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Hepatic effects of ketoconazole in the male Swiss Webster mouse: temporal changes in drug metabolic parameters

L W Whitehouse1, A P Pakuts, C J Paul

  • 1Drug Identification Division, Health and Welfare Canada, Tunney's Pasture, Ottawa, Ont.

Insights

Ketoconazole exhibits a biphasic effect on mouse liver metabolism, acting as an inhibitor then inducer of enzymes. These findings clarify ketoconazole

Area of Science:

  • Pharmacology
  • Hepatology
  • Drug Metabolism

Background:

  • Conflicting observations exist regarding ketoconazole's impact on hepatic metabolism.
  • Understanding ketoconazole's role as an enzyme inducer or inhibitor is crucial for drug interaction studies.
  • The temporal dynamics of ketoconazole-induced metabolic changes require elucidation.

Purpose of the Study:

  • To determine if ketoconazole acts as an enzyme inducer or inhibitor in mice.
  • To establish the time course of ketoconazole-induced alterations in hepatic enzyme activity.
  • To investigate the kinetic parameters (Km and Vmax) affected by ketoconazole.

Main Methods:

  • Administration of ketoconazole (150 mg/kg p.o. X 4 days) to male Swiss Webster mice.
  • Monitoring of liver weight, microsomal protein, cytochrome P-450 levels, and various enzyme activities over 6 days.
  • Enzyme kinetics studies for benzphetamine N-demethylase and ethylmorphine N-demethylase.

Main Results:

  • Ketoconazole demonstrated a temporal biphasic effect on liver parameters.
  • Early (2h) treatment showed decreased parameters, while later (24h, 72h) time points revealed elevated liver weight and microsomal protein.
  • Enzyme activities were initially inhibited (24h) and later showed mixed induction/inhibition patterns (72h), with altered Vmax but not Km.

Conclusions:

  • Ketoconazole exerts a time-dependent biphasic effect on mouse hepatic metabolism.
  • The drug can act as both an enzyme inhibitor and inducer, with effects varying by enzyme and time post-administration.
  • Altered Vmax suggests ketoconazole affects the catalytic efficiency of certain drug-metabolizing enzymes.

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