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Troglitazone Inhibits Bile Acid Amidation: A Possible Risk Factor for Liver Injury

曲格列酮 吡格列酮 化学 胆汁酸 肝损伤 药理学 胆盐出口泵 内分泌学 生物化学 过氧化物酶体增殖物激活受体 医学 受体 运输机 2型糖尿病 基因 糖尿病
作者
Eiichiro Ogimura,Tetsuya Nakagawa,Jiro Deguchi,Shuichi Sekine,Kousei Ito,Kiyoko Bando
出处
期刊:Toxicological Sciences [Oxford University Press]
卷期号:158 (2): 347-355 被引量:22
标识
DOI:10.1093/toxsci/kfx091
摘要

Troglitazone and pioglitazone were developed as thiazolidinedione-type antidiabetes drugs, but only troglitazone was withdrawn from the markets due to severe liver injury. As both troglitazone and its sulfate metabolite are strong inhibitors of the bile salt export pump (BSEP), troglitazone-induced bile acid (BA) retention is thought to be one of the underlying mechanisms of liver injury. However, pioglitazone is also a strong BSEP inhibitor, indicating other mechanisms may also be involved in troglitazone-induced BA retention. Although retention of hydrophobic BAs (eg, chenodeoxycholic acid [CDCA]: a nonamidated BA) is known to cause hepatocyte injury, little is known about the hepatic conversion of nonamidated, hydrophobic BA species into less toxic hydrophilic BAs (eg, glycochenodeoxycholic acid: amidated BA) as a mechanism of drug-induced liver injury. In this study, we, therefore, investigated the effects of troglitazone and pioglitazone on BA amidation and the role of amidated BAs in troglitazone-associated BA-mediated hepatotoxicity. We also evaluated the intracellular BA composition of human hepatocytes treated with nonamidated BA species (CDCA or deoxycholic acid [DCA]) in the presence of troglitazone or pioglitazone. Amidation of CDCA and DCA was significantly inhibited by troglitazone (IC50: 5 and 3 µmol/l, respectively), but not pioglitazone. Moreover, treatment with troglitazone led to the retention of CDCA and DCA and decrease of glycine-amidation in hepatocytes. From these results, we suggest that troglitazone-induced liver injury might be caused by the accumulation of nonamidated BAs in hepatocytes due to inhibition of BA amidation.
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