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Bioavailability study of two carbamazepine containing sustained release formulations after multiple oral dose
M Wangemann1, A Retzow, G Evers
1Desitin Arzneimittel GmbH, Medizinische Forschung, Hamburg, Germany.
Abstract:
Carbamazepine (CAS 298-46-4), an iminostilbene derivative and a structural congener of the tricyclic antidepressant drugs, has been used in the treatment of epileptic seizures since 1963. The bioavailability/bioequivalence of a carbamazepine sustained release formulation (Timonil retard) was compared with a reference formulation in an open 2-period crossover study in 21 healthy male volunteers (including 1 drop-out) after multiple dose administration. During a run-in phase of 6 days the daily dose was gradually increased from 100 to 400 mg. On days 9 to 15, either the test or the reference formulation was administered twice daily, followed by a switch of preparation for a further 7 days of treatment (days 16 to 22). On the pharmacokinetic profiling days 15 and 22 blood samples were drawn over a 24-h period. In addition, blood samples were withdrawn before morning administrations for determination of carbamazepine and carbamazepine-10,11-epoxide trough values. Plasma concentrations of carbamazepine and its metabolite carbamazepine-10,11-epoxide were determined using a specific and sensitive HPLC method with UV detection. The results showed that autoinduction of carbamazepine metabolism under the chosen dosage regimen was complete within 14 days after start of treatment and that the criteria for bioequivalence were met. The 90% confidence intervals of all ratios were included by a range of 80-125% (AUC0-12: 103-120; AUC12-24: 105-119; Cmax0-12: 104-118; Cmax12-24: 104-118). During the study, 12 subjects experienced a total of 24 adverse events with mild to moderate intensity. Due to a significant increase of liver enzyme activity in serum during the course of the study, one subject was excluded from further study participation. There were no serious adverse events. It was concluded that the test formulation is bioequivalent to the reference formulation with respect to rate and extent of absorption.
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