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Aspergilli Response to Benzalkonium Chloride and Novel-Synthesized Fullerenol/Benzalkonium Chloride Nanocomposite

A comprehensive comparative analysis of antifungal potential of benzalkonium chloride and newly synthesized fullerenol/benzalkonium chloride nanocomposite was conducted to assess the possible impact of carbon-based nanocarrier on antimicrobial properties of the commonly used biocide. Physical charac...

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Autores principales: Unković, Nikola, Ljaljević Grbić, Milica, Stupar, Miloš, Vukojević, Jelena, Janković, Vesna, Jović, Danica, Djordjević, Aleksandar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4532958/
https://www.ncbi.nlm.nih.gov/pubmed/26295057
http://dx.doi.org/10.1155/2015/109262
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author Unković, Nikola
Ljaljević Grbić, Milica
Stupar, Miloš
Vukojević, Jelena
Janković, Vesna
Jović, Danica
Djordjević, Aleksandar
author_facet Unković, Nikola
Ljaljević Grbić, Milica
Stupar, Miloš
Vukojević, Jelena
Janković, Vesna
Jović, Danica
Djordjević, Aleksandar
author_sort Unković, Nikola
collection PubMed
description A comprehensive comparative analysis of antifungal potential of benzalkonium chloride and newly synthesized fullerenol/benzalkonium chloride nanocomposite was conducted to assess the possible impact of carbon-based nanocarrier on antimicrobial properties of the commonly used biocide. Physical characterization of synthesized nanocomposite showed zeta potential of +37.4 mV and inhomogeneous particles size distribution, with nanocomposite particles' dimensions within 30–143 nm and maximum number of particles at 44 nm. The effect of pure and fullerenol nanocarrier-bound biocide was evaluated in eight Aspergillus species. In mycelial growth assay, nanocomposite was more potent, as fungicidal effect of 1.04/0.6 μg mL(−1) was obtained in all but one of the isolates (A. niger), while proportional concentration of pure biocide (0.6 μg mL(−1)) completely inhibited mycelial growth of only three Aspergillus species. However, conidia appear to be less susceptible to nanocomposite treatment, as lower fungistatic (MIC) and fungicidal (MFC) concentrations were obtained with biocide alone (MIC in range from 0.03 to 0.15 μg mL(−1) and MFC from 0.075 to 0.45 μg mL(−1)). To a different degree, both substances stimulated aflatoxin B1 production and inhibited ochratoxin A synthesis. Very low mycelium biomass yield, in range from 1.0 to 3.0 mg dry weight, was documented in both biocide and nanocomposite enriched medium.
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spelling pubmed-45329582015-08-20 Aspergilli Response to Benzalkonium Chloride and Novel-Synthesized Fullerenol/Benzalkonium Chloride Nanocomposite Unković, Nikola Ljaljević Grbić, Milica Stupar, Miloš Vukojević, Jelena Janković, Vesna Jović, Danica Djordjević, Aleksandar ScientificWorldJournal Research Article A comprehensive comparative analysis of antifungal potential of benzalkonium chloride and newly synthesized fullerenol/benzalkonium chloride nanocomposite was conducted to assess the possible impact of carbon-based nanocarrier on antimicrobial properties of the commonly used biocide. Physical characterization of synthesized nanocomposite showed zeta potential of +37.4 mV and inhomogeneous particles size distribution, with nanocomposite particles' dimensions within 30–143 nm and maximum number of particles at 44 nm. The effect of pure and fullerenol nanocarrier-bound biocide was evaluated in eight Aspergillus species. In mycelial growth assay, nanocomposite was more potent, as fungicidal effect of 1.04/0.6 μg mL(−1) was obtained in all but one of the isolates (A. niger), while proportional concentration of pure biocide (0.6 μg mL(−1)) completely inhibited mycelial growth of only three Aspergillus species. However, conidia appear to be less susceptible to nanocomposite treatment, as lower fungistatic (MIC) and fungicidal (MFC) concentrations were obtained with biocide alone (MIC in range from 0.03 to 0.15 μg mL(−1) and MFC from 0.075 to 0.45 μg mL(−1)). To a different degree, both substances stimulated aflatoxin B1 production and inhibited ochratoxin A synthesis. Very low mycelium biomass yield, in range from 1.0 to 3.0 mg dry weight, was documented in both biocide and nanocomposite enriched medium. Hindawi Publishing Corporation 2015 2015-07-29 /pmc/articles/PMC4532958/ /pubmed/26295057 http://dx.doi.org/10.1155/2015/109262 Text en Copyright © 2015 Nikola Unković et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Unković, Nikola
Ljaljević Grbić, Milica
Stupar, Miloš
Vukojević, Jelena
Janković, Vesna
Jović, Danica
Djordjević, Aleksandar
Aspergilli Response to Benzalkonium Chloride and Novel-Synthesized Fullerenol/Benzalkonium Chloride Nanocomposite
title Aspergilli Response to Benzalkonium Chloride and Novel-Synthesized Fullerenol/Benzalkonium Chloride Nanocomposite
title_full Aspergilli Response to Benzalkonium Chloride and Novel-Synthesized Fullerenol/Benzalkonium Chloride Nanocomposite
title_fullStr Aspergilli Response to Benzalkonium Chloride and Novel-Synthesized Fullerenol/Benzalkonium Chloride Nanocomposite
title_full_unstemmed Aspergilli Response to Benzalkonium Chloride and Novel-Synthesized Fullerenol/Benzalkonium Chloride Nanocomposite
title_short Aspergilli Response to Benzalkonium Chloride and Novel-Synthesized Fullerenol/Benzalkonium Chloride Nanocomposite
title_sort aspergilli response to benzalkonium chloride and novel-synthesized fullerenol/benzalkonium chloride nanocomposite
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4532958/
https://www.ncbi.nlm.nih.gov/pubmed/26295057
http://dx.doi.org/10.1155/2015/109262
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