Related Experiment Video
Updated: Jun 7, 2026

Evaluation of Drug Sorption to PVC- and Non-PVC-based Tubes in Administration Sets Using a Pump
Published on: March 11, 2017
Assessment of liquid captopril formulations used in children
1Department of Pharmacy, University Hospitals of Leicester, Leicester, UK. hussain.mulla@uhl-tr.nhs.uk
Insights
Unlicensed liquid captopril formulations are not bioequivalent to the licensed tablet form. This means they may not perform similarly in patients, requiring careful monitoring during treatment adjustments.
Area of Science:
- Pharmacokinetics
- Drug formulation
- Clinical pharmacology
Background:
- Unlicensed liquid captopril formulations are frequently used for pediatric heart disease.
- Assessing the bioequivalence of these formulations is crucial for ensuring therapeutic efficacy and patient safety.
Purpose of the Study:
- To evaluate the bioequivalence of two unlicensed liquid captopril formulations compared to a licensed tablet form.
- To determine if liquid captopril preparations exhibit comparable pharmacokinetic profiles to the standard tablet formulation.
Main Methods:
- A randomized, open-label, single-dose, three-treatment, three-period crossover trial was conducted.
- Healthy adult volunteers (n=18) received 25 mg captopril via different formulations.
- Plasma samples were analyzed for pharmacokinetic parameters, including Cmax and AUC, with bioequivalence defined by 90% confidence intervals between 0.8 and 1.25.
Main Results:
- Both liquid captopril formulations failed to meet bioequivalence criteria for Cmax and AUC.
- The 90% confidence intervals for the ratios of liquid to tablet formulations fell outside the accepted 0.8-1.25 range.
- Significant within-subject variability was observed for Cmax (97.5%) and AUC (78.5%).
Conclusions:
- Unlicensed liquid captopril formulations are not bioequivalent to the licensed tablet, nor to each other.
- Formulation substitution requires caution and may necessitate increased patient monitoring.
- High within-subject variability has clinical implications for dose titration and achieving optimal therapeutic effects.
Objective:
Unlicensed liquid captopril formulations are commonly used to treat children with heart disease. This study assessed the bioequivalence of two liquid preparations against a licensed tablet form.
Design:
An open label, single dose, three-treatment, three-period, crossover trial.
Setting:
Outpatient.
Patients:
Healthy adult volunteers (n=18).
Interventions:
Each subject was randomly assigned to one of six dosing sequences, and dosed with 25 mg captopril on each of three dosing visits separated by a washout of at least 14 days. Blood samples for pharmacokinetic analysis were taken at regular intervals (0 min to 10 h) post-dose.
Main Outcome Measures:
Bioequivalence of the formulations would be concluded if the 90% CI for the estimated ratio of the means of C(max) (maximum plasma concentrations) and area under curve(AUC) (extent of absorption) lay entirely within the range 0.8 to 1.25
Results:
Both liquid formulations failed the bioequivalence assessment with respect to C(max) and AUC. The 90% CI of the mean ratios of liquid/licensed tablet for both C(max) and AUC, fell outside the 0.8 to 1.25 limits. There was also considerable within-subject variability in C(max) (97.5%) and AUC (78.5%).
Conclusions:
Unlicensed captopril formulations are not bioequivalent to the licensed tablet form, or to each other, and so cannot be assumed to behave similarly in therapeutic use. Thus formulation substitution must be done with care and may require a period of increased monitoring of the patient. There is also significant within-subject variability in performance which has clinical implications with respect to titrating to an optimum therapeutic dose.
Related Concept Videos
Drug Dosing: Infants and Children
Pharmacokinetics in Pediatric Patients: Drug Excretion
Pharmacokinetics in Pediatric Patients: Drug Distribution
Pharmacokinetics in Pediatric Patients: Overview and Drug Absorption
Pharmacokinetics in Pediatric Patients: Drug Metabolism
Drug Dosing in Renal Diseases: Measurement of Glomerular Filtration Rate