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Linalool, citral, eugenol and thymol: control of planktonic and sessile cells of Shigella flexneri

The antimicrobial activity of linalool, citral, eugenol and thymol was determined in growth studies of both planktonic (PC) and biofilm cells (BC) Shigella flexneri. These components were evaluated either in isolation or in combinations using a sequential experimental strategy with Plackett & Bu...

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Autores principales: Ngome, Moisés Tomás, Alves, José Guilherme Lembi Ferreira, de Oliveira, Ana Cristina Freitas, da Silva Machado, Patrícia, Mondragón-Bernal, Olga Lucía, Piccoli, Roberta Hilsdorf
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6020087/
https://www.ncbi.nlm.nih.gov/pubmed/29943167
http://dx.doi.org/10.1186/s13568-018-0634-z
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author Ngome, Moisés Tomás
Alves, José Guilherme Lembi Ferreira
de Oliveira, Ana Cristina Freitas
da Silva Machado, Patrícia
Mondragón-Bernal, Olga Lucía
Piccoli, Roberta Hilsdorf
author_facet Ngome, Moisés Tomás
Alves, José Guilherme Lembi Ferreira
de Oliveira, Ana Cristina Freitas
da Silva Machado, Patrícia
Mondragón-Bernal, Olga Lucía
Piccoli, Roberta Hilsdorf
author_sort Ngome, Moisés Tomás
collection PubMed
description The antimicrobial activity of linalool, citral, eugenol and thymol was determined in growth studies of both planktonic (PC) and biofilm cells (BC) Shigella flexneri. These components were evaluated either in isolation or in combinations using a sequential experimental strategy with Plackett & Burman and central composite rotational designs totaling 47 treatments. The minimum inhibitory concentration for PC was 0.125% (v v(−1)) for linalool and 0.5% (v v(−1)) for citral, eugenol and thymol. The biofilm minimum bactericidal concentration was 3 and 1% (v v(−1)) for linalool and citral, respectively, and 2% (v v(−1)) for eugenol and thymol. In the mixtures, the minimum concentrations in the efficient assays for PC growth inhibition were 0.0003, 0.0443 and 0.0443% (v v(−1)), for linalool, citral and thymol, respectively. In the BC, only two assays with concentrations of 0.0558, 0.0558 and 0.319% (v v(−1)) and 0.035, 0.035 and 0.3999% (v v(−1)) for linalool, citral and thymol, respectively, inhibited Shigella growth. Synergism was observed among the components, where PC and BC growth inhibition occurred at lower concentrations than those noted individually. The bactericidal effect of the components in microplate was different from the observed in stain steel coupons. Therefore, the obtained model can describe and predict the PC count of S. flexneri in medium with the tested compounds and they could be an alternative for the use in microbiological control in food industry.
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spelling pubmed-60200872018-07-13 Linalool, citral, eugenol and thymol: control of planktonic and sessile cells of Shigella flexneri Ngome, Moisés Tomás Alves, José Guilherme Lembi Ferreira de Oliveira, Ana Cristina Freitas da Silva Machado, Patrícia Mondragón-Bernal, Olga Lucía Piccoli, Roberta Hilsdorf AMB Express Original Article The antimicrobial activity of linalool, citral, eugenol and thymol was determined in growth studies of both planktonic (PC) and biofilm cells (BC) Shigella flexneri. These components were evaluated either in isolation or in combinations using a sequential experimental strategy with Plackett & Burman and central composite rotational designs totaling 47 treatments. The minimum inhibitory concentration for PC was 0.125% (v v(−1)) for linalool and 0.5% (v v(−1)) for citral, eugenol and thymol. The biofilm minimum bactericidal concentration was 3 and 1% (v v(−1)) for linalool and citral, respectively, and 2% (v v(−1)) for eugenol and thymol. In the mixtures, the minimum concentrations in the efficient assays for PC growth inhibition were 0.0003, 0.0443 and 0.0443% (v v(−1)), for linalool, citral and thymol, respectively. In the BC, only two assays with concentrations of 0.0558, 0.0558 and 0.319% (v v(−1)) and 0.035, 0.035 and 0.3999% (v v(−1)) for linalool, citral and thymol, respectively, inhibited Shigella growth. Synergism was observed among the components, where PC and BC growth inhibition occurred at lower concentrations than those noted individually. The bactericidal effect of the components in microplate was different from the observed in stain steel coupons. Therefore, the obtained model can describe and predict the PC count of S. flexneri in medium with the tested compounds and they could be an alternative for the use in microbiological control in food industry. Springer Berlin Heidelberg 2018-06-25 /pmc/articles/PMC6020087/ /pubmed/29943167 http://dx.doi.org/10.1186/s13568-018-0634-z Text en © The Author(s) 2018 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Original Article
Ngome, Moisés Tomás
Alves, José Guilherme Lembi Ferreira
de Oliveira, Ana Cristina Freitas
da Silva Machado, Patrícia
Mondragón-Bernal, Olga Lucía
Piccoli, Roberta Hilsdorf
Linalool, citral, eugenol and thymol: control of planktonic and sessile cells of Shigella flexneri
title Linalool, citral, eugenol and thymol: control of planktonic and sessile cells of Shigella flexneri
title_full Linalool, citral, eugenol and thymol: control of planktonic and sessile cells of Shigella flexneri
title_fullStr Linalool, citral, eugenol and thymol: control of planktonic and sessile cells of Shigella flexneri
title_full_unstemmed Linalool, citral, eugenol and thymol: control of planktonic and sessile cells of Shigella flexneri
title_short Linalool, citral, eugenol and thymol: control of planktonic and sessile cells of Shigella flexneri
title_sort linalool, citral, eugenol and thymol: control of planktonic and sessile cells of shigella flexneri
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6020087/
https://www.ncbi.nlm.nih.gov/pubmed/29943167
http://dx.doi.org/10.1186/s13568-018-0634-z
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