Related Experiment Videos
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.
Abstract:
There have been conflicting observations regarding the effects of ketoconazole on hepatic metabolism. The objectives of these studies were to determine whether ketoconazole was an enzyme inducer or inhibitor in the mouse and then to establish the time frame of these ketoconazole-induced enzyme changes. Ketoconazole was administered (150 mg/kg p.o. X 4 days) to male Swiss Webster mice. Biochemical observations over a period of 6 days following treatment indicated that ketoconazole had a temporal biphasic effect on the liver. Although liver weight and microsomal protein were elevated, all other parameters monitored were lower at 2 h following ketoconazole treatment. At 24 h after the last dose of ketoconazole, hepatic biochemical parameters (liver wt., % liver wt./body wt., microsomal protein, and cytochrome P-450) were statistically elevated, while enzyme activities (benzphetamine N-demethylation, 6 beta- and 7 alpha-hydroxylation of testosterone, formation of androstenedione and UDP-glucuronyltransferase) were inhibited. At 72 h the ketoconazole-induced changes in the hepatic biochemical parameters were comparable to those observed at 24 h, and enzymatic parameters generally appeared to be induced by ketoconazole, with the exception of benzphetamine N-demethylase and UDP-glucuronyltransferase, which exhibited lower enzyme activities. Ethoxyresorufin O-deethylase, 7 alpha-hydroxylation of testosterone and glutathione S-transferase, on the other hand, were unaltered by ketoconazole treatment. The opposing effects of ketoconazole on benzphetamine N-demethylase and ethylmorphine N-demethylase at 72 h were further examined. Enzyme kinetics studies indicated that ketoconazole did not effect the Michaelis constants (Km) of the two substrates, but the maximum velocity (Vmax) of the reactions was altered.(ABSTRACT TRUNCATED AT 250 WORDS)
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.