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A General Method for Detecting Nitrosamide Formation in the In Vitro Metabolism of Nitrosamines by Cytochrome P450s
Published on: September 25, 2017
Metabolism of nilutamide in rat lung
Kjetil Ask1, Nathalie Décologne, Christian Ginies
1Laboratory of Pulmonary Pharmacology and Toxicology, UMR INRA/Université de Bourgogne 1234, Faculté de Médecine et de Pharmacie, Dijon, France. askkj@mcmaster.ca
Abstract:
Nilutamide is a non-steroidal anti-androgen drug proposed in the treatment of metastatic prostatic carcinoma. Its therapeutic effects are overshadowed by the occurrence of adverse reactions, mediated by mechanisms that remain elusive. To elucidate possible mechanisms for nilutamide toxicity, we investigated the metabolism of nilutamide in rat lung homogenates, in subcellular fractions and in freshly isolated cells. In whole lung homogenates, the nitro group of nilutamide was reduced to the amine and hydroxylamine moieties. These conversions occurred exclusively in the absence of dioxygen, were increased by the addition of FMN, FAD, or NADPH. Reductive metabolism of nilutamide to the amine and hydroxylamine was further evidenced in subcellular fractions obtained by differential ultracentrifugation. It was found to take place mainly in the cytosol of rat lung and to be stimulated, strongly, upon co-addition of NADPH and FMN. Addition of inhibitors of enzymes involved in the reductive metabolism of nitroaromatic compounds indicated that reduction of nilutamide involved, mainly, soluble flavoproteins. Incubations with freshly isolated lung cells revealed that macrophages were the main players in nitroreduction of nilutamide whereas the epithelial type II cells and the non-ciliated Clara cells were less efficient in catalyzing this reaction. Our results show that nilutamide is extensively reduced by lung tissues in the absence of oxygen, especially by enzymes found in alveolar macrophages. In accordance with recent findings, subcellular localization, oxygen sensitivity, cofactor requirements and inhibitor studies lead us to suggest the involvement of a soluble nitric oxide synthase in lung cytosolic nitroreduction.
Insights
Nilutamide metabolism in rat lungs involves reductive pathways, primarily in macrophages, suggesting a role for soluble nitric oxide synthase in its toxicity mechanisms.
Area of Science:
- Pharmacology
- Toxicology
- Biochemistry
Background:
- Nilutamide is a non-steroidal anti-androgen used for metastatic prostatic carcinoma.
- Adverse reactions to nilutamide occur, but their underlying mechanisms are not fully understood.
Purpose of the Study:
- To investigate the metabolic pathways of nilutamide in rat lung tissues.
- To identify the cellular and subcellular components involved in nilutamide metabolism.
- To elucidate potential mechanisms contributing to nilutamide-induced toxicity.
Main Methods:
- Incubation of nilutamide with rat lung homogenates, subcellular fractions, and isolated lung cells.
- Analysis of nilutamide metabolites, focusing on nitroreduction.
- Use of cofactors (NADPH, FMN, FAD) and enzyme inhibitors to characterize metabolic pathways.
Main Results:
- Nilutamide undergoes reductive metabolism to amine and hydroxylamine moieties in the absence of oxygen.
- This reduction occurs primarily in the cytosol and is enhanced by NADPH and FMN, implicating soluble flavoproteins.
- Alveolar macrophages are the main cells responsible for nilutamide nitroreduction in the lung.
Conclusions:
- Nilutamide metabolism in rat lungs is oxygen-sensitive and predominantly carried out by alveolar macrophages.
- The findings suggest the involvement of soluble nitric oxide synthase in the lung cytosolic nitroreduction of nilutamide.
- These metabolic insights may help explain nilutamide's adverse reactions and guide future therapeutic strategies.

