Cargando…

Natural Antimicrobial Mixtures Disrupt Attachment and Survival of E. coli and C. jejuni to Non-Organic and Organic Surfaces

The contact and adherence of bacteria to various surfaces has significant consequences on biofilm formation through changes in bacterial surface structures or gene expression with potential ramifications on plant and animal health. Therefore, this study aimed to investigate the effect of organic aci...

Descripción completa

Detalles Bibliográficos
Autores principales: Corcionivoschi, Nicolae, Balta, Igori, Butucel, Eugenia, McCleery, David, Pet, Ioan, Iamandei, Maria, Stef, Lavinia, Morariu, Sorin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10606629/
https://www.ncbi.nlm.nih.gov/pubmed/37893756
http://dx.doi.org/10.3390/foods12203863
_version_ 1785127361844346880
author Corcionivoschi, Nicolae
Balta, Igori
Butucel, Eugenia
McCleery, David
Pet, Ioan
Iamandei, Maria
Stef, Lavinia
Morariu, Sorin
author_facet Corcionivoschi, Nicolae
Balta, Igori
Butucel, Eugenia
McCleery, David
Pet, Ioan
Iamandei, Maria
Stef, Lavinia
Morariu, Sorin
author_sort Corcionivoschi, Nicolae
collection PubMed
description The contact and adherence of bacteria to various surfaces has significant consequences on biofilm formation through changes in bacterial surface structures or gene expression with potential ramifications on plant and animal health. Therefore, this study aimed to investigate the effect of organic acid-based mixtures (Ac) on the ability Campylobacter jejuni and Escherichia coli to attach and form biofilm on various surfaces, including plastic, chicken carcass skins, straw bedding, and eggshells. Moreover, we aimed to explore the effect of Ac on the expression of E. coli (luxS, fimC, csgD) and C. jejuni (luxS, flaA, flaB) bacterial genes involved in the attachment and biofilm formation via changes in bacterial surface polysaccharidic structures. Our results show that Ac had a significant effect on the expression of these genes in bacteria either attached to these surfaces or in planktonic cells. Moreover, the significant decrease in bacterial adhesion was coupled with structural changes in bacterial surface polysaccharide profiles, impacting their adhesion and biofilm-forming ability. Essentially, our findings accentuate the potential of natural antimicrobials, such as Ac, in reducing bacterial attachment and biofilm formation across various environments, suggesting promising potential applications in sectors like poultry production and healthcare.
format Online
Article
Text
id pubmed-10606629
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-106066292023-10-28 Natural Antimicrobial Mixtures Disrupt Attachment and Survival of E. coli and C. jejuni to Non-Organic and Organic Surfaces Corcionivoschi, Nicolae Balta, Igori Butucel, Eugenia McCleery, David Pet, Ioan Iamandei, Maria Stef, Lavinia Morariu, Sorin Foods Article The contact and adherence of bacteria to various surfaces has significant consequences on biofilm formation through changes in bacterial surface structures or gene expression with potential ramifications on plant and animal health. Therefore, this study aimed to investigate the effect of organic acid-based mixtures (Ac) on the ability Campylobacter jejuni and Escherichia coli to attach and form biofilm on various surfaces, including plastic, chicken carcass skins, straw bedding, and eggshells. Moreover, we aimed to explore the effect of Ac on the expression of E. coli (luxS, fimC, csgD) and C. jejuni (luxS, flaA, flaB) bacterial genes involved in the attachment and biofilm formation via changes in bacterial surface polysaccharidic structures. Our results show that Ac had a significant effect on the expression of these genes in bacteria either attached to these surfaces or in planktonic cells. Moreover, the significant decrease in bacterial adhesion was coupled with structural changes in bacterial surface polysaccharide profiles, impacting their adhesion and biofilm-forming ability. Essentially, our findings accentuate the potential of natural antimicrobials, such as Ac, in reducing bacterial attachment and biofilm formation across various environments, suggesting promising potential applications in sectors like poultry production and healthcare. MDPI 2023-10-21 /pmc/articles/PMC10606629/ /pubmed/37893756 http://dx.doi.org/10.3390/foods12203863 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Corcionivoschi, Nicolae
Balta, Igori
Butucel, Eugenia
McCleery, David
Pet, Ioan
Iamandei, Maria
Stef, Lavinia
Morariu, Sorin
Natural Antimicrobial Mixtures Disrupt Attachment and Survival of E. coli and C. jejuni to Non-Organic and Organic Surfaces
title Natural Antimicrobial Mixtures Disrupt Attachment and Survival of E. coli and C. jejuni to Non-Organic and Organic Surfaces
title_full Natural Antimicrobial Mixtures Disrupt Attachment and Survival of E. coli and C. jejuni to Non-Organic and Organic Surfaces
title_fullStr Natural Antimicrobial Mixtures Disrupt Attachment and Survival of E. coli and C. jejuni to Non-Organic and Organic Surfaces
title_full_unstemmed Natural Antimicrobial Mixtures Disrupt Attachment and Survival of E. coli and C. jejuni to Non-Organic and Organic Surfaces
title_short Natural Antimicrobial Mixtures Disrupt Attachment and Survival of E. coli and C. jejuni to Non-Organic and Organic Surfaces
title_sort natural antimicrobial mixtures disrupt attachment and survival of e. coli and c. jejuni to non-organic and organic surfaces
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10606629/
https://www.ncbi.nlm.nih.gov/pubmed/37893756
http://dx.doi.org/10.3390/foods12203863
work_keys_str_mv AT corcionivoschinicolae naturalantimicrobialmixturesdisruptattachmentandsurvivalofecoliandcjejunitononorganicandorganicsurfaces
AT baltaigori naturalantimicrobialmixturesdisruptattachmentandsurvivalofecoliandcjejunitononorganicandorganicsurfaces
AT butuceleugenia naturalantimicrobialmixturesdisruptattachmentandsurvivalofecoliandcjejunitononorganicandorganicsurfaces
AT mccleerydavid naturalantimicrobialmixturesdisruptattachmentandsurvivalofecoliandcjejunitononorganicandorganicsurfaces
AT petioan naturalantimicrobialmixturesdisruptattachmentandsurvivalofecoliandcjejunitononorganicandorganicsurfaces
AT iamandeimaria naturalantimicrobialmixturesdisruptattachmentandsurvivalofecoliandcjejunitononorganicandorganicsurfaces
AT steflavinia naturalantimicrobialmixturesdisruptattachmentandsurvivalofecoliandcjejunitononorganicandorganicsurfaces
AT morariusorin naturalantimicrobialmixturesdisruptattachmentandsurvivalofecoliandcjejunitononorganicandorganicsurfaces