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1.
J Antimicrob Chemother ; 56(2): 297-306, 2005 Aug.
Article in English | MEDLINE | ID: mdl-15956100

ABSTRACT

OBJECTIVES: To determine the efficacy of enrofloxacin (Baytril) in chickens in eradicating three different resistance phenotypes of Salmonella enterica and to examine the resistance mechanisms of resulting mutants. METHODS: In two separate replicate experiments (I and II), three strains of Salmonella enterica serovar Typhimurium DT104 [strain A, fully antibiotic-sensitive strain; strain B, isogenic multiple antibiotic-resistant (MAR) derivative of A; strain C, veterinary penta-resistant phenotype strain containing GyrA Phe-83], were inoculated into day-old chicks at approximately 10(3) cfu/bird. At day 10, groups of chicks (n =10) were given either enrofloxacin at 50 ppm in their drinking water for 5 days or water alone (control). Caecal contents were monitored for presence of Salmonella and colonies were replica plated to media containing antibiotics or overlaid with cyclohexane to determine the proportion of isolates with reduced susceptibility. The MICs of antibiotics and cyclohexane tolerance were determined for selected isolates from the chicks. Mutations in topoisomerase genes were examined by DHPLC and expression of marA, soxS, acrB, acrD and acrF by RT-PCR. RESULTS: In experiment I, but not II, enrofloxacin significantly reduced the numbers of strain A compared with the untreated control group. In experiment II, but not I, enrofloxacin significantly reduced the numbers of strain B. Shedding of strain C was unaffected by enrofloxacin treatment. Birds infected with strains A and B gave rise to isolates with decreased fluoroquinolone susceptibility. Isolates derived from strain A or B requiring >128 mg/L nalidixic acid for inhibition contained GyrA Asn-82 or Phe-83. Isolates inhibited by 16 mg/L nalidixic acid were also less susceptible to antibiotics of other chemical classes and became cyclohexane-tolerant (e.g. MAR). CONCLUSIONS: These studies demonstrate that recommended enrofloxacin treatment of chicks rapidly selects for strains with reduced fluoroquinolone susceptibility from fully sensitive and MAR strains. It can also select for MAR isolates.


Subject(s)
Anti-Bacterial Agents/therapeutic use , DNA Gyrase/genetics , Fluoroquinolones/therapeutic use , Gene Expression/drug effects , Salmonella Infections, Animal/drug therapy , Salmonella typhimurium/drug effects , Animals , Chickens , Drug Resistance, Multiple, Bacterial/drug effects , Drug Resistance, Multiple, Bacterial/genetics , Enrofloxacin , Genes, Bacterial , Microbial Sensitivity Tests , Mutation , Salmonella Infections, Animal/microbiology , Salmonella typhimurium/genetics
2.
Antimicrob Agents Chemother ; 48(10): 4012-5, 2004 Oct.
Article in English | MEDLINE | ID: mdl-15388468

ABSTRACT

Salmonella enterica isolates (n = 182) were examined for mutations in the quinolone resistance-determining region of gyrA, gyrB, parC, and parE. The frequency, location, and type of GyrA substitution varied with the serovar. Mutations were found in parC that encoded Thr57-Ser, Thr66-Ile, and Ser80-Arg substitutions. Mutations in the gyrB quinolone resistance-determining region were located at codon Tyr420-Cys or Arg437-Leu. Novel mutations were also found in parE encoding Glu453-Gly, His461-Tyr, Ala498-Thr, Val512-Gly, and Ser518-Cys. Although it is counterintuitive, isolates with a mutation in both gyrA and parC were more susceptible to ciprofloxacin than were isolates with a mutation in gyrA alone.


Subject(s)
Anti-Bacterial Agents/pharmacology , DNA Gyrase/genetics , DNA Topoisomerase IV/genetics , Drug Resistance, Bacterial/genetics , Quinolones/pharmacology , Salmonella enterica/drug effects , Salmonella enterica/genetics , Ciprofloxacin/pharmacology , Codon/genetics , DNA Gyrase/physiology , DNA Primers , DNA Topoisomerase IV/physiology , DNA Topoisomerases, Type I , Electrophoresis, Gel, Pulsed-Field , Microbial Sensitivity Tests , Reverse Transcriptase Polymerase Chain Reaction
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