Metabolism-dependent hepatotoxicity of amodiaquine in glutathione-depleted mice

被引:0
|
作者
Shinji Shimizu
Ryo Atsumi
Kenichi Itokawa
Masaru Iwasaki
Takanori Aoki
Chiho Ono
Takashi Izumi
Kenichi Sudo
Osamu Okazaki
机构
[1] Daiichi Sankyo Co.,Drug Metabolism and Pharmacokinetics Research Laboratories, Research and Development Division
[2] Ltd,undefined
来源
Archives of Toxicology | 2009年 / 83卷
关键词
Amodiaquine; Glutathione; -Buthionine-; ,; -sulfoxinine; R-sulfoxinine; Covalent binding; Idiosyncratic; Hepatotoxicity;
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摘要
We investigated the hepatotoxicity induced by AQ using a glutathione (GSH)-depleted mice model. Although sole administration of either AQ or l-buthionine-S,R-sulfoxinine (BSO), a well-known GSH synthesis inhibitor, produced no significant hepatotoxicity, combined administration of AQ with BSO induced hepatotoxicity characterized by centrilobular necrosis of the hepatocytes and an elevation of plasma alanine aminotransferase activity. Pretreatment of aminobenzotriazole, a nonspecific inhibitor for P450s, completely suppressed the above hepatotoxicity caused by AQ co-treatment with BSO. Administration of radiolabeled AQ in combination with BSO exhibited significantly higher covalent binding to mice liver proteins than that observed after sole dosing of radiolabeled AQ. The results obtained in this GSH-depleted animal model suggest that the reactive metabolite of AQ formed by hepatic P450 binds to liver proteins, and then finally leads to hepatotoxicity. These observations may help to understand the risk factors and the mechanism for idiosyncratic hepatotoxicity of AQ in humans.
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