首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Defining the Contribution of CYP1A1 and CYP1A2 to Drug Metabolism Using Humanized CYP1A1/1A2 and Cyp1a1/Cyp1a2 Knockout Mice
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Defining the Contribution of CYP1A1 and CYP1A2 to Drug Metabolism Using Humanized CYP1A1/1A2 and Cyp1a1/Cyp1a2 Knockout Mice

机译:使用人源化CYP1A1 / 1A2和CYP1A1 / CYP1A2敲除小鼠定义CYP1A1和CYP1A2对药物代谢的贡献

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摘要

Cytochrome P450s CYP1A1 and CYP1A2 can metabolize a broad range of foreign compounds and drugs. However, these enzymes have significantly overlapping substrate specificities. To establish their relative contribution to drug metabolism in vivo, we used a combination of mice humanized for CYP1A1 and CYP1A2 together with mice nulled at the Cyp1a1 and Cyp1a2 gene loci. CYP1A2 was constitutively expressed in the liver, and both proteins were highly inducible by 2,3,7,8-tetrachlorodibenzodioxin (TCDD) in a number of tissues, including the liver, lung, kidney, and small intestine. Using the differential inhibition of the human enzymes by quinidine, we developed a method to distinguish the relative contribution of CYP1A1 or CYP1A2 in the metabolism of drugs and foreign compounds. Both enzymes made a significant contribution to the hepatic metabolism of the probe compounds 7-methoxy and 7ehthoxyresorufin in microsomal fractions from animals treated with TCDD. This enzyme kinetic approach allows modeling of the CYP1A1, CYP1A2, and non-CYP1A contribution to the metabolism of any substrate at any substrate, inhibitor, or enzyme concentration and, as a consequence, can be integrated into a physiologically based pharmacokinetics model. The validity of the model can then be tested in humanized mice in vivo.
机译:细胞色素P450S CYP1A1和CYP1A2可以代谢广泛的外国化合物和药物。然而,这些酶具有显着重叠的底物特异性。为了建立对体内药物代谢的相对贡献,我们将为CYP1A1和CYP1A2的小鼠组合在一起,与CYP1A1和CYP1A2基因基因座中含有的小鼠。 CYP1A2在肝脏中组成型在肝脏中表达,并且两种蛋白质在许多组织中由2,3,7,8-四氯二氯二苯并二辛(TCDD)高度诱导,包括肝脏,肺,肾和小肠。利用奎尼丁使用鉴别抑制人酶,我们开发了一种区分CYP1A1或CYP1A2在药物和外来化合物代谢中的相对贡献的方法。两种酶对由TCDD处理的动物的微粒体级分中探针化合物7-甲氧基和7ehOxysorufin的肝脏代谢作出了显着贡献。该酶动力学方法允许CYP1A1,CYP1A2和非CYP1A的建模对任何基材,抑制剂或酶浓度的任何基材的代谢贡献,并且因此可以集成到生理基础的药代动力学模型中。然后可以在体内的人源化小鼠中测试模型的有效性。

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