DALI: Defining Antibiotic Levels in Intensive Care Unit Patients: Are Current -Lactam Antibiotic Doses Sufficient for Critically Ill Patients?
- JRJason A. Roberts
- J.A. Roberts
- S. K. Paul
- M. Akova
- M. Bassetti
- J.J. De Waele
- G. Dimopoulos
- K.-M. Kaukonen
- D. Koulenti
- C. Martin
- P. Montravers
- J. Rello
- A. Rhodes
- T. Starr
- S.C. Wallis
- J. Lipman
- DALI Study
- J.A. Roberts
- J.A. Roberts
- J. Lipman
- T. Starr
- S.C. Wallis
- S. K. Paul
- A. Margarit Ribas
- J.J. De Waele
- L. De Crop
- H. Spapen
- J. Wauters
- T. Dugernier
- P. Jorens
- I. Dapper
- D. De Backer
- F. S. Taccone
- J. Rello
- L. Ruano
- E. Afonso
- F. Álvarez-Lerma
- M. P. Gracia-Arnillas
- F. Fernandez
- N. Feijoo
- N. Bardolet
- A. Rovira
- P. Garro
- D. Colon
- C. Castillo
- J. Fernado
- M.J. López
- J. L. Fernandez
- A. M. Arribas
- J.L. Teja
- E. Ots
- J. Carlos Montejo
- M. Catalan
- I. Prieto
- G. Gonzalo
- B. Galvan
- M. A. Blasco
- E. Meyer
- F. Del Nogal
- L. Vidaur
- R. Sebastian
- P. M. Garde
- M. d. M. Martin Velasco
- R. Zaragoza Crespo
- M. Esperatti
- A. Torres
- P. Montravers
- O. Baldesi
- H. Dupont
- Y. Mahjoub
- S. Lasocki
- J.-M. Constantin
- J. F. Payen
- C. Martin
- J. Albanese
- Y. Mallédant
- J. Pottecher
- J.-Y. Lefrant
- S. Jaber
- O. Joannes-Boyau
- C. Orban
- M. Ostermann
- C. McKenzie
- W. Berry
- J. Smith
- K. Lei
- F. Rubulotta
- A. Gordon
- S. Brett
- M. Stotz
- M. Templeton
- A. Rhodes
- C. Ebm
- C Moran
- K.-M. Kaukonen
- V. Pettila
- G. Dimopoulos
- D. Koulenti
- A. Xristodoulou
- V. Theodorou
Clinical Infectious Diseases · 2014 · Oxford University Press
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Abstract
BACKGROUND: Morbidity and mortality for critically ill patients with infections remains a global healthcare problem. We aimed to determine whether β-lactam antibiotic dosing in critically ill patients achieves concentrations associated with maximal activity and whether antibiotic concentrations affect patient outcome. METHODS: This was a prospective, multinational pharmacokinetic point-prevalence study including 8 β-lactam antibiotics. Two blood samples were taken from each patient during a single dosing interval. The primary pharmacokinetic/pharmacodynamic targets were free antibiotic concentrations above the minimum inhibitory concentration (MIC) of the pathogen at both 50% (50% f T>MIC) and 100% (100% f T>MIC) of the dosing interval. We used skewed logistic regression to describe the effect of antibiotic exposure on patient outcome. RESULTS: We included 384 patients (361 evaluable patients) across 68 hospitals. The median age was 61 (interquartile range [IQR], 48-73) years, the median Acute Physiology and Chronic Health Evaluation II score was 18 (IQR, 14-24), and 65% of patients were male. Of the 248 patients treated for infection, 16% did not achieve 50% f T>MIC and these patients were 32% less likely to have a positive clinical outcome (odds ratio [OR], 0.68; P = .009). Positive clinical outcome was associated with increasing 50% f T>MIC and 100% f T>MIC ratios (OR, 1.02 and 1.56, respectively; P < .03), with significant interaction with sickness severity status. CONCLUSIONS: Infected critically ill patients may have adverse outcomes as a result of inadeqaute antibiotic exposure; a paradigm change to more personalized antibiotic dosing may be necessary to improve outcomes for these most seriously ill patients.
