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Salmonella enterica

  • Mechanisms of Resistance
    Evidence for an Efflux Pump Mediating Multiple Antibiotic Resistance in Salmonella enterica Serovar Typhimurium
    Laura J. V. Piddock, David G. White, Karl Gensberg, Lilian Pumbwe, Deborah J. Griggs
  • Mechanisms of Action: Physiological Effects
    Biological Cost of AmpC Production forSalmonella enterica Serotype Typhimurium
    M. I. Morosini, J. A. Ayala, F. Baquero, J. L. Martínez, J. Blázquez
  • Mechanisms of Resistance
    Antimicrobial Resistance and Spread of Class 1 Integrons among Salmonella Serotypes
    Beatriz Guerra, Sara Soto, Santiago Cal, M. Carmen Mendoza
  • Mechanisms of Resistance
    Evidence for Active Efflux as the Primary Mechanism of Resistance to Ciprofloxacin in Salmonella enterica Serovar Typhimurium
    Etienne Giraud, Axel Cloeckaert, Dominique Kerboeuf, Elisabeth Chaslus-Dancla
  • Mechanisms of Resistance
    Occurrence of a Salmonella enterica Serovar Typhimurium DT104-Like Antibiotic Resistance Gene Cluster Including thefloR Gene in S. enterica Serovar Agona
    Axel Cloeckaert, Karim Sidi Boumedine, Geraldine Flaujac, Hein Imberechts, Inge D'Hooghe, Elisabeth Chaslus-Dancla
  • Mechanisms of Resistance
    A Novel Integron in Salmonella enterica Serovar Enteritidis, Carrying the blaDHA-1 Gene and Its Regulator Gene ampR, Originated fromMorganella morganii
    Charlotte Verdet, Guillaume Arlet, Guilene Barnaud, Philippe H. Lagrange, Alain Philippon
  • Susceptibility
    Incidence of Quinolone Resistance Over the Period 1986 to 1998 in Veterinary Salmonella Isolates from Germany
    Burkhard Malorny, Andreas Schroeter, Reiner Helmuth
  • Mechanisms of Resistance
    Tetracycline Resistance in Salmonella enterica subsp. enterica Serovar Dublin
    Gabriele Frech, Stefan Schwarz

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