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Potency of Individual Bile Acids to Regulate Bile Acid Synthesis and Transport Genes in Primary Human Hepatocyte Cultures

熊去氧胆酸 CYP8B1 鹅去氧胆酸 胆固醇7α羟化酶 胆汁酸 胆盐出口泵 法尼甾体X受体 胆酸 胆酸 化学 生物化学 肝细胞 FGF19型 多药耐药蛋白2 CYP27A1 有机阴离子转运蛋白1 肝肠循环 G蛋白偶联胆汁酸受体 生物 运输机 核受体 ATP结合盒运输机 受体 基因 转录因子 成纤维细胞生长因子 体外
作者
Jie Liu,Hong Lü,Yuan‐Fu Lu,Xiaoguang Lei,Julia Yue Cui,Ewa Ellis,Stephen C. Strom,Curtis D. Klaassen
出处
期刊:Toxicological Sciences [Oxford University Press]
卷期号:141 (2): 538-546 被引量:68
标识
DOI:10.1093/toxsci/kfu151
摘要

Bile acids (BAs) are known to regulate their own homeostasis, but the potency of individual bile acids is not known. This study examined the effects of cholic acid (CA), chenodeoxycholic acid (CDCA), deoxycholic acid (DCA), lithocholic acid (LCA) and ursodeoxycholic acid (UDCA) on expression of BA synthesis and transport genes in human primary hepatocyte cultures. Hepatocytes were treated with the individual BAs at 10, 30, and 100μM for 48 h, and RNA was extracted for real-time PCR analysis. For the classic pathway of BA synthesis, BAs except for UDCA markedly suppressed CYP7A1 (70-95%), the rate-limiting enzyme of bile acid synthesis, but only moderately (35%) down-regulated CYP8B1 at a high concentration of 100μM. BAs had minimal effects on mRNA of two enzymes of the alternative pathway of BA synthesis, namely CYP27A1 and CYP7B1. BAs increased the two major target genes of the farnesoid X receptor (FXR), namely the small heterodimer partner (SHP) by fourfold, and markedly induced fibroblast growth factor 19 (FGF19) over 100-fold. The BA uptake transporter Na(+)-taurocholate co-transporting polypeptide was unaffected, whereas the efflux transporter bile salt export pump was increased 15-fold and OSTα/β were increased 10-100-fold by BAs. The expression of the organic anion transporting polypeptide 1B3 (OATP1B3; sixfold), ATP-binding cassette (ABC) transporter G5 (ABCG5; sixfold), multidrug associated protein-2 (MRP2; twofold), and MRP3 (threefold) were also increased, albeit to lesser degrees. In general, CDCA was the most potent and effective BA in regulating these genes important for BA homeostasis, whereas DCA and CA were intermediate, LCA the least, and UDCA ineffective.

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