Literature DB >> 2266497

Physiological modeling of drug and metabolite: disposition of oxazepam and oxazepam glucuronides in the recirculating perfused mouse liver preparation.

M V St-Pierre1, D van den Berg, K S Pang.   

Abstract

The disposition of tracer doses of 3H-oxazepam was studied in the recirculating perfused mouse liver preparation. 3H-Oxazepam was biotransformed primarily to the diastereomeric 3H-oxazepam glucuronides, which either effluxed into the circulation or underwent biliary excretion. Three additional, unknown metabolites constituted a small fraction (5-10%) of the total radioactivity recovered in bile (7% of dose); no other metabolite was detected in perfusate. A physiologically based model, comprising the reservoir, liver blood and tissue, and bile, was fitted to reservoir concentrations of 3H-oxazepam and 3H-oxazepam glucuronides, and the cumulative amount excreted into bile. The model allowed for consideration of elimination pathways other than glucuronidation and the presence of a transport barrier for the oxazepam glucuronides across the hepatocyte membrane. The fitted results suggest a slight barrier existing for the transport of metabolites across the sinusoidal membrane, inasmuch as the transmembrane clearance was comparable to liver blood flow rate. Upon further comparison of estimates of formation, biliary, and transmembrane clearances for the oxazepam glucuronides, the rate-limiting step in the overall (biliary) clearance appears to be a poor capacity for biliary excretion. The influence of the cumulative volume loss that a recirculating perfused organ system incurs upon repeated sampling was discussed, and a compartmental method of correcting the observed concentrations of drug and generated metabolite was presented.

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Year:  1990        PMID: 2266497     DOI: 10.1007/bf01061703

Source DB:  PubMed          Journal:  J Pharmacokinet Biopharm        ISSN: 0090-466X


  53 in total

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Authors:  I A de Lannoy; R Nespeca; K S Pang
Journal:  J Pharmacol Exp Ther       Date:  1989-12       Impact factor: 4.030

2.  Pharmacokinetic procedures for the estimation of organ clearances for the formation of short-lived metabolites. Acetaminophen-induced glutathione depletion in hamster liver.

Authors:  R Chen; J R Gillette
Journal:  Drug Metab Dispos       Date:  1988 May-Jun       Impact factor: 3.922

3.  Effects of perfusate flow rate on measured blood volume, disse space, intracellular water space, and drug extraction in the perfused rat liver preparation: characterization by the multiple indicator dilution technique.

Authors:  K S Pang; W F Lee; W F Cherry; V Yuen; J Accaputo; S Fayz; A J Schwab; C A Goresky
Journal:  J Pharmacokinet Biopharm       Date:  1988-12

4.  Effect of a diffusional barrier to a metabolite across hepatocytes on its kinetics in "enzyme-distributed" models: a computer-aided simulation study.

Authors:  S Miyauchi; Y Sugiyama; H Sato; Y Sawada; T Iga; M Hanano
Journal:  J Pharmacokinet Biopharm       Date:  1987-08

5.  The metabolic disposition of oxazepam in rats.

Authors:  S F Sisenwine; C O Tio
Journal:  Drug Metab Dispos       Date:  1986 Jan-Feb       Impact factor: 3.922

6.  Sequential first-pass elimination of a metabolite derived from a precursor.

Authors:  K S Pang; J R Gillette
Journal:  J Pharmacokinet Biopharm       Date:  1979-06

7.  Physiological model for the pharmacokinetics of cis-dichlorodiammineplatinum (II) (DDP) in the tumored rat.

Authors:  F F Farris; F G King; R L Dedrick; C L Litterst
Journal:  J Pharmacokinet Biopharm       Date:  1985-02

8.  Species-dependent glucuronidation of drugs by immobilized rabbit, rhesus monkey, and human UDP-glucuronyltransferases.

Authors:  D M Dulik; C Fenselau
Journal:  Drug Metab Dispos       Date:  1987 Jul-Aug       Impact factor: 3.922

9.  Protein binding of oxazepam and its glucuronide conjugates to human albumin.

Authors:  F D Boudinot; C A Homon; W J Jusko; H W Ruelius
Journal:  Biochem Pharmacol       Date:  1985-06-15       Impact factor: 5.858

10.  Comparative single-dose kinetics of oxazolam, prazepam, and clorazepate: three precursors of desmethyldiazepam.

Authors:  H R Ochs; D J Greenblatt; B Verburg-Ochs; A Locniskar
Journal:  J Clin Pharmacol       Date:  1984-10       Impact factor: 3.126

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  1 in total

1.  Concentration-dependent metabolism of diazepam in mouse liver.

Authors:  M V St-Pierre; K S Pang
Journal:  J Pharmacokinet Biopharm       Date:  1995-06
  1 in total

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