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Cos, P., Tote, K., Horemans, T., and Maes, L. 2010. Biofilms: an extra hurdle for effective antimicrobial therapy. Curr. Pharm. Des. 16, 2279–2295. |
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| 2 |
The Involvement of Cell-to-Cell Signals in the Development of a Bacterial Biofilm  |
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| 3 |
Fazli, M., Almblad, H., Rybtke, M.L., Givskov, M., Eberl, L., and Tolker-Nielsen, T. 2014. Regulation of biofilm formation in Pseudomonas and Burkholderia species. Environ. Microbiol. DOI 10.1111/1462-2920.12448. |
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Henke, J.M. and Bassler, B.L. 2004. Bacterial social engagements. Trends Cell. Biol. 14, 648–656. |
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| 5 |
Heydorn, A., Ersboll, B., Kato, J., Hentzer, M., Parsek, M.R., Tolker-Nielsen, T., Givskov, M., and Molin, S. 2002. Statistical analysis of Pseudomonas aeruginosa biofilm development: impact of mutations in genes involved in twitching motility, cell-to-cell signaling, and stationary-phase sigma factor expression. Appl. Environ. Microbiol. 68, 2008–2017. |
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| 6 |
Biotechnology Journal 3/2008  |
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Hurley, M.N., Camara, M., and Smyth, A.R. 2012. Novel approaches to the treatment of Pseudomonas aeruginosa infections in cystic fibrosis. Eur. Respir. J. 40, 1014–1023. |
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| 8 |
SmcR and cyclic AMP receptor protein coactivate Vibrio vulnificus vvpE encoding elastase through the RpoS-dependent promoter in a synergistic manner.  |
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| 9 |
Jones, M.K. and Oliver, J.D. 2009. Vibrio vulnificus: disease and pathogenesis. Infect. Immun. 77, 1723–1733. |
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| 10 |
LuxR homologue SmcR is essential for Vibrio vulnificus pathogenesis and biofilm detachment, and its expression is induced by host cells.  |
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| 11 |
Activity of purified QscR, a Pseudomonas aeruginosa orphan quorum-sensing transcription factor.  |
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| 12 |
A distinct QscR regulon in the Pseudomonas aeruginosa quorum-sensing circuit.  |
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| 13 |
A new family of conditional replicating plasmids and their cognate Escherichia coli host strains  |
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| 14 |
Prospects for the next anti- Pseudomonas drug  |
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| 15 |
Sociomicrobiology: the connections between quorum sensing and biofilms  |
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| 16 |
Roles of Pseudomonas aeruginosa las and rhl quorum-sensing systems in control of elastase and rhamnolipid biosynthesis genes.  |
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| 17 |
Influence of hydrodynamics and cell signaling on the structure and behavior of Pseudomonas aeruginosa biofilms.  |
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| 18 |
Quorum sensing: the many languages of bacteria  |
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| 19 |
Transcriptional regulatory cascade for elastase production in Vibrio vulnificus: LuxO activates luxT expression and LuxT represses smcR expression.  |
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| 20 |
A network of networks: Quorum-sensing gene regulation in Pseudomonas aeruginosa  |
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| 21 |
Schuster, M., Lostroh, C.P., Ogi, T., and Greenberg, E.P. 2003. Identification, timing, and signal specificity of Pseudomonas aeruginosa quorum-controlled genes: a transcriptome analysis. J. Bacteriol. 185, 2066–2079. |
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| 22 |
Contributions of antibiotic penetration, oxygen limitation, and low metabolic activity to tolerance of Pseudomonas aeruginosa biofilms to ciprofloxacin and tobramycin.  |
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| 23 |
Cell-cell communication in Gram-negative bacteria.  |
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| 24 |
Identification of Genes Controlled by Quorum Sensing in Pseudomonas aeruginosa  |
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| 25 |
Quorum sensing, communication and cross-kingdom signalling in the bacterial world.  |
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