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Fluoroquinolone AUIC break points and the link to bacterial killing rates. Part 2: human trials
Jerome J Schentag1, Alison K Meagher, Alan Forrest
1CPL Associates, LLC, Buffalo, NY, USA. schentag@buffalo.edu
Objective:
To review clinical trials with fluoroquinolones and the pharmacokinetic and pharmacodynamic parameters predictive of clinical and microbiologic outcomes and resistance. Data on fluoroquinolones are summarized and the premise that a single AUIC target >125 may be used for all fluoroquinolones against all target organisms is examined.
Data Sources:
Primary articles were identified by a MEDLINE search (1966-February 2002) and through secondary sources.
Study Selection And Data Extraction:
All of the articles identified from the data sources were evaluated and all information deemed relevant was included.
Data Synthesis:
The fluoroquinolones exhibit concentration-dependent killing. This effect clearly depends upon concentrations achieved and outcomes depend upon endpoints established by individual investigators. With AUIC values <60, the actions of fluoroquinolones are essentially bacteriostatic; any observed bacterial killing is the combined effect of low concentrations in relation to minimum inhibitory concentration and the action of host factors such as neutrophils and macrophages. AUIC values >100 but <250 yield bacterial killing at a slow rate, but usually by day 7 of treatment. AUICs >250 produce rapid killing, and bacterial eradication occurs within 24 hours. Disagreements regarding target endpoints are the expected consequences of comparing microbial and clinical outcomes across animal models, in vitro experiments (Part 1), and humans when the endpoints are clearly not equivalent. Careful attention to time-related events such as speed of bacterial killing versus global endpoints such as bacteriologic cure allows optimal break points to be defined.
Conclusions:
Evidence from human trials favors the use of AUIC values >250 for rapid bactericidal action, regardless of whether the organism is gram-negative or gram-positive.
Insights
Higher fluoroquinolone AUC/MIC ratios (AUIC) >250 are crucial for rapid bacterial killing in human trials. This target ensures effective treatment against both gram-negative and gram-positive infections.
Area of Science:
- Pharmacology
- Microbiology
- Clinical Trials
Background:
- Fluoroquinolones are a class of antibiotics known for their concentration-dependent killing effect.
- Understanding the pharmacokinetic and pharmacodynamic parameters is essential for predicting treatment outcomes and antimicrobial resistance.
Purpose of the Study:
- To review clinical trials on fluoroquinolones.
- To identify pharmacokinetic and pharmacodynamic parameters predictive of clinical and microbiologic outcomes.
- To examine the proposed single AUIC target of >125 for all fluoroquinolones against all organisms.
Main Methods:
- A comprehensive MEDLINE search (1966-February 2002) and secondary sources were used to identify primary articles.
- All identified articles were evaluated for relevant information.
Main Results:
- Fluoroquinolones exhibit concentration-dependent killing, with outcomes influenced by achieved concentrations and established endpoints.
- Area Under the Inhibitory Curve (AUIC) values <60 result in bacteriostatic effects.
- AUIC values >100 but <250 lead to slow bacterial killing, typically by day 7.
- AUIC values >250 demonstrate rapid killing and bacterial eradication within 24 hours.
Conclusions:
- Human trials indicate that AUIC values >250 are favored for achieving rapid bactericidal action.
- This recommendation applies irrespective of whether the target organism is gram-negative or gram-positive.
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