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Updated: Dec 6, 2025

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Published on: August 30, 2018
Population Pharmacokinetics of Unbound and Total Teicoplanin in Critically Ill Pediatric Patients
L B S Aulin1, P De Paepe2, E Dhont3
1Systems Biomedicine and Pharmacology, Leiden Academic Centre for Drug Research, Leiden University, Leiden, The Netherlands.
Insights
The current teicoplanin dosing regimen is insufficient for critically ill children, with highly variable unbound concentrations unpredictable by albumin levels. Therapeutic drug monitoring of unbound teicoplanin is recommended for better efficacy.
Area of Science:
- Pharmacology
- Pediatric Critical Care
- Infectious Diseases
Background:
- Teicoplanin is crucial for Gram-positive infections in critically ill children.
- Intensive care unit environments alter drug pharmacokinetics.
- Understanding teicoplanin pharmacokinetics in children is vital.
Purpose of the Study:
- Develop a pediatric population-pharmacokinetic model for unbound and total teicoplanin.
- Assess the influence of albumin and renal function on teicoplanin pharmacokinetics.
- Evaluate the effectiveness of current weight-based teicoplanin dosing.
Main Methods:
- Observational pharmacokinetic study with blood sample analysis.
- Population-pharmacokinetic modeling using a sequential approach.
- Monte Carlo simulations for probability of target attainment analysis.
Main Results:
- A two-compartment model with allometric scaling and non-linear protein binding fit the data.
- Albumin levels and renal function did not significantly improve the pharmacokinetic model.
- The standard teicoplanin dosing regimen failed to meet most therapeutic targets.
Conclusions:
- Pediatric teicoplanin pharmacokinetics, including unbound concentrations, were characterized.
- Unbound teicoplanin fraction variability was not predictable by albumin levels.
- Current teicoplanin dosing regimens demonstrate poor target attainment in critically ill children.
Background And Objectives:
Teicoplanin is a highly protein-bound antibiotic, increasingly used to treat serious Gram-positive infections in critically ill children. Maturational and pathophysiological intensive care unit-related changes often lead to altered pharmacokinetics. In this study, the objectives were to develop a pediatric population-pharmacokinetic model of unbound and total teicoplanin concentrations, to investigate the impact of plasma albumin levels and renal function on teicoplanin pharmacokinetics, and to evaluate the efficacy of the current weight-based dosing regimen.
Methods:
An observational pharmacokinetic study was performed and blood samples were collected for quantification of unbound and total concentrations of teicoplanin after the first dose and in assumed steady-state conditions. A population-pharmacokinetic analysis was conducted using a standard sequential approach and Monte Carlo simulations were performed for a probability of target attainment analysis using previously published pharmacokinetic-pharmacodynamic targets.
Results:
A two-compartment model with allometric scaling of pharmacokinetic parameters and non-linear plasma protein binding best described the data. Neither the inclusion of albumin nor the renal function significantly improved the model and no other covariates were supported for inclusion in the final model. The probability of target attainment analysis showed that the standard dosing regimen does not satisfactory attain the majority of the proposed targets.
Conclusions:
We successfully characterized the pharmacokinetics of unbound and total teicoplanin in critically ill pediatric patients. The highly variable unbound fraction of teicoplanin could not be predicted using albumin levels, which may support the use of therapeutic drug monitoring of unbound concentrations. Poor target attainment was shown for the most commonly used dosing regimen, regardless of the pharmacokinetic-pharmacodynamic target evaluated.
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