Antibacterial activity and mode of action of selected glucosinolate hydrolysis products against bacterial pathogens

Detalhes bibliográficos
Autor(a) principal: Borges, Anabela
Data de Publicação: 2015
Outros Autores: Abreu, Ana C., Ferreira, Carla, Saavedra, Maria J., Simões, Lúcia C., Simões, Manuel
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Científico de Acesso Aberto de Portugal (Repositórios Cientìficos)
Texto Completo: http://hdl.handle.net/1822/37128
Resumo: Plants contain numerous components that are important sources of new bioactive molecules with antimicrobial properties. Isothiocyanates (ITCs) are plant secondary metabolites found in cruciferous vegetables that are arising as promising antimicrobial agents in food industry. The aim of this study was to assess the antibacterial activity of two isothiocyanates (ITCs), allylisothiocyanate (AITC) and 2-phenylethylisothiocyanate (PEITC) against Escherichia coli, Pseudomonas aeruginosa, Staphylococcus aureus and Listeria monocytogenes. The antibacterial mode of action was also characterized by the assessment of different physiological indices: membrane integrity, intracellular potassium release, physicochemical surface properties and surface charge. The minimum inhibitory concentration (MIC) of AITC and PEITC was 100 g/mL for all bacteria. The minimum bactericidal concentration (MBC) of the ITCs was at least 10 times higher than the MIC. Both AITC and PEITC changed the membrane properties of the bacteria decreasing their surface charge and compromising the integrity of the cytoplasmatic membrane with consequent potassium leakage and propidium iodide uptake. The surface hydrophobicity was also non-specifically altered (E. coli and L. monocytogenes become less hydrophilic; P. aeruginosa and S. aureus become more hydrophilic). This study shows that AITC and PEITC have strong antimicrobial potential against the bacteria tested, through the disruption of the bacterial cell membranes. Moreover, phytochemicals are highlighted as a valuable sustainable source of new bioactive products.
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spelling Antibacterial activity and mode of action of selected glucosinolate hydrolysis products against bacterial pathogensAntibacterial activityDisinfectantsFood preservativesIsothiocyanatesMechanisms of actionScience & TechnologyPlants contain numerous components that are important sources of new bioactive molecules with antimicrobial properties. Isothiocyanates (ITCs) are plant secondary metabolites found in cruciferous vegetables that are arising as promising antimicrobial agents in food industry. The aim of this study was to assess the antibacterial activity of two isothiocyanates (ITCs), allylisothiocyanate (AITC) and 2-phenylethylisothiocyanate (PEITC) against Escherichia coli, Pseudomonas aeruginosa, Staphylococcus aureus and Listeria monocytogenes. The antibacterial mode of action was also characterized by the assessment of different physiological indices: membrane integrity, intracellular potassium release, physicochemical surface properties and surface charge. The minimum inhibitory concentration (MIC) of AITC and PEITC was 100 g/mL for all bacteria. The minimum bactericidal concentration (MBC) of the ITCs was at least 10 times higher than the MIC. Both AITC and PEITC changed the membrane properties of the bacteria decreasing their surface charge and compromising the integrity of the cytoplasmatic membrane with consequent potassium leakage and propidium iodide uptake. The surface hydrophobicity was also non-specifically altered (E. coli and L. monocytogenes become less hydrophilic; P. aeruginosa and S. aureus become more hydrophilic). This study shows that AITC and PEITC have strong antimicrobial potential against the bacteria tested, through the disruption of the bacterial cell membranes. Moreover, phytochemicals are highlighted as a valuable sustainable source of new bioactive products.This work was supported by the Operational Programme for Competitiveness Factors - COMPETE and by the Portuguese Foundation for Science and Technology through Project Phytodisinfectants - PTDC/DTP-SAP/1078/2012 (COMPETE: FCOMP-01-0124-FEDER-028765), the PhD grant awarded to Ana Abreu (SFRH/BD/84393/2012), and the post-doctoral grants awarded to Anabela Borges (SFRH/BPD/98684/2013) and Lucia C. Simoes (SFRH/BPD/81982/2011). Also, this work was undertaken as part of the European Research Project SUSCLEAN (Contract no FP7-KBBE-2011-5, project number: 287514) and the COST Action FA1202. The authors are solely responsible for this work. It does not represent the opinion of the European Community, and the Community is not responsible for any use that might be made of data appearing herein.SpringerUniversidade do MinhoBorges, AnabelaAbreu, Ana C.Ferreira, CarlaSaavedra, Maria J.Simões, Lúcia C.Simões, Manuel20152015-01-01T00:00:00Zinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/articleapplication/pdfhttp://hdl.handle.net/1822/37128eng0022-115510.1007/s13197-014-1533-1info:eu-repo/semantics/openAccessreponame:Repositório Científico de Acesso Aberto de Portugal (Repositórios Cientìficos)instname:Agência para a Sociedade do Conhecimento (UMIC) - FCT - Sociedade da Informaçãoinstacron:RCAAP2023-07-21T12:30:34Zoai:repositorium.sdum.uminho.pt:1822/37128Portal AgregadorONGhttps://www.rcaap.pt/oai/openaireopendoar:71602024-03-19T19:25:47.883336Repositório Científico de Acesso Aberto de Portugal (Repositórios Cientìficos) - Agência para a Sociedade do Conhecimento (UMIC) - FCT - Sociedade da Informaçãofalse
dc.title.none.fl_str_mv Antibacterial activity and mode of action of selected glucosinolate hydrolysis products against bacterial pathogens
title Antibacterial activity and mode of action of selected glucosinolate hydrolysis products against bacterial pathogens
spellingShingle Antibacterial activity and mode of action of selected glucosinolate hydrolysis products against bacterial pathogens
Borges, Anabela
Antibacterial activity
Disinfectants
Food preservatives
Isothiocyanates
Mechanisms of action
Science & Technology
title_short Antibacterial activity and mode of action of selected glucosinolate hydrolysis products against bacterial pathogens
title_full Antibacterial activity and mode of action of selected glucosinolate hydrolysis products against bacterial pathogens
title_fullStr Antibacterial activity and mode of action of selected glucosinolate hydrolysis products against bacterial pathogens
title_full_unstemmed Antibacterial activity and mode of action of selected glucosinolate hydrolysis products against bacterial pathogens
title_sort Antibacterial activity and mode of action of selected glucosinolate hydrolysis products against bacterial pathogens
author Borges, Anabela
author_facet Borges, Anabela
Abreu, Ana C.
Ferreira, Carla
Saavedra, Maria J.
Simões, Lúcia C.
Simões, Manuel
author_role author
author2 Abreu, Ana C.
Ferreira, Carla
Saavedra, Maria J.
Simões, Lúcia C.
Simões, Manuel
author2_role author
author
author
author
author
dc.contributor.none.fl_str_mv Universidade do Minho
dc.contributor.author.fl_str_mv Borges, Anabela
Abreu, Ana C.
Ferreira, Carla
Saavedra, Maria J.
Simões, Lúcia C.
Simões, Manuel
dc.subject.por.fl_str_mv Antibacterial activity
Disinfectants
Food preservatives
Isothiocyanates
Mechanisms of action
Science & Technology
topic Antibacterial activity
Disinfectants
Food preservatives
Isothiocyanates
Mechanisms of action
Science & Technology
description Plants contain numerous components that are important sources of new bioactive molecules with antimicrobial properties. Isothiocyanates (ITCs) are plant secondary metabolites found in cruciferous vegetables that are arising as promising antimicrobial agents in food industry. The aim of this study was to assess the antibacterial activity of two isothiocyanates (ITCs), allylisothiocyanate (AITC) and 2-phenylethylisothiocyanate (PEITC) against Escherichia coli, Pseudomonas aeruginosa, Staphylococcus aureus and Listeria monocytogenes. The antibacterial mode of action was also characterized by the assessment of different physiological indices: membrane integrity, intracellular potassium release, physicochemical surface properties and surface charge. The minimum inhibitory concentration (MIC) of AITC and PEITC was 100 g/mL for all bacteria. The minimum bactericidal concentration (MBC) of the ITCs was at least 10 times higher than the MIC. Both AITC and PEITC changed the membrane properties of the bacteria decreasing their surface charge and compromising the integrity of the cytoplasmatic membrane with consequent potassium leakage and propidium iodide uptake. The surface hydrophobicity was also non-specifically altered (E. coli and L. monocytogenes become less hydrophilic; P. aeruginosa and S. aureus become more hydrophilic). This study shows that AITC and PEITC have strong antimicrobial potential against the bacteria tested, through the disruption of the bacterial cell membranes. Moreover, phytochemicals are highlighted as a valuable sustainable source of new bioactive products.
publishDate 2015
dc.date.none.fl_str_mv 2015
2015-01-01T00:00:00Z
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
dc.type.driver.fl_str_mv info:eu-repo/semantics/article
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status_str publishedVersion
dc.identifier.uri.fl_str_mv http://hdl.handle.net/1822/37128
url http://hdl.handle.net/1822/37128
dc.language.iso.fl_str_mv eng
language eng
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10.1007/s13197-014-1533-1
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dc.publisher.none.fl_str_mv Springer
publisher.none.fl_str_mv Springer
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