Journal of Chemotherapy · 2016 · 14 citations · 15 references
Microbial PathogensKlebsiella PneumoniaeOther Virulence FactorsAntimicrobial ChemotherapyBacterial PathogensDrug ResistanceInhibited Urease ProductionAntibacterial MechanismsInfection ControlAntimicrobial ResistanceHealth SciencesVirulence FactorAntibacterial AgentSub-inhibitory ConcentrationsAntimicrobial CompoundPharmacologyClinical MicrobiologyTopical DerivativeAntimicrobial SusceptibilityAntibioticsMicrobiologyUrease ProductionMedicine
Rifaximin, a topical derivative of rifampin, inhibited urease production and other virulence factors at sub-MIC concentrations in strains involved in hepatic encephalopathy and the expression of methicillin resistance in Staphylococcus aureus. In particular, urease production was affected in all Proteus mirabilis and Klebsiella pneumoniae strains as well as in all tested Pseudomonas aeruginosa isolates. Other exotoxins, synthesized by P. aeruginosa, such as protease, gelatinase, lipase, lecithinase and DNAse were also not metabolized in the presence of rifaximin. This antibiotic inhibited pigment production in both P. aeruginosa and Chromobacterium violaceum, a biosensor control strain. Lastly, rifaximin affected haemolysin production in S. aureus and was able to restore cefoxitin susceptibility when the strain was cultured in the presence of sub-MICs of the drug. The present findings confirm and extend previous observations about the beneficial effects of rifaximin for the treatment of gastrointestinal diseases, since in this anatomic site, it reaches a large array of concentrations which prevents enterobacteria from thriving and/or producing their major virulence factors.
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Rifaximin Treatment in Hepatic Encephalopathy
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