Literature DB >> 7463352

Retrograde perfusion to probe the heterogeneous distribution of hepatic drug metabolizing enzymes in rats.

K S Pang, J A Terrell.   

Abstract

The elimination of [14C]acetaminophen which was formed from [14C]phenacetin was slower than that for the preformed metabolite, [3H]acetaminophen. The observation had been attributed to the uneven distribution of enzyme systems for O-deethylation in the formation of acetaminophen and sulfate-conjugation of acetaminophen in the liver parenchyma. In this study, retrograde perfusion which reversed not only the direction of hepatic flow into the liver but also the location of enzyme systems with respect to the flow path, was used to examine the elimination kinetics of [14C]acetaminophen and [3H]acetaminophen. In the same rat liver preparation, both [14C[phenacetin and [3H]acetaminophen in tracer concentrations were delivered simultaneously into the perfused rat liver in situ preparation with normal directional flow (into the portal vein and out of the hepatic vein). The direction of flow was then reversed to retrograde perfusion (into the hepatic vein and out of the portal vein) which was later reverted back to normal perfusion. The elimination of [14C]acetaminophen was again slower than the elimination of [3H]acetaminophen during normal perfusion, but the elimination kinetics were virtually identical for both metabolite species during retrograde perfusion. This finding confirmed our previous hypothesis that sulfate-conjugation occurred predominantly in the periportal region while O-deethylation occurred preferentially in the centrilobular region of the liver and showed that retrograde perfusion was a useful probe in the investigation of the uneven distribution of hepatic drug metabolizing enzyme systems.

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Year:  1981        PMID: 7463352

Source DB:  PubMed          Journal:  J Pharmacol Exp Ther        ISSN: 0022-3565            Impact factor:   4.030


  20 in total

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Authors:  N R Katz
Journal:  Histochem J       Date:  1989 Sep-Oct

2.  Availability predictions by hepatic elimination models for Michaelis-Menten kinetics.

Authors:  M S Roberts; J D Donaldson; D Jackett
Journal:  J Pharmacokinet Biopharm       Date:  1989-12

3.  A comparative investigation of hepatic clearance models: predictions of metabolite formation and elimination.

Authors:  M V St-Pierre; P I Lee; K S Pang
Journal:  J Pharmacokinet Biopharm       Date:  1992-04

4.  Residence time distributions of solutes in the perfused rat liver using a dispersion model of hepatic elimination: 2. Effect of pharmacological agents, retrograde perfusions, and enzyme inhibition on evans blue, sucrose, water, and taurocholate.

Authors:  M S Roberts; S Fraser; A Wagner; L McLeod
Journal:  J Pharmacokinet Biopharm       Date:  1990-06

5.  Application of the dispersion model for description of the outflow dilution profiles of noneliminated reference indicators in rat liver perfusion studies.

Authors:  A J Schwab; W Geng; K S Pang
Journal:  J Pharmacokinet Biopharm       Date:  1998-04

6.  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

7.  A dispersion model of hepatic elimination: 3. Application to metabolite formation and elimination kinetics.

Authors:  M S Roberts; M Rowland
Journal:  J Pharmacokinet Biopharm       Date:  1986-06

8.  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

9.  Competition between two enzymes for substrate removal in liver: modulating effects due to substrate recruitment of hepatocyte activity.

Authors:  M E Morris; K S Pang
Journal:  J Pharmacokinet Biopharm       Date:  1987-10

10.  An enzyme-distributed system for lidocaine metabolism in the perfused rat liver preparation.

Authors:  K S Pang; J A Terrell; S D Nelson; K F Feuer; M J Clements; L Endrenyi
Journal:  J Pharmacokinet Biopharm       Date:  1986-04
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