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Arch Toxicol ; 84(8): 597-607, 2010 Aug.
Article in English | MEDLINE | ID: mdl-20221587

ABSTRACT

Sulfonamide antimicrobials such as sulfamethoxazole (SMX) have been associated with drug hypersensitivity reactions, particularly in patients with AIDS. A reactive oxidative metabolite, sulfamethoxazole-nitroso (SMX-NO), forms drug-tissue adducts that elicit a T-cell response. Antioxidants such as ascorbic acid (AA) and glutathione (GSH) reduce SMX-NO to the less reactive hydroxylamine metabolite (SMX-HA), which is further reduced to the non-immunogenic parent compound by cytochrome b (5) (b5) and its reductase (b5R). We hypothesized that deficiencies in AA and GSH would enhance drug-tissue adduct formation and immunogenicity toward SMX-NO and that these antioxidant deficiencies might also impair the activity of the b5/b5R pathway. We tested these hypotheses in guinea pigs fed either a normal or AA-restricted diet, followed by buthionine sulfoximine treatment (250 mg/kg SC daily, or vehicle); and SMX-NO (1 mg/kg IP 4 days per week, or vehicle), for 2 weeks. Guinea pigs did not show any biochemical or histopathologic evidence of SMX-NO-related toxicity. Combined AA and GSH deficiency in this model did not significantly increase tissue-drug adduct formation, or splenocyte proliferation in response to SMX-NO. However, combined antioxidant deficiency was associated with decreased mRNA and protein expression of cytochrome b (5), as well as significant decreases in SMX-HA reduction in SMX-NO-treated pigs. These results suggest that SMX-HA detoxification may be down-regulated in combined AA and GSH deficiency. This mechanism could contribute to the higher risk of SMX hypersensitivity in patients with AIDS with antioxidant depletion.


Subject(s)
Anti-Infective Agents/toxicity , Ascorbic Acid Deficiency/metabolism , Ascorbic Acid/metabolism , Cytochromes b5/metabolism , Glutathione/deficiency , Sulfamethoxazole/analogs & derivatives , Animals , Anti-Infective Agents/chemistry , Anti-Infective Agents/metabolism , Antioxidants/metabolism , Cell Proliferation/drug effects , Cytochrome-B(5) Reductase/genetics , Cytochrome-B(5) Reductase/metabolism , Cytochromes b5/genetics , Drug Hypersensitivity/metabolism , Glutathione/metabolism , Guinea Pigs , Inactivation, Metabolic , Liver/metabolism , Male , Sulfamethoxazole/chemistry , Sulfamethoxazole/metabolism , Sulfamethoxazole/toxicity , T-Lymphocytes/drug effects
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