Literature DB >> 8792418

Population pharmacokinetics of terfenadine.

R L Lalonde1, D Lessard, J Gaudreault.   

Abstract

PURPOSE: After oral administration of terfenadine, plasma concentrations of the parent drug are usually below the limits of quantitation of conventional analytical methods because of extensive first-pass metabolism. Data are usually reported on the carboxylic acid metabolite (M1) but there are no published reports of pharmacokinetic parameters for terfenadine itself. The present study was undertaken to evaluate the population pharmacokinetics of terfenadine.
METHODS: Data from 132 healthy male subjects who participated in several different studies were included in this analysis. After an overnight fast, each subject received a single 120 mg oral dose of terfenadine; blood samples were collected for 72 hours. Terfenadine plasma concentrations were measured using HPLC with mass spectrometry detection and M1 plasma concentrations were measured using HPLC with fluorescence detection. A 2-compartment model was fitted to the terfenadine data using NONMEM; terfenadine and M1 data were also analyzed by noncompartmental methods.
RESULTS: Population mean Ka was 2.80 hr-1, Tlag was 0.33 hr, Cl/F was 4.42 x 10(3) 1/hr, Vc/F was 89.8 x 10(3) 1. Q/F was 1.85 x 10(3) 1/hr and Vp/F was 29.1 x 10(3) 1. Intersubject CV ranged from 66 to 244% and the residual intrasubject CV was 21%. Based on noncompartmental methods, mean terfenadine Cmax was 1.54 ng/ml, Tmax was 1.3 hr, t1/2 lambda Z was 15.1 hr, Cl/F was 5.48 x 10(3) 1/hr and V lambda Z/F was 119.2 x 10(3) 1. M1 concentrations exceeded terfenadine concentrations by more than 100 fold and showed less intersubject variability.
CONCLUSIONS: Terfenadine disposition was characterized by a 2-compartment model with large intersubject variability, consistent with its significant first-pass effect.

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Year:  1996        PMID: 8792418     DOI: 10.1023/a:1016036624935

Source DB:  PubMed          Journal:  Pharm Res        ISSN: 0724-8741            Impact factor:   4.200


  18 in total

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2.  Bioavailability of terfenadine in man.

Authors:  R A Okerholm; D L Weiner; R H Hook; B J Walker; G A Leeson; S A Biedenbach; M J Cawein; T D Dusebout; G J Wright; M Myers; V Schindler; C E Cook
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3.  Drug metabolite concentration-time profiles: influence of route of drug administration.

Authors:  J B Houston; G Taylor
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6.  A preliminary pharmacokinetic study of the enantiomers of the terfenadine acid metabolite in humans.

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Review 8.  Terfenadine. An updated review of its pharmacological properties and therapeutic efficacy.

Authors:  D McTavish; K L Goa; M Ferrill
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9.  Radioimmunoassay for terfenadine in human plasma.

Authors:  C E Cook; D L Williams; M Myers; C R Tallent; G A Leeson; R A Okerholm; G J Wright
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10.  The effect of fluconazole on the steady-state pharmacokinetics and electrocardiographic pharmacodynamics of terfenadine in humans.

Authors:  P K Honig; D C Worham; K Zamani; J C Mullin; D P Conner; L R Cantilena
Journal:  Clin Pharmacol Ther       Date:  1993-06       Impact factor: 6.875

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