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熊去氧胆酸处理食蟹猴后有机阴离子转运多肽 1B 表达受抑制和血浆粪卟啉水平升高提示 OATP1B 下调。

Repression of Organic Anion Transporting Polypeptide (OATP) 1B Expression and Increase of Plasma Coproporphyrin Level as Evidence for OATP1B Downregulation in Cynomolgus Monkeys Treated with Chenodeoxycholic Acid.

机构信息

Drug Metabolism and Pharmacokinetics (Y.Z., C.C, E.M.J., Z.Y., H.S.), Discovery Toxicology (S.-J.C., L.A.), Discovery Pharmaceutics (X.-Q.C.), and Veterinary Sciences (D.J.S., H.D.), Bristol Myers Squibb Company, Princeton, New Jersey; and Drug Metabolism and Pharmacokinetics (S.-J.C.), Biocon Bristol Myers Squibb R&D Centre, Syngene International Ltd., Bangalore, India.

Drug Metabolism and Pharmacokinetics (Y.Z., C.C, E.M.J., Z.Y., H.S.), Discovery Toxicology (S.-J.C., L.A.), Discovery Pharmaceutics (X.-Q.C.), and Veterinary Sciences (D.J.S., H.D.), Bristol Myers Squibb Company, Princeton, New Jersey; and Drug Metabolism and Pharmacokinetics (S.-J.C.), Biocon Bristol Myers Squibb R&D Centre, Syngene International Ltd., Bangalore, India

出版信息

Drug Metab Dispos. 2022 Aug;50(8):1077-1086. doi: 10.1124/dmd.122.000875. Epub 2022 May 30.

Abstract

Farnesoid X receptor (FXR) is a nuclear receptor known to markedly alter expression of major transporters and enzymes in the liver. However, its effects toward organic anion transporting polypeptides (OATP) 1B1 and 1B3 remain poorly characterized. Therefore, the present study was aimed at determining the effects of chenodeoxycholic acid (CDCA), a naturally occurring FXR agonist, on OATP1B expression in cynomolgus monkeys. Multiple administrations of 50 and 100 mg/kg of CDCA were first shown to significantly repress mRNA expression of approximately 60% to 80% in monkey livers. It also suppressed cytochrome P450 (CYP)7A1-mRNA and induced OST/-mRNA, which are well known targets of FXR and determinants of bile acid homeostasis. CDCA concomitantly decreased OATP1B protein abundance by approximately 60% in monkey liver. In contrast, multiple doses of 15 mg/kg rifampin (RIF), a pregnane X receptor agonist, had no effect on hepatic OATP1B protein, although it induced the intestinal P-glycoprotein and MR2 proteins by ∼2-fold. Moreover, multiple doses of CDCA resulted in a steady ∼2- to 10-fold increase of the OATP1B biomarkers coproporphyrins (CPs) in the plasma samples collected prior to each CDCA dose. Additionally, 3.4- to 11.2-fold increases of CPI and CPIII areas under the curve were observed after multiple administrations compared with the single dose and vehicle administration dosing groups. Taken together, these data suggest that CDCA represses the expression of OATP1B1 and OATP1B3 in monkeys. Further investigation of OATP1B downregulation by FXR in humans is warranted, as such downregulation effects may be involved in bile acid homeostasis and potential drug interactions in man. SIGNIFICANCE STATEMENT: Using gene expression and proteomics tools, as well as endogenous biomarker data, for the first time, we have demonstrated that OATP1B expression was suppressed and its activity was reduced in the cynomolgus monkeys following oral administration of 50 and 100 mg/kg/day of chenodeoxycholic acid (CDCA), a Farnesoid X receptor agonist, for 8 days. These results lead to a better understanding of OATP1B downregulation by CDCA and its role on bile acid and drug disposition.

摘要

法尼醇 X 受体 (FXR) 是一种核受体,已知其可显著改变肝脏中主要转运体和酶的表达。然而,其对有机阴离子转运多肽 (OATP)1B1 和 1B3 的作用仍未得到充分描述。因此,本研究旨在确定天然 FXR 激动剂鹅去氧胆酸 (CDCA) 对食蟹猴 OATP1B 表达的影响。首先,50 和 100mg/kg 的 CDCA 多次给药显著抑制了食蟹猴肝脏中约 60%至 80%的 mRNA 表达。它还抑制了细胞色素 P450 (CYP)7A1-mRNA 和诱导 OST/-mRNA,这是 FXR 的众所周知的靶点和胆汁酸稳态的决定因素。CDCA 同时使食蟹猴肝脏中的 OATP1B 蛋白减少约 60%。相比之下,多次给予 15mg/kg 的利福平 (RIF),一种孕烷 X 受体激动剂,对肝 OATP1B 蛋白没有影响,尽管它使肠 P-糖蛋白和 MR2 蛋白增加约 2 倍。此外,CDCA 的多次给药导致在每次 CDCA 剂量前采集的血浆样本中 OATP1B 生物标志物粪卟啉 (CPs) 稳定增加 2 至 10 倍。此外,与单次剂量和载体给药组相比,多次给药后 CPI 和 CPIII 的 AUC 分别增加了 3.4 至 11.2 倍。总之,这些数据表明 CDCA 抑制了食蟹猴 OATP1B1 和 OATP1B3 的表达。需要进一步研究 FXR 对人类 OATP1B 的下调作用,因为这种下调作用可能与人类的胆汁酸稳态和潜在的药物相互作用有关。意义声明:首次使用基因表达和蛋白质组学工具以及内源性生物标志物数据,我们证明了在食蟹猴中,口服给予 50 和 100mg/kg/天的鹅去氧胆酸 (CDCA),一种法尼醇 X 受体激动剂,连续 8 天,可抑制 OATP1B 的表达,并降低其活性。这些结果使我们对 CDCA 下调 OATP1B 的作用及其对胆汁酸和药物处置的作用有了更好的理解。

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