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Efficiency of Vanilla, Patchouli and Ylang Ylang Essential Oils Stabilized by Iron Oxide@C(14) Nanostructures against Bacterial Adherence and Biofilms Formed by Staphylococcus aureus and Klebsiella pneumoniae Clinical Strains

Biofilms formed by bacterial cells are associated with drastically enhanced resistance against most antimicrobial agents, contributing to the persistence and chronicization of the microbial infections and to therapy failure. The purpose of this study was to combine the unique properties of magnetic...

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Autores principales: Bilcu, Maxim, Grumezescu, Alexandru Mihai, Oprea, Alexandra Elena, Popescu, Roxana Cristina, Mogoșanu, George Dan, Hristu, Radu, Stanciu, George A., Mihailescu, Dan Florin, Lazar, Veronica, Bezirtzoglou, Eugenia, Chifiriuc, Mariana Carmen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6271200/
https://www.ncbi.nlm.nih.gov/pubmed/25375335
http://dx.doi.org/10.3390/molecules191117943
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author Bilcu, Maxim
Grumezescu, Alexandru Mihai
Oprea, Alexandra Elena
Popescu, Roxana Cristina
Mogoșanu, George Dan
Hristu, Radu
Stanciu, George A.
Mihailescu, Dan Florin
Lazar, Veronica
Bezirtzoglou, Eugenia
Chifiriuc, Mariana Carmen
author_facet Bilcu, Maxim
Grumezescu, Alexandru Mihai
Oprea, Alexandra Elena
Popescu, Roxana Cristina
Mogoșanu, George Dan
Hristu, Radu
Stanciu, George A.
Mihailescu, Dan Florin
Lazar, Veronica
Bezirtzoglou, Eugenia
Chifiriuc, Mariana Carmen
author_sort Bilcu, Maxim
collection PubMed
description Biofilms formed by bacterial cells are associated with drastically enhanced resistance against most antimicrobial agents, contributing to the persistence and chronicization of the microbial infections and to therapy failure. The purpose of this study was to combine the unique properties of magnetic nanoparticles with the antimicrobial activity of three essential oils to obtain novel nanobiosystems that could be used as coatings for catheter pieces with an improved resistance to Staphylococcus aureus and Klebsiella pneumoniae clinical strains adherence and biofilm development. The essential oils of ylang ylang, patchouli and vanilla were stabilized by the interaction with iron oxide@C(14) nanoparticles to be further used as coating agents for medical surfaces. Iron oxide@C(14) was prepared by co-precipitation of Fe(+2) and Fe(+3) and myristic acid (C(14)) in basic medium. Vanilla essential oil loaded nanoparticles pelliculised on the catheter samples surface strongly inhibited both the initial adherence of S. aureus cells (quantified at 24 h) and the development of the mature biofilm quantified at 48 h. Patchouli and ylang-ylang essential oils inhibited mostly the initial adherence phase of S. aureus biofilm development. In the case of K. pneumoniae, all tested nanosystems exhibited similar efficiency, being active mostly against the adherence K. pneumoniae cells to the tested catheter specimens. The new nanobiosystems based on vanilla, patchouli and ylang-ylang essential oils could be of a great interest for the biomedical field, opening new directions for the design of film-coated surfaces with anti-adherence and anti-biofilm properties.
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spelling pubmed-62712002019-01-07 Efficiency of Vanilla, Patchouli and Ylang Ylang Essential Oils Stabilized by Iron Oxide@C(14) Nanostructures against Bacterial Adherence and Biofilms Formed by Staphylococcus aureus and Klebsiella pneumoniae Clinical Strains Bilcu, Maxim Grumezescu, Alexandru Mihai Oprea, Alexandra Elena Popescu, Roxana Cristina Mogoșanu, George Dan Hristu, Radu Stanciu, George A. Mihailescu, Dan Florin Lazar, Veronica Bezirtzoglou, Eugenia Chifiriuc, Mariana Carmen Molecules Article Biofilms formed by bacterial cells are associated with drastically enhanced resistance against most antimicrobial agents, contributing to the persistence and chronicization of the microbial infections and to therapy failure. The purpose of this study was to combine the unique properties of magnetic nanoparticles with the antimicrobial activity of three essential oils to obtain novel nanobiosystems that could be used as coatings for catheter pieces with an improved resistance to Staphylococcus aureus and Klebsiella pneumoniae clinical strains adherence and biofilm development. The essential oils of ylang ylang, patchouli and vanilla were stabilized by the interaction with iron oxide@C(14) nanoparticles to be further used as coating agents for medical surfaces. Iron oxide@C(14) was prepared by co-precipitation of Fe(+2) and Fe(+3) and myristic acid (C(14)) in basic medium. Vanilla essential oil loaded nanoparticles pelliculised on the catheter samples surface strongly inhibited both the initial adherence of S. aureus cells (quantified at 24 h) and the development of the mature biofilm quantified at 48 h. Patchouli and ylang-ylang essential oils inhibited mostly the initial adherence phase of S. aureus biofilm development. In the case of K. pneumoniae, all tested nanosystems exhibited similar efficiency, being active mostly against the adherence K. pneumoniae cells to the tested catheter specimens. The new nanobiosystems based on vanilla, patchouli and ylang-ylang essential oils could be of a great interest for the biomedical field, opening new directions for the design of film-coated surfaces with anti-adherence and anti-biofilm properties. MDPI 2014-11-04 /pmc/articles/PMC6271200/ /pubmed/25375335 http://dx.doi.org/10.3390/molecules191117943 Text en © 2014 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
Bilcu, Maxim
Grumezescu, Alexandru Mihai
Oprea, Alexandra Elena
Popescu, Roxana Cristina
Mogoșanu, George Dan
Hristu, Radu
Stanciu, George A.
Mihailescu, Dan Florin
Lazar, Veronica
Bezirtzoglou, Eugenia
Chifiriuc, Mariana Carmen
Efficiency of Vanilla, Patchouli and Ylang Ylang Essential Oils Stabilized by Iron Oxide@C(14) Nanostructures against Bacterial Adherence and Biofilms Formed by Staphylococcus aureus and Klebsiella pneumoniae Clinical Strains
title Efficiency of Vanilla, Patchouli and Ylang Ylang Essential Oils Stabilized by Iron Oxide@C(14) Nanostructures against Bacterial Adherence and Biofilms Formed by Staphylococcus aureus and Klebsiella pneumoniae Clinical Strains
title_full Efficiency of Vanilla, Patchouli and Ylang Ylang Essential Oils Stabilized by Iron Oxide@C(14) Nanostructures against Bacterial Adherence and Biofilms Formed by Staphylococcus aureus and Klebsiella pneumoniae Clinical Strains
title_fullStr Efficiency of Vanilla, Patchouli and Ylang Ylang Essential Oils Stabilized by Iron Oxide@C(14) Nanostructures against Bacterial Adherence and Biofilms Formed by Staphylococcus aureus and Klebsiella pneumoniae Clinical Strains
title_full_unstemmed Efficiency of Vanilla, Patchouli and Ylang Ylang Essential Oils Stabilized by Iron Oxide@C(14) Nanostructures against Bacterial Adherence and Biofilms Formed by Staphylococcus aureus and Klebsiella pneumoniae Clinical Strains
title_short Efficiency of Vanilla, Patchouli and Ylang Ylang Essential Oils Stabilized by Iron Oxide@C(14) Nanostructures against Bacterial Adherence and Biofilms Formed by Staphylococcus aureus and Klebsiella pneumoniae Clinical Strains
title_sort efficiency of vanilla, patchouli and ylang ylang essential oils stabilized by iron oxide@c(14) nanostructures against bacterial adherence and biofilms formed by staphylococcus aureus and klebsiella pneumoniae clinical strains
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6271200/
https://www.ncbi.nlm.nih.gov/pubmed/25375335
http://dx.doi.org/10.3390/molecules191117943
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