Franklin Nóbrega
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Lecturer in Microbiology, Principal Investigator Microbiology
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About
Franklin Nóbrega is a Lecturer in Microbiology and Principal Investigator at the University of Southampton, United Kingdom. His research primarily focuses on microbiology, particularly in the areas of phage biology, bacterial defense mechanisms, and the interactions between microbial communities and their environments. Recent publications include notable works on taxonomy changes in viral classification and studies addressing phage resistance and immunity in various bacterial species.
Recent Grants
Grant: Close
Uncovering the mechanisms of Kiwa to sense and protect from bacteriophage infection
Open Date: 2022-10-01
Close Date: 2023-09-01
Grant: Close
Constructing and Characterizing Phage Libraries for Phage Therapy against MDR-ESKAPE Pathogens in Humans for Clinical and Environmental Use
Open Date: 2022-09-01
Close Date: 2026-08-01
Grant: Close
Raising AMR awareness via reverse socialization
Open Date: 2022-08-01
Close Date: 2023-07-01
Grant: Close
Investigating the role of mucus-interacting bacteriophages in inflammatory bowel disease
Open Date: 2021-11-01
Close Date: 2023-10-01
Grant: Close
Using phages to give new life to old antibiotics against superbugs
Open Date: 2021-10-01
Close Date: 2023-09-01
Articles (23)
The Role of Flagellum and Flagellum-Based Motility on Salmonella Enteritidis and Escherichia coli Biofilm Formation
Flagellum-mediated motility has been suggested to contribute to virulence by allowing bacteria to colonize and spread to new surfaces. In Salmonella enterica and Escherichia coli species, mutants affected by their flagellar motility have shown a reduced ability to form biofilms. While it is known that some species might act as co-aggregation factors for bacterial adhesion, studies of food-related biofilms have been limited to single-species biofilms and short biofilm formation periods. To assess the contribution of flagella and flagellum-based motility to adhesion and biofilm formation, two Salmonella and E. coli mutants with different flagellar phenotypes were produced: the fliC mutants, which do not produce flagella, and the motAB mutants, which are non-motile. The ability of wild-type and mutant strains to form biofilms was compared, and their relative fitness was determined in two-species biofilms with other foodborne pathogens. Our results showed a defective and significant behavior of E. coli in initial surface colonization (p < 0.05), which delayed single-species biofilm formation. Salmonella mutants were not affected by the ability to form biofilm (p > 0.05). Regarding the effect of motility/flagellum absence on bacterial fitness, none of the mutant strains seems to have their relative fitness affected in the presence of a competing species. Although the absence of motility may eventually delay initial colonization, this study suggests that motility is not essential for biofilm formation and does not have a strong impact on bacteria’s fitness when a competing species is present.
Year:
2024
Collaborators (20)
Hanna Oksanen
University of Helsinki
Nuno Azevedo
University of Porto
Hilde Herrema
Assistant professor, staff
AMC
Lone Brøndsted
Københavns Universitet
David Taylor
Associate Professor
University of Texas at Austin
Arnaud Dechesne
Technical University of Denmark
Victor Klein de Sousa
Københavns Universitet
Timon Idema
Associate Professor
Delft University of Technology
Simran Krishnakant Kushwaha
University of Southampton
Veronika Theresa Lutz
University of Copenhagen
Carina Almeida
University of Minho
Bas E Dutilh
Utrecht University
Martin Saxtorph Bojer
Københavns Universitet
Minna Poranen
University of Helsinki
Simon A Jackson
University of Otago
Pieter-Jan Haas
University Medical Center Groningen
Stan J. J. Brouns
Delft University of Technology
Aswin Muralidharan
Delft University of Technology
Bert‐Jan H. van den Born
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Clive Ronson
Professor
University of Otago

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