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Population pharmacokinetics and dosing optimization of vancomycin in children with malignant hematological disease
Wei Zhao1, Daolun Zhang2, May Fakhoury2
1Department of Pediatric Pharmacology and Pharmacogenetics, Hôpital Robert Debré, APHP, Paris, France Clinical Investigation Center CIC1426, INSERM, Paris, France wei.zhao@rdb.aphp.fr evelyne.jacqz-aigrain@rdb.aphp.fr.
Insights
This study found that standard vancomycin dosing is often subtherapeutic in children with hematological malignancies. An optimized, individualized dosing regimen significantly improves target vancomycin concentrations, reducing underdosing risks in this vulnerable pediatric population.
Area of Science:
- Pediatric Hematology
- Pharmacokinetics
- Infectious Diseases
Background:
- Limited pediatric data exists for vancomycin dosing in malignant hematological disease.
- Current recommended vancomycin regimens (40-60 mg/kg/day) result in subtherapeutic levels in 76% of pediatric patients.
- Vancomycin is crucial for treating serious infections in immunocompromised children.
Purpose of the Study:
- To evaluate vancomycin population pharmacokinetics in children with malignant hematological disease.
- To define an appropriate vancomycin dosing regimen for this specific pediatric population.
- To minimize risks of underdosing and overdosing vancomycin.
Main Methods:
- Prospective collection of vancomycin concentrations during therapeutic drug monitoring.
- Population pharmacokinetic analysis using NONMEM software in 70 pediatric patients.
- Internal and external model validation using Bayesian estimation.
Main Results:
- A one-compartment model with first-order elimination was developed.
- Weight, creatinine clearance, and malignant hematological disease status significantly influenced vancomycin clearance and volume of distribution.
- The optimized, patient-tailored regimen increased the proportion of patients reaching target vancomycin concentrations (60% vs. 49%).
Conclusions:
- Current vancomycin dosing is inadequate for pediatric patients with malignant hematological disease.
- An optimized dosing regimen, considering weight and creatinine clearance, improves therapeutic efficacy.
- Individualized vancomycin therapy is recommended for this vulnerable pediatric population.
Abstract:
An increase in vancomycin dose has been proposed in adults with malignant hematological disease. As pediatric data are limited, our aim was to evaluate the population pharmacokinetics of vancomycin in order to define the appropriate dosing regimen in children with malignant hematological disease. Vancomycin concentrations were collected prospectively during therapeutic monitoring. Population pharmacokinetic analysis was performed using NONMEM software. Seventy children (age range, 0.3 to 17.7 years) were included. With the current recommended dosing regimen of 40 to 60 mg/kg/day, 53 children (76%) had subtherapeutic steady-state trough concentrations (Css/min of <10 mg/liter). A one-compartment model with first-order elimination was developed. Systematic covariate analysis identified that weight significantly influenced clearance (CL) and volume of distribution (V) with power functions of 0.677 for CL and 0.838 for V. Vancomycin CL also significantly increased with increases in creatinine clearance and seemed to be higher in children with malignant hematological disease than in the general pediatric population. The model was validated internally. Its predictive performance was further confirmed in an external validation by Bayesian estimation. A patient-tailored dosing regimen was developed based on the final pharmacokinetic model and showed that a higher proportion of patients reached the target Css/min than with the traditional mg/kg-basis dose (60% versus 49%) and that the risks associated with underdosing or overdosing were reduced. This is the first population pharmacokinetic study of vancomycin in children with malignant hematological disease. An optimized dosing regimen, taking into account patient weight, creatinine clearance, and susceptibility of the pathogens involved, could routinely be used to individualize vancomycin therapy in this vulnerable population.
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