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Estimation of Pediatric Dosage of Antimalarial Drugs, Using Pharmacokinetic and Physiological Approach
Ellen K G Mhango1,2, Bergthora S Snorradottir1, Baxter H K Kachingwe2
1Faculty of Pharmaceutical Sciences, School of Health Sciences, University of Iceland, 107 Reykjavik, Iceland.
Insights
Accurate dosing of artemether-lumefantrine is crucial for treating childhood malaria. This study estimated pediatric doses to match adult exposure, highlighting the need for clinical trials to confirm efficacy and prevent treatment failure.
Area of Science:
- Pharmacology
- Pediatric Medicine
- Global Health
Background:
- Malaria disproportionately affects children in sub-Saharan Africa, necessitating precise treatment and dosing.
- Current artemether-lumefantrine dosing guidelines may lead to suboptimal drug exposure in pediatric patients.
- Fixed-dose combination therapies are vital for effective malaria treatment in children.
Purpose of the Study:
- To estimate pediatric doses of artemether-lumefantrine that achieve exposure levels similar to those in adults.
- To address the critical need for reliable pharmacokinetic data in pediatric malaria treatment.
- To inform the development of safer and more effective malaria drug regimens for children.
Main Methods:
- Utilized pediatric physiological data and adult pharmacokinetic data to estimate drug doses.
- Employed various calculation approaches to determine potential pediatric dosage regimens.
- Acknowledged limitations due to the scarcity of pediatric pharmacokinetic data in existing literature.
Main Results:
- Estimated doses varied depending on the calculation method, indicating potential for both under- and overexposure in children.
- Identified specific dose estimates: 0.34 mg/kg for artemether and 6 mg/kg for lumefantrine.
- Results underscore the variability in drug exposure based on developmental physiology.
Conclusions:
- Current dosing may result in treatment failure, toxicity, or death due to inconsistent exposure.
- Accurate pediatric dosing requires consideration of developmental physiological changes affecting drug pharmacokinetics.
- Clinical studies are essential to validate the proposed artemether-lumefantrine doses for efficacy in children.
Abstract:
Most of the individuals who die of malaria in sub-Saharan Africa are children. It is, therefore, important for this age group to have access to the right treatment and correct dose. Artemether-lumefantrine is one of the fixed dose combination therapies that was approved by the World Health Organization to treat malaria. However, the current recommended dose has been reported to cause underexposure or overexposure in some children. The aim of this article was, therefore, to estimate the doses that can mimic adult exposure. The availability of more and reliable pharmacokinetic data is essential to accurately estimate appropriate dosage regimens. The doses in this study were estimated using the physiological information from children and some pharmacokinetic data from adults due to the lack of pediatric pharmacokinetic data in the literature. Depending on the approach that was used to calculate the dose, the results showed that some children were underexposed, and others were overexposed. This can lead to treatment failure, toxicity, and even death. Therefore, when designing a dosage regimen, it is important to know and include the distinctions in physiology at various phases of development that influence the pharmacokinetics of various drugs in order to estimate the dose in young children. The physiology at each time point during the growth of a child may influence how the drug is absorbed, gets distributed, metabolized, and eliminated. From the results, there is a very clear need to conduct a clinical study to further verify if the suggested (i.e., 0.34 mg/kg for artemether and 6 mg/kg for lumefantrine) doses could be clinically efficacious.
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