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Published on: January 27, 2019
Developmental pharmacokinetics of gentamicin in preterm and term neonates: population modelling of a prospective
Elisabet I Nielsen1, Marie Sandström, Per Hartvig Honoré
1Department of Pharmaceutical Biosciences, Uppsala University, Uppsala, Sweden.
Insights
Gentamicin dosing in neonates requires careful consideration of bodyweight and age. Preterm infants may need higher doses and longer intervals to reach therapeutic gentamicin levels.
Area of Science:
- Pharmacokinetics and Pharmacodynamics
- Neonatal Medicine
- Drug Dosing Optimization
Background:
- Neonates exhibit significant interindividual variability (IIV) in gentamicin pharmacokinetics.
- Optimizing gentamicin dosing is crucial for achieving therapeutic concentrations and minimizing monitoring.
Purpose of the Study:
- Characterize population pharmacokinetics of gentamicin in preterm and term neonates.
- Identify covariates influencing gentamicin IIV.
- Evaluate cystatin C as a gentamicin clearance marker.
Main Methods:
- Prospective study in a Neonatal Intensive Care Unit.
- Population pharmacokinetic modeling using NONMEM software.
- Analysis of bodyweight, gestational age (GA), postnatal age (PNA), and renal markers.
Main Results:
- Gentamicin clearance increased nonlinearly with GA and PNA.
- GA influenced the central volume of distribution; preterm neonates had larger volumes per kg.
- Cystatin C and creatinine did not correlate with gentamicin clearance.
Conclusions:
- Bodyweight and age (GA, PNA) are key determinants of gentamicin clearance variability in neonates.
- Cystatin C and creatinine are not reliable markers for gentamicin clearance in this population.
- Standard gentamicin dosing may be insufficient for preterm neonates, necessitating dose adjustments.
Background And Objective:
Preterm and term newborn infants show wide interindividual variability (IIV) in pharmacokinetic parameters of gentamicin. More extensive knowledge and use of predictive covariates could lead to faster attainment of therapeutic concentrations and a reduced need for concentration monitoring. This study was performed to characterize the population pharmacokinetics of gentamicin in preterm and term neonates and to identify and quantify relationships between patient characteristics and IIV. A secondary aim was to evaluate cystatin C as a marker for gentamicin clearance in this patient population.
Methods:
Data were collected in a prospective study performed in the Neonatal Intensive Care Unit at the University Children's Hospital, Uppsala, Sweden. Population pharmacokinetic modelling was performed using nonlinear mixed-effects modelling (NONMEM) software. Bodyweight was included as the primary covariate according to an allometric power model. Other evaluated covariates were age (postmenstrual age, gestational age [GA], postnatal age [PNA]), markers for renal function (serum creatinine, serum cystatin C) and concomitant medication with cefuroxime, vancomycin or indometacin. Covariate-parameter relationships were explored using a stepwise covariate model building procedure. The predictive performance of the developed model was evaluated using an independent external dataset for a similar patient population.
Results:
Sixty-one newborn infants (GA range 23.3-42.1 weeks, PNA range 0-45 days) were enrolled in the study. In total, 894 serum gentamicin samples were included in the analysis. The concentration-time profile was described using a three-compartment model. Gentamicin clearance increased with the GA and PNA (included in a nonlinear fashion). The GA was also identified as having a significant influence on the central volume of distribution, with a preterm neonate having a larger central volume of distribution per kilogram of bodyweight than a term neonate. Cystatin C and creatinine were not correlated with gentamicin clearance in this study population. The external dataset was well predicted by the developed model.
Conclusion:
Bodyweight and age (GA and PNA) were found to be major factors contributing to IIV in gentamicin clearance in neonates. Based on these data, cystatin C and serum creatinine were not correlated with gentamicin clearance and therefore not likely to be predictive markers of renal function in this patient population. Based on predictions from the developed model, preterm neonates do not reach targeted peak and trough gentamicin concentrations after a standard dosage regimen of 4 mg/kg given once daily, suggesting a need for higher loading doses and prolonged dosing intervals in this patient population.
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