Intra- and inter-species interactions within biofilms of important foodborne bacterial pathogens

Внутривидовые и межвидовые взаимодействия в биоплёнках важных пищевых бактериальных патогенов
Efstathios Giaouris, Even Heir, Mickaël Desvaux, Michel Hébraud, Trond Møretrø, Solveig Langsrud, Agapi I. Doulgeraki, George‐John E. Nychas, Miroslava Kačániová, Katarzyna Czaczyk, Hülya Ölmez, Manuel Simões
2015-08-20

antimicrobial resistancebiofilm communitiesfood processing environmentsfoodborne bacterial pathogensintra- and inter-species interactions
A community-based sessile life style is the normal mode of growth and survival for many bacterial species. Under such conditions, cell-to-cell interactions are inevitable and ultimately lead to the establishment of dense, complex and highly structured biofilm populations encapsulated in a self-produced extracellular matrix and capable of coordinated and collective behavior. Remarkably, in food processing environments, a variety of different bacteria may attach to surfaces, survive, grow, and form biofilms. Salmonella enterica, Listeria monocytogenes, Escherichia coli, and Staphylococcus aureus are important bacterial pathogens commonly implicated in outbreaks of foodborne diseases, while all are known to be able to create biofilms on both abiotic and biotic surfaces. Particularly challenging is the attempt to understand the complexity of inter-bacterial interactions that can be encountered in such unwanted consortia, such as competitive and cooperative ones, together with their impact on the final outcome of these communities (e.g., maturation, physiology, antimicrobial resistance, virulence, dispersal). In this review, up-to-date data on both the intra- and inter-species interactions encountered in biofilms of these pathogens are presented. A better understanding of these interactions, both at molecular and biophysical levels, could lead to novel intervention strategies for controlling pathogenic biofilm formation in food processing environments and thus improve food safety.
1
Foodborne pathogen biofilms comprise dense, structured communities enclosed in self-produced extracellular matrices that support coordinated collective behavior.
2
Intra- and inter-species interactions within mixed biofilms may be competitive or cooperative, influencing maturation, physiology, antimicrobial resistance, virulence, and dispersal.
3
Salmonella enterica, Listeria monocytogenes, Escherichia coli, and Staphylococcus aureus can form biofilms on abiotic and biotic surfaces in food-processing environments.
4
Understanding these interactions at molecular and biophysical levels may enable new strategies to control pathogenic biofilms and improve food safety.

Biofilms of the foodborne bacterial pathogens Salmonella enterica, Listeria monocytogenes, Escherichia coli, and Staphylococcus aureus in food-processing environments

Intra- and inter-species cell-to-cell interactions and their effects on biofilm community development, physiology, antimicrobial resistance, virulence, and dispersal

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2015-08-20
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Efstathios Giaouris
Even Heir
Mickaël Desvaux
Michel Hébraud
Trond Møretrø
Solveig Langsrud
Agapi I. Doulgeraki
George‐John E. Nychas
Miroslava Kačániová
Katarzyna Czaczyk
Hülya Ölmez
Manuel Simões
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