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Population plasma and urine pharmacokinetics and the probability of target attainment of fosfomycin in healthy male volunteers

Angela Elma Edwina; Birgit C. P. Koch; Anouk E. Muller; Valentin al Jalali; Peter Matzneller; Markus Zeitlinger; Sebastiaan D. T. Sassen
European Journal of Clinical Pharmacology · Vol. 79, Issue 6 · pp. 775-787 · 2023

Abstract

Purpose A population pharmacokinetic model of fosfomycin was developed in healthy volunteers after intravenous administration, and different dosing regimens were evaluated in terms of the probability of target attainment for Escherichia coli using both plasma and urinary pharmacokinetic/pharmacodynamic targets. Methods Eight healthy men received fosfomycin as both intermittent 8 g q8h and continuous infusion 1 g/h with a loading dose of 8 g in a crossover study design. Dense sampling was conducted during both regimens. Population pharmacokinetic modelling was performed using NONMEM. Monte Carlo simulations were conducted to evaluate the Probability of Target Attainment (PTA) of different dosing regimens using bactericidal (AUC 24h /MIC of 83 and 75% T >MIC ) and bacteriostatic (AUC 24h /MIC of 25) plasma targets and bacteriostatic (AUC 24h /MIC of 3994) urine target. Results A total of 176 plasma and 86 urine samples were available for PK analysis. A two-compartment model with a urine compartment best described the data. Glomerular filtration rate (GFR) showed a significant correlation with renal clearance and was implemented in the final model. Simulation results show that the dose of 4 g q8h reached 100% of PTA using bactericidal and bacteriostatic targets for MIC up to 16 mg/L. Conclusion For the clinical breakpoint of 32 mg/L, the standard dosing regimen (4 g q8h) might not be sufficient to reach the bactericidal target. Higher dosing of 8 g q8h as an intermittent infusion or 0.75 g/h as a continuous infusion might be required. Continuous infusion resulted in better attainment of the % T >MIC target than intermittent infusion.

Bibliographic Information

JournalEuropean Journal of Clinical Pharmacology
PublisherSpringer
Publication Date2023-06-01
Publication Year2023
Volume79
Issue6
Pages775-787
Document TypeJournal Article
Print ISSN0031-6970
eISSN1432-1041
DOI10.1007/s00228-023-03477-5

Access Information

NARA Access Coverage1968-01-01~Current
Journal Homepagehttps://www.springer.com/journal/228
Publisher PageOpen Publisher Page
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