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Biological Activity and Antibiofilm Molecular Profile of Citrus aurantium Essential Oil and Its Application in a Food Model

The main aim of the study was to investigate the chemical composition, antioxidant, antimicrobial, and antibiofilm activity of Citrus aurantium essential oil (CAEO). The biofilm profile of Stenotrophonomonas maltophilia and Bacillus subtilis were assessed using the mass spectrometry MALDI-TOF MS Bio...

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Autores principales: Kačániová, Miroslava, Terentjeva, Margarita, Galovičová, Lucia, Ivanišová, Eva, Štefániková, Jana, Valková, Veronika, Borotová, Petra, Kowalczewski, Przemysław Łukasz, Kunová, Simona, Felšöciová, Soňa, Tvrdá, Eva, Žiarovská, Jana, Benda Prokeinová, Renáta, Vukovic, Nenad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7504819/
https://www.ncbi.nlm.nih.gov/pubmed/32872611
http://dx.doi.org/10.3390/molecules25173956
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author Kačániová, Miroslava
Terentjeva, Margarita
Galovičová, Lucia
Ivanišová, Eva
Štefániková, Jana
Valková, Veronika
Borotová, Petra
Kowalczewski, Przemysław Łukasz
Kunová, Simona
Felšöciová, Soňa
Tvrdá, Eva
Žiarovská, Jana
Benda Prokeinová, Renáta
Vukovic, Nenad
author_facet Kačániová, Miroslava
Terentjeva, Margarita
Galovičová, Lucia
Ivanišová, Eva
Štefániková, Jana
Valková, Veronika
Borotová, Petra
Kowalczewski, Przemysław Łukasz
Kunová, Simona
Felšöciová, Soňa
Tvrdá, Eva
Žiarovská, Jana
Benda Prokeinová, Renáta
Vukovic, Nenad
author_sort Kačániová, Miroslava
collection PubMed
description The main aim of the study was to investigate the chemical composition, antioxidant, antimicrobial, and antibiofilm activity of Citrus aurantium essential oil (CAEO). The biofilm profile of Stenotrophonomonas maltophilia and Bacillus subtilis were assessed using the mass spectrometry MALDI-TOF MS Biotyper and the antibiofilm activity of Citrus aurantium (CAEO) was studied on wood and glass surfaces. A semi-quantitative composition using a modified version was applied for the CAEO characterization. The antioxidant activity of CAEO was determined using the DPPH method. The antimicrobial activity was analyzed by disc diffusion for two biofilm producing bacteria, while the vapor phase was used for three penicillia. The antibiofilm activity was observed with the agar microdilution method. The molecular differences of biofilm formation on different days were analyzed, and the genetic similarity was studied with dendrograms constructed from MSP spectra to illustrate the grouping profiles of S. maltophilia and B. subtilis. A differentiated branch was obtained for early growth variants of S. maltophilia for planktonic cells and all experimental groups. The time span can be reported for the grouping pattern of B. subtilis preferentially when comparing to the media matrix, but without clear differences among variants. Furthermore, the minimum inhibitory doses of the CAEO were investigated against microscopic fungi. The results showed that CAEO was most active against Penicillium crustosum, in the vapor phase, on bread and carrot in situ.
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spelling pubmed-75048192020-09-26 Biological Activity and Antibiofilm Molecular Profile of Citrus aurantium Essential Oil and Its Application in a Food Model Kačániová, Miroslava Terentjeva, Margarita Galovičová, Lucia Ivanišová, Eva Štefániková, Jana Valková, Veronika Borotová, Petra Kowalczewski, Przemysław Łukasz Kunová, Simona Felšöciová, Soňa Tvrdá, Eva Žiarovská, Jana Benda Prokeinová, Renáta Vukovic, Nenad Molecules Article The main aim of the study was to investigate the chemical composition, antioxidant, antimicrobial, and antibiofilm activity of Citrus aurantium essential oil (CAEO). The biofilm profile of Stenotrophonomonas maltophilia and Bacillus subtilis were assessed using the mass spectrometry MALDI-TOF MS Biotyper and the antibiofilm activity of Citrus aurantium (CAEO) was studied on wood and glass surfaces. A semi-quantitative composition using a modified version was applied for the CAEO characterization. The antioxidant activity of CAEO was determined using the DPPH method. The antimicrobial activity was analyzed by disc diffusion for two biofilm producing bacteria, while the vapor phase was used for three penicillia. The antibiofilm activity was observed with the agar microdilution method. The molecular differences of biofilm formation on different days were analyzed, and the genetic similarity was studied with dendrograms constructed from MSP spectra to illustrate the grouping profiles of S. maltophilia and B. subtilis. A differentiated branch was obtained for early growth variants of S. maltophilia for planktonic cells and all experimental groups. The time span can be reported for the grouping pattern of B. subtilis preferentially when comparing to the media matrix, but without clear differences among variants. Furthermore, the minimum inhibitory doses of the CAEO were investigated against microscopic fungi. The results showed that CAEO was most active against Penicillium crustosum, in the vapor phase, on bread and carrot in situ. MDPI 2020-08-30 /pmc/articles/PMC7504819/ /pubmed/32872611 http://dx.doi.org/10.3390/molecules25173956 Text en © 2020 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 (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kačániová, Miroslava
Terentjeva, Margarita
Galovičová, Lucia
Ivanišová, Eva
Štefániková, Jana
Valková, Veronika
Borotová, Petra
Kowalczewski, Przemysław Łukasz
Kunová, Simona
Felšöciová, Soňa
Tvrdá, Eva
Žiarovská, Jana
Benda Prokeinová, Renáta
Vukovic, Nenad
Biological Activity and Antibiofilm Molecular Profile of Citrus aurantium Essential Oil and Its Application in a Food Model
title Biological Activity and Antibiofilm Molecular Profile of Citrus aurantium Essential Oil and Its Application in a Food Model
title_full Biological Activity and Antibiofilm Molecular Profile of Citrus aurantium Essential Oil and Its Application in a Food Model
title_fullStr Biological Activity and Antibiofilm Molecular Profile of Citrus aurantium Essential Oil and Its Application in a Food Model
title_full_unstemmed Biological Activity and Antibiofilm Molecular Profile of Citrus aurantium Essential Oil and Its Application in a Food Model
title_short Biological Activity and Antibiofilm Molecular Profile of Citrus aurantium Essential Oil and Its Application in a Food Model
title_sort biological activity and antibiofilm molecular profile of citrus aurantium essential oil and its application in a food model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7504819/
https://www.ncbi.nlm.nih.gov/pubmed/32872611
http://dx.doi.org/10.3390/molecules25173956
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