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Testing the mutant selection window hypothesis with Staphylococcus aureus exposed to daptomycin and vancomycin in an
Alexander A Firsov1, Maria V Smirnova, Irene Yu Lubenko
1Department of Pharmacokinetics & Pharmacodynamics, Gause Institute of New Antibiotics, Russian Academy of Medical Sciences, 11 Bolshaya Pirogovskaya Street, Moscow, 119021 Russia. firsov@dol.ru
Objectives:
To extend the mutant selection window (MSW) hypothesis to include antibiotics in addition to fluoroquinolones, the pharmacodynamics of daptomycin (DAP) and vancomycin (VAN) and their ability to prevent the selection of resistant Staphylococcus aureus were studied in an in vitro model that simulates antibiotic concentrations below the MIC, between the MIC and the mutant prevention concentration (MPC), and above the MPC.
Methods:
Two clinical isolates of S. aureus, S. aureus 866 (MIC(DAP) 0.35, MIC(VAN) 0.7, MPC(DAP) 1.1, MPC(VAN) 2.4 mg/L) and S. aureus 10 (MIC(DAP) 1.1, MIC(VAN) 1.3, MPC(DAP) 5.5, MPC(VAN) 11 mg/L), were exposed for five consecutive days to once-daily daptomycin (half-life 9 h) and twice-daily vancomycin (half-life 6 h) at the ratio of 24 h area under the concentration-time curve (AUC24) to MIC that varied over a 16- to 30-fold range. The cumulative antimicrobial effect was expressed by its intensity (I(E)). Changes in susceptibility and numbers of surviving organisms on agar plates containing 2x and 4x MIC of daptomycin or vancomycin were monitored daily.
Results:
The I(E)-log AUC24/MIC plots were bacterial strain- and antibiotic-independent. This allowed combination of data obtained with both antibiotics and both organisms. Based on the sigmoid relationship between I(E) and the AUC24/MIC (r2 = 0.9), the antistaphylococcal effect of the therapeutic doses of daptomycin (4 and 6 mg/kg) against a hypothetical S. aureus with MIC equal to the MIC90 (AUC24/MIC90 380 and 570 h, respectively) was predicted to be similar to the effect of two 1 g doses of vancomycin given at a 12 h interval (AUC24/MIC90 200 h). AUC24/MIC relationships of the final-to-initial MIC ratio and logarithm of the ratio of maximal-to-initial numbers of organisms resistant to 2x and 4x MIC of daptomycin or vancomycin were bell-shaped and bacterial strain- and antibiotic-independent. Based on these relationships, an AUC24/MIC ratio that protects against the selection of resistant mutants was predicted at > or = 200 h. This protective value is less than the AUC24/MIC90s provided by the 4 mg/kg dose and considerably less than the 6 mg/kg dose of daptomycin, but it is close to the AUC24/MIC90 provided by two 1 g doses of vancomycin.
Conclusions:
These findings support the MSW hypothesis and suggest comparable antistaphylococcal effects of clinically achievable AUC24/MIC90s of daptomycin and vancomycin but slightly better prevention against the selection of resistant S. aureus by daptomycin.
Insights
The mutant selection window (MSW) hypothesis was extended to daptomycin and vancomycin, showing comparable effectiveness against Staphylococcus aureus. Daptomycin demonstrated slightly superior prevention of resistant mutant selection compared to vancomycin.
Area of Science:
- Pharmacology
- Microbiology
- Infectious Diseases
Background:
- The mutant selection window (MSW) hypothesis, initially for fluoroquinolones, describes antibiotic concentrations that select for resistant bacterial mutants.
- Understanding the MSW for other antibiotics like daptomycin and vancomycin is crucial for optimizing treatment and preventing resistance.
Purpose of the Study:
- To extend the MSW hypothesis to daptomycin (DAP) and vancomycin (VAN).
- To evaluate the pharmacodynamics of DAP and VAN in preventing the selection of resistant Staphylococcus aureus.
- To compare the efficacy of DAP and VAN in an in vitro model simulating various antibiotic concentration ranges.
Main Methods:
- Two clinical isolates of S. aureus were exposed to DAP and VAN daily for five days.
- Simulated antibiotic concentrations ranged from below the minimum inhibitory concentration (MIC) to above the mutant prevention concentration (MPC).
- The cumulative antimicrobial effect (I(E)) and changes in susceptibility and resistant organism numbers were monitored daily.
Main Results:
- The relationship between I(E) and the area under the concentration-time curve (AUC24) to MIC ratio was independent of bacterial strain and antibiotic.
- Therapeutic doses of DAP showed an antistaphylococcal effect comparable to vancomycin.
- An AUC24/MIC ratio of ≥200 h was predicted to protect against resistant mutant selection, with DAP showing slightly better prevention.
Conclusions:
- Findings support the MSW hypothesis for daptomycin and vancomycin.
- Clinically achievable AUC24/MIC90s of DAP and VAN exhibit comparable antistaphylococcal effects.
- Daptomycin offers slightly better prevention against the selection of resistant S. aureus compared to vancomycin.
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