Claiming desmopressin therapeutic equivalence in children requires pediatric data: a population PKPD analysis
Robin Michelet1, Lien Dossche2, Charlotte Van Herzeele3
1Laboratory of Medical Biochemistry and Clinical Analysis, Department of Bioanalysis, Faculty of Pharmaceutical Sciences, Ghent University, Ottergemsesteenweg 460, 9000, Ghent, Belgium. robin.michelet@ugent.be.
Insights
Pediatric desmopressin formulations require age-adapted drug development. This study shows formulation differences impact therapeutic equivalence, highlighting the need for pediatric clinical trials for drug safety and efficacy.
Area of Science:
- Pharmacology
- Pediatric Drug Development
- Pharmacokinetics and Pharmacodynamics
Background:
- Children require age-adapted drug development, as they are not simply small adults.
- Desmopressin, a vasopressin analogue, is prescribed for pediatric nocturnal enuresis.
- Formulation development for pediatric indications necessitates specific clinical trials.
Purpose of the Study:
- To compare the therapeutic equivalence of two desmopressin formulations (tablet and lyophilisate) in children.
- To analyze pharmacokinetic and pharmacodynamic data for desmopressin in pediatric patients.
- To investigate potential differences in pediatric versus adult drug properties.
Main Methods:
- Population pharmacokinetic and pharmacodynamic modeling was employed.
- Analysis of previously published desmopressin data from 18 children with nocturnal enuresis.
- Measurements included plasma desmopressin concentration, urine osmolality, and diuresis.
Main Results:
- The lyophilisate formulation showed a lower half maximal inhibitory concentration for urine production compared to the tablet.
- The 120-μg lyophilisate appeared to have a more pronounced effect on urine volume and osmolality than the 200-μg tablet at equivalent exposure.
- Formulation differences suggest potential variations in therapeutic effects.
Conclusions:
- A validated indirect response model for desmopressin was developed.
- Simultaneous analysis of pharmacokinetic and pharmacodynamic data is crucial for assessing pediatric drug efficacy and safety.
- The study underscores the necessity of pediatric clinical trials for new formulations, not just new drugs.
Purpose:
For a new formulation of a drug, only pharmacokinetic bioequivalence with the original formulation has to be demonstrated in healthy, young adults. However, "children are not small adults," and to guarantee a safe and effective treatment, age-adapted drug development is required. Desmopressin, a vasopressin analogue prescribed for nocturnal enuresis in children, was studied as an example formulation first developed in adults and then extrapolated to a pediatric indication.
Methods:
Population pharmacokinetic and pharmacodynamic modeling was used to analyze previously published desmopressin data of 18 children suffering from nocturnal enuresis. The main objective was the comparison of the therapeutic equivalence of two desmopressin formulations: tablet and lyophilisate. The measurements for pharmacokinetics and pharmacodynamics were respectively plasma desmopressin concentration and urine osmolality and diuresis.
Results:
The half maximal inhibitory concentration for inhibition of urine production was 0.7 pg/mL lower for the lyophilisate than for the tablet. The effect of formulation on the half maximal inhibitory concentration seems to suggest that the 120-μg lyophilisate has a more pronounced effect on the urine volume and osmolality than the 200-μg tablet, even when the same exposure is achieved.
Conclusions:
A new indirect response model for desmopressin was constructed and validated, using a previously built pharmacokinetic model and additional pharmacodynamic data. In order to draw solid conclusions regarding the efficacy and safety of desmopressin in children, pharmacokinetics and pharmacodynamics data should be analyzed together. This study adds proof to potential differences in pediatric and adult pharmacokinetic and pharmacodynamic properties of desmopressin and exemplifies the need for pediatric clinical trials, not only for every new drug but also for every new formulation.
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