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Multiple inhibition mechanisms and prediction of drug-drug interactions: status of metabolism and transporter models as exemplified by gemfibrozil-drug interactions.

机译:多重抑制机制和药物相互作用的预测:吉非贝齐-药物相互作用举例说明了新陈代谢和转运蛋白模型的状态。

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PURPOSE: To assess the consequences of multiple inhibitors and differential inhibition mechanisms on the prediction of 12 gemfibrozil drug-drug interactions (DDIs). In addition, qualitative zoning of transporter-related gemfibrozil and cyclosporine DDIs was investigated. METHODS: The effect of gemfibrozil and its acyl-glucuronide on different enzymes was incorporated into a metabolic prediction model. The impact of CYP2C8 time-dependent inhibition by gemfibrozil acyl-glucuronide was assessed using repaglinide, cerivastatin, loperamide, rosiglitazone and pioglitazone DDIs. Gemfibrozil and cyclosporine inhibition data obtained in human embryonic kidney cells expressing OATP1B1 and hepatic input concentration ([I]in) were used for qualitative zoning of 14 transporter-mediated DDIs. RESULTS: Incorporation of time-dependent inhibition by gemfibrozil glucuronide showed no significant improvement in the prediction, as CYP2C8 contributed <65% to the overall elimination of the victim drugs investigated. Qualitative zoning of OATP1B1 DDIs resulted in no false negative predictions; yet the magnitude of observed interactions was significantly over-predicted. CONCLUSIONS: Time-dependent inhibition by gemfibrozil glucuronide is only important for victim drugs eliminated predominantly (>80%) via CYP2C8. Qualitative zoning of OATP1B1 inhibitors based on [I]in/K (i) is valid in drug screening to avoid false negatives. Refinement of the transporter model by incorporating the fraction of drug transported by a particular transporter is recommended.
机译:目的:评估多种抑制剂和差异抑制机制对12种吉非贝齐药物相互作用的预测结果。此外,还研究了转运蛋白相关的吉非贝齐和环孢素DDI的定性分区。方法:将吉非贝齐及其酰基葡萄糖醛酸对不同酶的影响纳入代谢预测模型。使用瑞格列奈,西立伐他汀,洛哌丁胺,罗格列酮和吡格列酮DDI评估吉非贝齐酰基-葡萄糖醛酸对CYP2C8的时间依赖性抑制的影响。在表达OATP1B1和肝输入浓度([I] in)的人胚肾细胞中获得的吉非贝齐和环孢素抑制数据用于14个转运蛋白介导的DDI的定性分区。结果:吉非贝齐葡糖醛酸对时间依赖性抑制作用的合并没有显示出显着的改善,因为CYP2C8对所研究的受害药物的总体清除作用<65%。 OATP1B1 DDI的定性分区不会导致任何假阴性预测。然而,观察到的相互作用的幅度被大大高估了。结论:吉非贝齐葡糖苷酸对时间的抑制作用仅对主要通过CYP2C8消除(> 80%)的受害药物很重要。基于[I] in / K(i)的OATP1B1抑制剂的定性分区在药物筛选中是有效的,可以避免假阴性。建议通过合并由特定转运蛋白转运的部分药物来优化转运蛋白模型。

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