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Hepatic microsomal metabolism of sulfamethoxazole to the hydroxylamine
1Division of Clinical Pharmacology and Toxicology, Hospital for Sick Children, Toronto, Ontario, Canada.
Abstract:
Sulfonamides are oxidized to protein reactive cytotoxic metabolites by murine hepatic microsomes. Mononuclear leukocytes from patients with idiosyncratic reactions to sulfonamides were more susceptible to toxicity from these metabolites than were leukocytes from a control population, suggesting that these metabolites play a role in the pathogenesis of such reactions. Here we have shown that murine hepatic microsomes oxidize sulfamethoxazole at the N4-position to form the hydroxylamine. Formation of the hydroxylamine was dependent on the presence of microsomes, NADPH, and oxygen. The addition of SKF 525-A, cimetidine, or gassing with carbon monoxide inhibited formation. The enzymic activity was stable at 37 degrees C in the absence of NADPH. Ascorbic acid, N-acetylcysteine, and reduced glutathione significantly increased the yield of hydroxylamine, presumably by decreasing further oxidation and covalent binding. Microsomes prepared from mice treated with phenobarbital or beta-naphthoflavone catalyzed the formation of the hydroxylamine more readily than did microsomes from untreated mice. These results demonstrate that cytochrome P-450-mediated oxidation of sulfamethoxazole results in the formation of hydroxylamines, which can be further oxidized to more reactive intermediates. These metabolites are likely involved in the pathogenesis of idiosyncratic reactions.
Insights
Sulfonamides like sulfamethoxazole are metabolized into reactive compounds by liver enzymes. These metabolites may cause toxic reactions in susceptible individuals, highlighting their role in drug hypersensitivity.
Area of Science:
- Biochemistry
- Pharmacology
- Toxicology
Background:
- Sulfonamides can be metabolized into cytotoxic metabolites.
- These metabolites are implicated in idiosyncratic drug reactions.
Purpose of the Study:
- To investigate the metabolic pathway of sulfamethoxazole oxidation.
- To identify the specific metabolites responsible for sulfonamide-induced toxicity.
Main Methods:
- Murine hepatic microsomes were used to study sulfamethoxazole metabolism.
- Enzyme kinetics and inhibitor studies were performed to characterize the oxidation process.
- The role of specific metabolites in leukocyte toxicity was assessed.
Main Results:
- Sulfamethoxazole is oxidized at the N4-position to form a hydroxylamine metabolite.
- Hydroxylamine formation is dependent on cytochrome P-450, NADPH, and oxygen.
- Antioxidants increased hydroxylamine yield, suggesting reduced further metabolism.
- Leukocytes from patients with sulfonamide reactions showed increased susceptibility to metabolite toxicity.
Conclusions:
- Cytochrome P-450-mediated oxidation of sulfamethoxazole produces reactive hydroxylamines.
- These hydroxylamines are likely involved in the pathogenesis of idiosyncratic sulfonamide reactions.
- Understanding this pathway may aid in predicting and preventing adverse drug events.