Disposition of (—)-fenfluramine and its active metabolite, (—)-norfenfluramine in rat: A single dose-proportionality study
- 1 January 1988
- journal article
- research article
- Published by Taylor & Francis in Xenobiotica
- Vol. 18 (5) , 573-584
- https://doi.org/10.3109/00498258809041694
Abstract
1. The disposition of (—)-fenfluramine, (—)-F, was studied in rats after i.v. and oral administration (1˙25 to 12˙5 mg/kg). Whole blood-to-plasma ratio and the protein binding (determined by equilibrium dialysis) of the compound and its main active metabolite, (—)-norfenfluramine (—)-NF, were investigated. 2. The bound fraction of both compounds (about 40%) was constant in the concentration range of 1-10 nmol/ml. The whole blood to plasma concentration ratios of (—)-F and (—)-NF were larger than unity and were constant over this dose range. 3. The drug followed apparent first-order kinetics, at doses up to 6˙25 mg/kg. The mean half-lives of the parent drug and its metabolite were about 1 and 12 h respectively. The volume of distribution of (—)-F was large and total body clearance approached liver blood flow. 4. Oral doses were rapidly absorbed from the rat gastrointestinal tract. Bioavailability of the drug was about 20%. Urinary excretion of unchanged drug (3-4% of dose) and its metabolite (about 20%) were similar after i.v. and oral administration. 5. After larger doses (12˙5 mg/kg) the kinetics of (—)-F were nonlinear. The AUC increased, but not in proportion to the dose, and kinetic parameters were modified. 6. Brain concentrations reflected the dose-related changes observed in (—)-F and (—)-NF blood concentrations, and patterns of brain distribution and subcellular localization of the drug and its metabolite were modified at the highest dose tested.This publication has 21 references indexed in Scilit:
- Disposition of d-fenfluramine in lean and obese ratsAppetite, 1988
- D- and L-isomers of fenfluramine differ markedly in their interaction with brain serotonin and catecholamines in the ratEuropean Journal of Pharmacology, 1986
- The effect of hepatic uptake on the disappearance of warfarin from the plasma of rats: A kinetic analysisJournal of Pharmacokinetics and Biopharmaceutics, 1983
- Interspecies variation in liver weight, hepatic blood flow, and antipyrine intrinsic clearance: Extrapolation of data to benzodiazepines and phenytoinJournal of Pharmacokinetics and Biopharmaceutics, 1980
- Noncompartmental Determination of the Steady‐State Volume of DistributionJournal of Pharmaceutical Sciences, 1979
- Biochemical pharmacology of the anorectic drug fenfluramine: a reviewCurrent Medical Research and Opinion, 1979
- Altered Hepatic Blood Flow and Drug Disposition1Clinical Pharmacokinetics, 1976
- FenfluramineDrugs, 1975
- Interactions of Drugs with Proteins II: Experimental Methods, Treatment of Experimental Data, and Thermodynamics of Binding Reactions of Thymoleptic Drugs and Model DyesJournal of Pharmaceutical Sciences, 1970
- REGIONAL STUDIES OF CATECHOLAMINES IN THE RAT BRAIN‐IJournal of Neurochemistry, 1966