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Nicolas Barraud

Showing results (1-10 of 37) with videos related to

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Applied and Environmental Microbiology|November 28, 2018
Nitric Oxide and Iron Signaling Cues Have Opposing Effects on Biofilm Development in Pseudomonas aeruginosaXinyi Zhu, Scott A Rice, Nicolas Barraud
Microbiology Spectrum|June 24, 2016
Dispersal from Microbial BiofilmsNicolas Barraud, Staffan Kjelleberg, Scott A Rice
Molecular Microbiology|June 12, 2013
The pathogenicity island encoded PvrSR/RcsCB regulatory network controls biofilm formation and dispersal in Pseudomonas aeruginosa PA14Helga Mikkelsen, Kailyn Hui, Nicolas Barraud, et al.
Plos One|December 19, 2013
Mannitol enhances antibiotic sensitivity of persister bacteria in Pseudomonas aeruginosa biofilmsNicolas Barraud, Alberto Buson, Wolfgang Jarolimek, et al.
Current Pharmaceutical Design|September 6, 2014
Nitric oxide: a key mediator of biofilm dispersal with applications in infectious diseasesNicolas Barraud, Michael J Kelso, Scott A Rice, et al.
Methods in Molecular Biology (Clifton, N.J.)|May 14, 2014
Methods for studying biofilm dispersal in Pseudomonas aeruginosaNicolas Barraud, Joana A Moscoso, Jean-Marc Ghigo, et al.
Nature Reviews. Microbiology|November 29, 2011
Should we stay or should we go: mechanisms and ecological consequences for biofilm dispersalDiane McDougald, Scott A Rice, Nicolas Barraud, et al.
NPJ Biofilms and Microbiomes|April 14, 2021
Lifestyle-specific S-nitrosylation of protein cysteine thiols regulates Escherichia coli biofilm formation and resistance to oxidative stressNicolas Barraud, Sylvie Létoffé, Christophe Beloin, et al.
Scientific Reports|December 19, 2015
Iron oxide nanoparticle-mediated hyperthermia stimulates dispersal in bacterial biofilms and enhances antibiotic efficacyThuy-Khanh Nguyen, Hien T T Duong, Ramona Selvanayagam, et al.
Microbial Biotechnology|July 31, 2020
Nitrite production by ammonia-oxidizing bacteria mediates chloramine decay and resistance in a mixed-species communityPejhman Keshvardoust, Vanessa A A Huron, Matthew Clemson, et al.
Pageof 4

Showing results (1-10 of 37) with videos related to

Sort By:
Pageof 4
Applied and Environmental Microbiology|November 28, 2018
Nitric Oxide and Iron Signaling Cues Have Opposing Effects on Biofilm Development in Pseudomonas aeruginosaXinyi Zhu, Scott A Rice, Nicolas Barraud
Microbiology Spectrum|June 24, 2016
Dispersal from Microbial BiofilmsNicolas Barraud, Staffan Kjelleberg, Scott A Rice
Molecular Microbiology|June 12, 2013
The pathogenicity island encoded PvrSR/RcsCB regulatory network controls biofilm formation and dispersal in Pseudomonas aeruginosa PA14Helga Mikkelsen, Kailyn Hui, Nicolas Barraud, et al.
Plos One|December 19, 2013
Mannitol enhances antibiotic sensitivity of persister bacteria in Pseudomonas aeruginosa biofilmsNicolas Barraud, Alberto Buson, Wolfgang Jarolimek, et al.
Current Pharmaceutical Design|September 6, 2014
Nitric oxide: a key mediator of biofilm dispersal with applications in infectious diseasesNicolas Barraud, Michael J Kelso, Scott A Rice, et al.
Methods in Molecular Biology (Clifton, N.J.)|May 14, 2014
Methods for studying biofilm dispersal in Pseudomonas aeruginosaNicolas Barraud, Joana A Moscoso, Jean-Marc Ghigo, et al.
Nature Reviews. Microbiology|November 29, 2011
Should we stay or should we go: mechanisms and ecological consequences for biofilm dispersalDiane McDougald, Scott A Rice, Nicolas Barraud, et al.
NPJ Biofilms and Microbiomes|April 14, 2021
Lifestyle-specific S-nitrosylation of protein cysteine thiols regulates Escherichia coli biofilm formation and resistance to oxidative stressNicolas Barraud, Sylvie Létoffé, Christophe Beloin, et al.
Scientific Reports|December 19, 2015
Iron oxide nanoparticle-mediated hyperthermia stimulates dispersal in bacterial biofilms and enhances antibiotic efficacyThuy-Khanh Nguyen, Hien T T Duong, Ramona Selvanayagam, et al.
Microbial Biotechnology|July 31, 2020
Nitrite production by ammonia-oxidizing bacteria mediates chloramine decay and resistance in a mixed-species communityPejhman Keshvardoust, Vanessa A A Huron, Matthew Clemson, et al.
Pageof 4