首页> 外文期刊>Drug metabolism and pharmacokinetics. >Development of Mice Exhibiting Hepatic Microsomal Activity of Human CYP3A4 Comparable to That in Human Liver Microsomes by Intravenous Administration of an Adenovirus Vector Expressing Human CYP3A4
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Development of Mice Exhibiting Hepatic Microsomal Activity of Human CYP3A4 Comparable to That in Human Liver Microsomes by Intravenous Administration of an Adenovirus Vector Expressing Human CYP3A4

机译:通过静脉内施用表达人CYP3A4的腺病毒载体,开发具有与人肝微粒体相当的人CYP3A4肝微粒体活性的小鼠

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Cytochrome P450 3A4 (CYP3A4) plays a crucial role in the pharmacokinetic and safety profiles of drugs. However, it is difficult to properly predict the pharmacokinetics and hepatotoxicity of drugs in humans using data from experimental animals, because the catalytic activities of CYP3A4 and other drug-metabolizing enzymes differ between human and animal organs. In order to easily generate an animal model for proper evaluation of human CYP3A4-mediated drug metabolism, we developed a human CYP3A4-expressing adenovirus (Ad) vector based on our novel Ad vector exhibiting significantly lower hepatotoxicity (Ad-E4-122aT-hCYP3A4). Intravenous administration of Ad-E4-122aT-hCYP3A4 at a dose of 2 × 1011 virus particles/mouse produced a mouse exhibiting human CYP3A4 activity at a level similar to that in the human liver, as shown in the dexamethasone metabolic experiment using liver microsomes. The area under the curve (AUC) of 6βOHD was 2.7-fold higher in the Ad-E4-122aT-hCYP3A4-administered mice, compared with the mice receiving a control Ad vector. This Ad vector-expressing human CYP3A4 would thus be a powerful tool for evaluating human CYP3A4-mediated drug metabolism in the livers of experimental animals.
机译:细胞色素P450 3A4(CYP3A4)在药物的药代动力学和安全性方面起着至关重要的作用。然而,由于来自人和动物器官的CYP3A4和其他药物代谢酶的催化活性不同,因此很难使用实验动物的数据正确预测药物在人体内的药代动力学和肝毒性。为了轻松生成可正确评估人CYP3A4介导的药物代谢的动物模型,我们基于表现出明显更低的肝毒性的Ad载体(Ad-E4-122aT-hCYP3A4)开发了表达人CYP3A4的腺病毒(Ad)载体。如图2所示,以2×10 11 病毒颗粒/小鼠的剂量静脉内给药Ad-E4-122aT-hCYP3A4产生了展示人CYP3A4活性的小鼠,其水平与人肝脏相似。使用肝微粒体的地塞米松代谢实验。与接受对照Ad载体的小鼠相比,施用Ad-E4-122aT-hCYP3A4的小鼠的6βOHD曲线下面积(AUC)高2.7倍。因此,这种表达Ad载体的人CYP3A4将成为评估实验动物肝脏中人CYP3A4介导的药物代谢的有力工具。

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