Population pharmacokinetics of gentamicin and dosing optimization for infants
Susanna E Medellín-Garibay1, Aída Rueda-Naharro2, Silvia Peña-Cabia2
1Departamento de Farmacia, Facultad de Ciencias Químicas, Universidad Autónoma de San Luis Potosí, San Luis Potosí, Mexico susanna.garibay@gmail.com.
Insights
This study characterizes gentamicin pharmacokinetics in infants, finding body weight and age significantly impact drug levels. A new once-daily dosing regimen is proposed for improved safety and efficacy in this pediatric population.
Area of Science:
- Pharmacology
- Pediatrics
- Drug Metabolism
Background:
- Gentamicin is a critical antibiotic for infant infections.
- Understanding gentamicin pharmacokinetics in infants is essential for safe and effective dosing.
- Inter- and intraindividual variability in gentamicin response necessitates detailed population pharmacokinetic analysis.
Purpose of the Study:
- To characterize and validate the population pharmacokinetics of gentamicin in infants (1-24 months).
- To identify key clinical covariates influencing gentamicin variability.
- To propose an optimized dosing regimen for gentamicin in infants.
Main Methods:
- Retrospective analysis of plasma concentration and time data from 208 infants.
- Population pharmacokinetic modeling using NONMEM 7.2 with one- and two-compartment models.
- External validation in a separate cohort of 55 infants.
Main Results:
- Gentamicin exhibits two-compartment pharmacokinetics in infants.
- Total body weight is the primary covariate influencing central volume (Vc) and clearance (CL).
- Age-related parameters differ from neonatal populations; creatinine clearance also impacts CL.
Conclusions:
- Gentamicin pharmacokinetics in infants are distinct from neonates and older children.
- A once-daily intravenous dosage of 7 mg/kg is proposed, requiring therapeutic drug monitoring.
- Consideration of age and weight-based dosing adjustments is crucial for gentamicin therapy in infants.
Abstract:
The aim of this study was to characterize and validate the population pharmacokinetics of gentamicin in infants and to determine the influences of clinically relevant covariates to explain the inter- and intraindividual variabilities associated with this drug. Infants receiving intravenous gentamicin and with routine therapeutic drug monitoring were consecutively enrolled in the study. Plasma concentration and time data were retrospectively collected from 208 infants (1 to 24 months old) of the Hospital Universitario Severo Ochoa (Spain), of whom 44% were males (mean age [± standard deviation], 5.8 ± 4.8 months; mean body weight, 6.4 ± 2.2 kg). Data analysis was performed with NONMEM 7.2. One- and two-compartment open models were analyzed to estimate the gentamicin population parameters and the influences of several covariates. External validation was carried out in another population of 55 infants. The behavior of gentamicin in infants exhibits two-compartment pharmacokinetics, with total body weight being the covariate that mainly influences central volume (Vc) and clearance (CL); this parameter was also related to creatinine clearance. Both parameters are age related and different from those reported for neonatal populations. On the basis of clinical presentation and diagnosis, a once-daily dosage regimen of 7 mg/kg of body weight every 24 h is proposed for intravenous gentamicin, followed by therapeutic drug monitoring in order to avoid toxicity and ensure efficacy with minimal blood sampling. Gentamicin pharmacokinetics and disposition were accurately characterized in this pediatric population (infants), with the parameters obtained being different from those reported for neonates and children. These differences should be considered in the dosing and therapeutic monitoring of this antibiotic.
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