Abstract
The in vitro antibacterial potencies of A-56619 and A-56620, two new aryl-fluoroquinolones, were compared with the potency of norfloxacin against a broad spectrum of organisms. Cefotaxime, aztreonam, piperacillin, imipenem, penicillin, and gentamicin were also tested for reference purposes. The MICs required to inhibit at least 90% of the strains tested ranged from 0.25 to 4 micrograms/ml for A-56619 and from 0.06 to 0.5 microgram/ml for A-56620 for members of the Enterobacteriaceae. A-56619 was generally twofold less potent and A-56620 was twofold more potent than norfloxacin against most aerobic gram-negative bacilli, including members of the Enterobacteriaceae and Pseudomonas aeruginosa. Against indole-positive Proteus, Morganella, Providencia rettgeri, and Serratia strains, A-56619 was at least 8- to 16-fold less potent than norfloxacin. A-56619 and A-56620 were four- to eightfold more potent than norfloxacin against Staphylococcus aureus and equally potent to fourfold more potent against Streptococcus species, Haemophilus influenzae, and Neisseria gonorrhoeae. The MICs of A-56619 and A-56620 were only slightly affected by increased inoculum size or by the addition of various cations at physiologic concentrations. A-56619 was three- to fivefold less active at pH 8.0 than at pH 6.5 or 7.2. A-56620 was twofold less active at pH 6.5 than at pH 8.0 or 7.2 against members of the Enterobacteriaceae and Pseudomonas aeruginosa; similar pH variations did not affect A-56620 activity against gram-positive cocci. The potencies of A-56619, A-56620, and norfloxacin were less in urine than in Mueller-Hinton broth; however, this effect was more pronounced with norfloxacin. Human serum at a concentration of 50% caused a 4- to 64- fold decrease in the potency of A-56619 and an average 4-fold decrease in the potency of A-56620, compared with no effect on the potency of norfloxacin. A-56619, A-56620, and norfloxacin were bactericidal and, at four times the MIC, reduced the viable cell counts of Escherichia coli, Staphylococcus aureus, and Pseudomonas aeruginosa by approximately 99.9% within 2 h. A-56619, A-56620, and norfloxacin showed no significant synergistic activity and no antagonism when they were aminoglycoside or beta-lactam antimicrobial agents.
MeSH Terms
Anti-Infective Agents
Aztreonam/pharmacology
Bacteria/drug effects
Cefotaxime/pharmacology
Ciprofloxacin/analogs & derivatives
Drug Combinations
Enterobacteriaceae/drug effects
Escherichia coli/drug effects
Fluoroquinolones
Gentamicins/pharmacology
Haemophilus influenzae/drug effects
Half-Life
Humans
Imipenem
Microbial Sensitivity Tests
Neisseria gonorrhoeae/drug effects
Norfloxacin/pharmacology
Penicillins/pharmacology
Piperacillin/pharmacology
Piperazines/blood,pharmacology,urine
Pseudomonas aeruginosa/drug effects
Quinolines/blood,pharmacology,urine
Staphylococcus aureus/drug effects
Streptococcus/drug effects
Thienamycins/pharmacology
Chemicals
Anti-Infective Agents
Drug Combinations
Fluoroquinolones
Gentamicins
Penicillins
Piperazines
Quinolines
Thienamycins
Ciprofloxacin
difloxacin
Imipenem
Aztreonam
Norfloxacin
Cefotaxime
sarafloxacin
Piperacillin
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Stamm J M
Hanson C W
Chu D T
Bailer R
Vojtko C
Fernandes P B
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