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  • 1
    ISSN: 1432-1041
    Keywords: Cisapride ; pharmacokinetics ; bioavailability ; suppository ; tablet
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Medicine
    Notes: Summary The comparative bioavailability of cisapride as a 30 mg suppository and three 5 mg oral tablets was investigated in 12 non-smoking, healthy male volunteers. The two formulations were administered on two separate occasions following an overnight fast, according to a randomized cross-over design. The plasma concentration of cisapride was measured over 48 h after drug administration. The 30 mg suppository exhibited a mean time to the peak plasma concentration of 3.8 h, while the tablets showed a significantly earlier peak time of 1.5 h. The maximum plasma concentration of cisapride after the 30 mg suppository (50.3 ng · ml−1) was significantly lower than after the tablets (74.3 ng · ml−1). The AUCs following the two treatments did not differ significantly from each other. The comparative bioavailability of the 30 mg cisapride suppository in relation to the three 5 mg oral tablets was 85%, with a 95%-confidence interval of 67% to 102% (not adjusted for dose). Normalizing the mean AUC by dose, the relative bioavailability of the suppository was 43% of that of the tablet. The elimination half-life of cisapride was not significantly different following the administration of the two formulations (9.3 h for the suppository and 9.8 h for the tablet).
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-1041
    Keywords: ketanserin ; serotonin antagonist ; antihypertensive drug ; pharmacokinetics ; bioavailability ; dose-proportionality ; metabolite kinetics
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Medicine
    Notes: Summary The pharmacokinetics of ketanserin (R 41468), a novel serotonin S2-receptor blocking agent widely investigated for its effect on acute and chronic hypertension, has been studied in 10 healthy male subjects. They received single 10 mg doses i.v. and i.m., and 20, 40 and 60 mg solutions of ketanserin by mouth, in a five-way cross-over design. The model-independent kinetics of i.v. ketanserin were characterized by a terminal half-life of 14.3±4.4 h, a moderate plasma clearance (CL=565±57 ml/min) and a large tissue distribution (Vss=268±71 l, Vz=703±204 l; mean ± SD). Following i.m. administration, peak levels of nearly 200 ng/ml were attained within 10 minutes and the absolute bioavailability was 112±23%. After oral dosing, peak levels of ketanserin were reached within 1 h. The peak level and AUC increased in proportion to the dose. The absolute bioavailability was 46.8, 50.4 and 55.5% for 20, 40 and 60 mg doses and they conformed to the predicted bioavailability based on i.v. clearance data. The terminal half-life of 17 h and the urinary excretion of parent drug (about 0.7% of the dose) were similar after oral and parenteral dosing. The kinetics of ketanserin-ol, the major metabolite of ketanserin formed by ketone reduction, was also studied. Because of its negligible pharmacological activity, the contribution of ketanserin-ol to the overall therapeutic effect of ketanserin is small, in spite of its 1.6-times (parenteral) to 3.2-times (oral) higher plasma level than that of ketanserin. The particular role of the metabolite is discussed in the light of the clinical pharmacokinetics of ketanserin.
    Type of Medium: Electronic Resource
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