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Multiplex Therapeutic Drug Monitoring by Isotope-dilution HPLC-MS/MS of Antibiotics in Critical Illnesses
Published on: August 30, 2018
Model-Informed Precision Dosing of Antibiotics in Pediatric Patients: A Narrative Review
Alan Abdulla1, Elma E Edwina1, Robert B Flint1,2
1Department of Hospital Pharmacy, Erasmus University Medical Center, Rotterdam, Netherlands.
Insights
Model-informed precision dosing (MIPD) optimizes antibiotic therapy in children by integrating patient data. Available evidence suggests MIPD improves target attainment for vancomycin compared to standard dosing in pediatric populations.
Area of Science:
- Pharmacometrics
- Pediatric Pharmacology
- Infectious Diseases
Background:
- Antibiotic pharmacokinetics in pediatric patients is highly variable due to physiological maturation and other covariates.
- This variability can lead to suboptimal drug exposure (under- or overexposure).
- Population pharmacokinetic models and therapeutic drug monitoring are used to manage this variability.
Purpose of the Study:
- To review studies evaluating the optimization of antibiotic pharmacotherapy using Model-Informed Precision Dosing (MIPD) in pediatric populations.
- To assess the effectiveness of MIPD compared to conventional dosing strategies.
Main Methods:
- A narrative review of studies assessing antibiotic pharmacotherapy optimization using MIPD in pediatric patients.
- Identification of eligible studies from a comprehensive search of records.
- Selection of key articles to highlight MIPD attributes.
Main Results:
- Four eligible studies involving amikacin and vancomycin were identified.
- Available data for vancomycin suggest MIPD is superior to conventional dosing for achieving therapeutic targets.
- Limited research currently exists, highlighting a need for further investigation.
Conclusions:
- Model-Informed Precision Dosing (MIPD) shows promise for optimizing antibiotic therapy in pediatric patients.
- Further research is needed to confirm the utility of MIPD in commonly used antibiotic classes like aminoglycosides and beta-lactams.
Abstract:
Optimal pharmacotherapy in pediatric patients with suspected infections requires understanding and integration of relevant data on the antibiotic, bacterial pathogen, and patient characteristics. Because of age-related physiological maturation and non-maturational covariates (e.g., disease state, inflammation, organ failure, co-morbidity, co-medication and extracorporeal systems), antibiotic pharmacokinetics is highly variable in pediatric patients and difficult to predict without using population pharmacokinetics models. The intra- and inter-individual variability can result in under- or overexposure in a significant proportion of patients. Therapeutic drug monitoring typically covers assessment of pharmacokinetics and pharmacodynamics, and concurrent dose adaptation after initial standard dosing and drug concentration analysis. Model-informed precision dosing (MIPD) captures drug, disease, and patient characteristics in modeling approaches and can be used to perform Bayesian forecasting and dose optimization. Incorporating MIPD in the electronic patient record system brings pharmacometrics to the bedside of the patient, with the aim of a consisted and optimal drug exposure. In this narrative review, we evaluated studies assessing optimization of antibiotic pharmacotherapy using MIPD in pediatric populations. Four eligible studies involving amikacin and vancomycin were identified from 418 records. Key articles, independent of year of publication, were also selected to highlight important attributes of MIPD. Although very little research has been conducted until this moment, the available data on vancomycin indicate that MIPD is superior compared to conventional dosing strategies with respect to target attainment. The utility of MIPD in pediatrics needs to be further confirmed in frequently used antibiotic classes, particularly aminoglycosides and beta-lactams.
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