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Journal of Bacteriology|May 18, 2023
Manganese Acts as an Environmental Inhibitor of Pseudomonas aeruginosa Biofilm Development by Inducing Dispersion and Modulating c-di-GMP and Exopolysaccharide Production via RbdASoyoung Park, Jozef Dingemans, Karin SauerJournal of Bacteriology|May 21, 2013
The MerR-like regulator BrlR confers biofilm tolerance by activating multidrug efflux pumps in Pseudomonas aeruginosa biofilmsJulie Liao, Michael J Schurr, Karin SauerJournal of Bacteriology|March 4, 2024
Flip the switch: the role of FleQ in modulating the transition between the free-living and sessile mode of growth in <i>Pseudomonas aeruginosa</i>Victoria I Oladosu, Soyoung Park, Karin SauerThe Journal of Antimicrobial Chemotherapy|March 14, 2009
Effect of a solution containing citrate/Methylene Blue/parabens on Staphylococcus aureus bacteria and biofilm, and comparison with various heparin solutionsKarin Sauer, Janusz Steczko, Stephen R AshFrontiers in Microbiology|February 17, 2018
Cyclic-di-GMP and <i>oprF</i> Are Involved in the Response of <i>Pseudomonas aeruginosa</i> to Substrate Material Stiffness during Attachment on Polydimethylsiloxane (PDMS)Fangchao Song, Hao Wang, Karin Sauer, et al.Msphere|June 1, 2018
The Yin and Yang of SagS: Distinct Residues in the HmsP Domain of SagS Independently Regulate Biofilm Formation and Biofilm Drug ToleranceJozef Dingemans, Bandita Poudyal, Holger Sondermann, et al.Journal of Bacteriology|June 4, 2014
The Pseudomonas aeruginosa diguanylate cyclase GcbA, a homolog of P. fluorescens GcbA, promotes initial attachment to surfaces, but not biofilm formation, via regulation of motilityOlga E Petrova, Kathryn E Cherny, Karin SauerJournal of Bacteriology|October 22, 2014
The diguanylate cyclase GcbA facilitates Pseudomonas aeruginosa biofilm dispersion by activating BdlAOlga E Petrova, Kathryn E Cherny, Karin SauerJournal of Bacteriology|April 12, 2012
The phosphodiesterase DipA (PA5017) is essential for Pseudomonas aeruginosa biofilm dispersionAnkita Basu Roy, Olga E Petrova, Karin SauerMbio|June 12, 2014
Bacteria present in carotid arterial plaques are found as biofilm deposits which may contribute to enhanced risk of plaque ruptureBernard B Lanter, Karin Sauer, David G DaviesPageof 8