects of composites on bacterial cultures of S. aureus and MRSA, the representatives of G(+) bacteria, increased with increasing concentrations. On the other hand, the effects of the same composites on G(−) bacteria E. coli was observed only in the highest applied concentration.
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spelling pubmed-54557202017-07-28 The Composites of Graphene Oxide with Metal or Semimetal Nanoparticles and Their Effect on Pathogenic Microorganisms Richtera, Lukas Chudobova, Dagmar Cihalova, Kristyna Kremplova, Monika Milosavljevic, Vedran Kopel, Pavel Blazkova, Iva Hynek, David Adam, Vojtech Kizek, Rene Materials (Basel) Article The present experiment describes a synthesis process of composites based on graphene oxide, which was tested as a carrier for composites of metal- or metalloid-based nanoparticles (Cu, Zn, Mn, Ag, AgP, Se) and subsequently examined as an antimicrobial agent for some bacterial strains (Staphylococcus aureus (S. aureus), methicillin-resistant Staphylococcus aureus (MRSA) and Escherichia coli (E. coli). The composites were first applied at a concentration of 300 µM on all types of model organisms and their effect was observed by spectrophotometric analysis, which showed a decrease in absorbance values in comparison with the control, untreated strain. The most pronounced inhibition (87.4%) of S. aureus growth was observed after the application of graphene oxide composite with selenium nanoparticles compared to control. Moreover, the application of the composite with silver and silver phosphate nanoparticles showed the decrease of 68.8% and 56.8%, respectively. For all the tested composites, the observed antimicrobial effect was found in the range of 26% to 87.4%. Interestingly, the effects of the composites with selenium nanoparticles significantly differed in Gram-positive (G(+)) and Gram-negative (G(−)) bacteria. The effects of composites on bacterial cultures of S. aureus and MRSA, the representatives of G(+) bacteria, increased with increasing concentrations. On the other hand, the effects of the same composites on G(−) bacteria E. coli was observed only in the highest applied concentration. MDPI 2015-05-27 /pmc/articles/PMC5455720/ http://dx.doi.org/10.3390/ma8062994 Text en © 2015 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 license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Richtera, Lukas
Chudobova, Dagmar
Cihalova, Kristyna
Kremplova, Monika
Milosavljevic, Vedran
Kopel, Pavel
Blazkova, Iva
Hynek, David
Adam, Vojtech
Kizek, Rene
The Composites of Graphene Oxide with Metal or Semimetal Nanoparticles and Their Effect on Pathogenic Microorganisms
title The Composites of Graphene Oxide with Metal or Semimetal Nanoparticles and Their Effect on Pathogenic Microorganisms
title_full The Composites of Graphene Oxide with Metal or Semimetal Nanoparticles and Their Effect on Pathogenic Microorganisms
title_fullStr The Composites of Graphene Oxide with Metal or Semimetal Nanoparticles and Their Effect on Pathogenic Microorganisms
title_full_unstemmed The Composites of Graphene Oxide with Metal or Semimetal Nanoparticles and Their Effect on Pathogenic Microorganisms
title_short The Composites of Graphene Oxide with Metal or Semimetal Nanoparticles and Their Effect on Pathogenic Microorganisms
title_sort composites of graphene oxide with metal or semimetal nanoparticles and their effect on pathogenic microorganisms
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5455720/
http://dx.doi.org/10.3390/ma8062994
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