Abstract Background Critically ill patients are exposed to important pharmacokinetic alteration that can lead to under- or over-exposure. In addition, children and neonates undergo physical growth and organ maturation that alter drug pharmacokinetics, especially children with sickle cell disease who frequently experience organ dysfunctions. The aim of the study was to describe cefotaxime and desacetyl-cefotaxime pharmacokinetics and optimize dosing regimens in this population. Methods We performed a pharmacokinetic analysis of cefotaxime and its metabolite desacetyl-cefotaxime via a population approach. Trough concentrations and steady-state concentrations were then simulated using several doses and were compared to pharmacological targets: 100% fT 4 × MIC and Cτ or CSS 60 mg/L. Results A total of 797 cefotaxime and desacetyl-cefotaxime observations were collected from 242 children and neonates, including 50 with sickle cell disease (SCD). Cefotaxime data was best described by a two-compartment model with first-order absorption and elimination. A supplemental compartment was linked to the cefotaxime central compartment to describe desacetyl-cefotaxime pharmacokinetics. Allometric scaling with bodyweight, eGFR and Sickle cell status turned out to be significant in the model. Post-menstrual age was used to describe organ maturation functions for neonates. Simulations showed that probability of attaining targets was systematically better through continuous perfusion. Doses were suggested up to 300 mg/kg/day according to covariates. Conclusion We identified bodyweight, SCD status and eGFR as significant covariate that influence cefotaxime PK. Continuous infusion was the most performant way to achieve the pharmacological target in critically ill children and neonates, making a first necessary step towards individualized prescription in this fragile population.
Abdalla et al. (Sat,) studied this question.