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Effect of the abscess environment on the antimicrobial activity of ciprofloxacin
1Infectious Diseases Division, Oregon Health Sciences University, Portland, Oregon 97201.
Abstract:
The present studies were conducted to identify factors in human purulent material that might limit or enhance the activity of ciprofloxacin against bacteria causing suppurative infection. Ciprofloxacin, imipenem, and ampicillin were tested with regard to binding or inactivation by pus. The bactericidal activity of ciprofloxacin and imipenem were tested against Escherichia coli, Klebsiella pneumoniae, Pseudomonas aeruginosa, or Staphylococcus aureus in human pus with a pH of 6.0 incubated at 37 degrees C under aerobic or anaerobic conditions. The effect of single or combination drug therapy with 20 mg/kg of ciprofloxacin, imipenem, or rifampin given every 12 hours was tested against E. coli or P. aeruginosa in polymicrobic murine abscesses that had been produced by subcutaneous injection of either of those organisms mixed with Bacteroides fragilis and autoclaved human stool. Antibiotic levels and the number of bacteria surviving in pus were quantitated. Therapy of subcutaneous abscesses was delayed 72 hours to test drug efficacy against organisms in well-established infections. Levels of ampicillin, imipenem, or ciprofloxacin were reduced from 10 micrograms/ml to 3.1 +/- 4.0, 2.7 +/- 3, or 5.8 +/- 2 micrograms/ml, respectively, after incubation in eight pus specimens for 24 hours at 37 degrees C. Ampicillin levels were reduced to less than 1 microgram/ml in four pus specimens containing beta-lactamase. Imipenem levels were undetectable in two specimens and were 0.2 micrograms/ml in one specimen. Ciprofloxacin binding to pus supernate or sediment appeared to be explained by its binding to the deoxyribonucleic acid (DNA) present in pus. Activity of 5 micrograms/ml of ciprofloxacin against four E. coli or K. pneumoniae strains in pus in vitro was greater than that of twofold higher concentrations of imipenem. The bactericidal activity of ciprofloxacin and imipenem were comparable but substantially reduced against S. aureus and P. aeruginosa in pus. Ciprofloxacin alone or regimens combining ciprofloxacin with rifampin or rifampin plus imipenem reduced the number of E. coli in polymicrobic subcutaneous abscesses but had little effect on P. aeruginosa in polymicrobic abscesses. The anaerobic abscess milieu appeared to inhibit the growth of P. aeruginosa. Ciprofloxacin activity in abscess fluid did not appear to be adversely affected by acid pH, aerobic or anaerobic conditions of incubation, the abscess constituents, or the binding of ciprofloxacin to the DNA in pus. Ciprofloxacin was bound to DNA of bacterial or human origin. Binding by pus was reversible, and binding to DNA extracts of pus was blocked by pretreatment of extracts with deoxyribonuclease but not by pretreatment with ribonuclease.(ABSTRACT TRUNCATED AT 400 WORDS)
Insights
Ciprofloxacin maintains activity in human pus, despite binding to deoxyribonucleic acid (DNA). This antibiotic effectively targets bacteria in suppurative infections, showing promise for treating abscesses.
Area of Science:
- Microbiology
- Pharmacology
- Infectious Diseases
Background:
- Human purulent material can influence antibiotic efficacy against bacteria causing suppurative infections.
- Understanding these interactions is crucial for optimizing antibiotic treatment strategies.
Purpose of the Study:
- To identify factors in human pus that affect the activity of ciprofloxacin.
- To evaluate the binding and inactivation of ciprofloxacin, imipenem, and ampicillin by pus.
- To assess the bactericidal activity of ciprofloxacin and imipenem in pus and their efficacy in murine abscess models.
Main Methods:
- Antibiotics (ciprofloxacin, imipenem, ampicillin) were incubated in human pus to assess binding and inactivation.
- Bactericidal activity was tested against Escherichia coli, Klebsiella pneumoniae, Pseudomonas aeruginosa, and Staphylococcus aureus in pus under various conditions.
- In vivo efficacy was evaluated in murine abscesses using single and combination drug therapies.
Main Results:
- Ampicillin and imipenem levels were significantly reduced in pus, with ampicillin inactivated by beta-lactamase and imipenem showing low levels.
- Ciprofloxacin showed reduced levels but retained activity, binding to deoxyribonucleic acid (DNA) in pus, which was reversible.
- In vitro, ciprofloxacin was more active than imipenem against E. coli and K. pneumoniae in pus; both were less active against S. aureus and P. aeruginosa.
- In vivo, ciprofloxacin reduced E. coli but had limited effect on P. aeruginosa in polymicrobic abscesses, with the anaerobic environment inhibiting P. aeruginosa growth.
Conclusions:
- Ciprofloxacin's activity in abscess fluid is not adversely affected by pus constituents, pH, or aerobic/anaerobic conditions.
- Binding to bacterial or human DNA in pus is a key interaction for ciprofloxacin, and this binding is reversible and mediated by DNA.
- Ciprofloxacin demonstrates potential for treating suppurative infections, with its efficacy influenced by bacterial species and the abscess environment.