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一种用于细胞色素P450和转运体功能的新型“双鸡尾酒”探针的开发与验证,以评估药代动力学药物-药物和草药-药物相互作用。

The Development and Validation of a Novel "Dual Cocktail" Probe for Cytochrome P450s and Transporter Functions to Evaluate Pharmacokinetic Drug-Drug and Herb-Drug Interactions.

作者信息

Kwon Mihwa, Jeon Ji-Hyeon, Choi Min-Koo, Song Im-Sook

机构信息

College of Pharmacy and Research Institute of Pharmaceutical Sciences, Kyungpook National University, Daegu 41566, Korea.

College of Pharmacy, Dankook University, Cheon-an 31116, Korea.

出版信息

Pharmaceutics. 2020 Sep 30;12(10):938. doi: 10.3390/pharmaceutics12100938.

Abstract

This study was designed to develop and validate a 10 probe drug cocktail named "Dual Cocktail", composed of caffeine (Cyp1a2 in rat and CYP1A2 in human, 1 mg/kg), diclofenac (Cyp2c11 in rat and CYP2C9 in human, 2 mg/kg), omeprazole (Cyp2c11 in rat and CYP2C19 in human, 2 mg/kg), dextromethorphan (Cyp2d2 in rat and CYP2D6 in human, 10 mg/kg), nifedipine (Cyp3a1 in rat and CYP3A4 in human, 0.5 mg/kg), metformin (Oct1/2 in rat and OCT1/2 in human, 0.5 mg/kg), furosemide (Oat1/3 in rat and OAT1/3 in human, 0.1 mg/kg), valsartan (Oatp2 in rat and OATP1B1/1B3 in human, 0.2 mg/kg), digoxin (P-gp in rat and human, 2 mg/kg), and methotrexate (Mrp2 in rat and MRP2 in human, 0.5 mg/kg), for the evaluation of pharmacokinetic drug-drug and herb-drug interactions through the modulation of a representative panel of CYP enzymes or transporters in rats. To ensure no interaction among the ten probe substrates, we developed a 2-step evaluation protocol. In the first step, the pharmacokinetic properties of five individual CYP probe substrates and five individual transporter substrates were compared with the pharmacokinetics of five CYP cocktail or five transporters cocktails in two groups of randomly assigned rats. Next, a pharmacokinetic comparison was conducted between the CYP or transporter cocktail group and the dual cocktail group, respectively. None of the ten comparison groups was found to be statistically significant, indicating the CYP and transporter substrate sets or dual cocktail set could be concomitantly administered in rats. The "Dual Cocktail" was further validated by assessing the metabolism of nifedipine and omeprazole, which was significantly reduced by a single oral dose of ketoconazole (10 mg/kg); however, no changes were observed in the pharmacokinetic parameters of other probe substrates. Additionally, multiple oral doses of rifampin (20 mg/kg) reduced the plasma concentrations of nifedipine and digoxin, although not any of the other substrates. In conclusion, the dual cocktail can be used to characterize potential pharmacokinetic drug-drug interactions by simultaneously monitoring the activity of multiple CYP isoforms and transporters.

摘要

本研究旨在开发并验证一种名为“双鸡尾酒”的10种探针药物混合物,其由咖啡因(大鼠中的Cyp1a2和人类中的CYP1A2,1mg/kg)、双氯芬酸(大鼠中的Cyp2c11和人类中的CYP2C9,2mg/kg)、奥美拉唑(大鼠中的Cyp2c11和人类中的CYP2C19,2mg/kg)、右美沙芬(大鼠中的Cyp2d2和人类中的CYP2D6,10mg/kg)、硝苯地平(大鼠中的Cyp3a1和人类中的CYP3A4,0.5mg/kg)、二甲双胍(大鼠中的Oct1/2和人类中的OCT1/2,0.5mg/kg)、呋塞米(大鼠中的Oat1/3和人类中的OAT1/3,0.1mg/kg)、缬沙坦(大鼠中的Oatp2和人类中的OATP1B1/1B3,0.2mg/kg)、地高辛(大鼠和人类中的P-gp,2mg/kg)以及甲氨蝶呤(大鼠中的Mrp2和人类中的MRP2,0.5mg/kg)组成,用于通过调节大鼠中一组代表性的CYP酶或转运蛋白来评估药代动力学药物-药物和草药-药物相互作用。为确保十种探针底物之间无相互作用,我们制定了两步评估方案。第一步,在两组随机分配的大鼠中,将五种单独的CYP探针底物和五种单独的转运蛋白底物的药代动力学特性与五种CYP混合物或五种转运蛋白混合物的药代动力学进行比较。接下来,分别在CYP或转运蛋白混合物组与双混合物组之间进行药代动力学比较。十个比较组均未发现具有统计学意义,表明CYP和转运蛋白底物组或双混合物组可在大鼠中同时给药。通过评估硝苯地平和奥美拉唑的代谢对“双鸡尾酒”进行了进一步验证,单次口服酮康唑(10mg/kg)可使其代谢显著降低;然而,其他探针底物的药代动力学参数未观察到变化。此外,多次口服利福平(20mg/kg)降低了硝苯地平和地高辛的血浆浓度,尽管其他底物未受影响。总之,双混合物可通过同时监测多种CYP同工型和转运蛋白的活性来表征潜在的药代动力学药物-药物相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c83c/7600799/c598cf53ec89/pharmaceutics-12-00938-g001.jpg

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