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首页> 外文期刊>Biochemical Pharmacology >Integrated cytochrome P450 reaction phenotyping: attempting to bridge the gap between cDNA-expressed cytochromes P450 and native human liver microsomes.
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Integrated cytochrome P450 reaction phenotyping: attempting to bridge the gap between cDNA-expressed cytochromes P450 and native human liver microsomes.

机译:整合的细胞色素P450反应表型:试图弥合cDNA表达的细胞色素P450与天然人肝微粒体之间的鸿沟。

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摘要

With the increased availability of human liver tissue, recombinant (cDNA-expressed) cytochrome P450 proteins (rCYPs), and knowledge of the human CYP pool (e.g. immunoquantitated levels of each CYP form in native liver microsomes), it is now possible to carry out in vitro "CYP reaction phenotyping" in an integrated manner. Reaction phenotyping allows one to identify which CYP form(s) is (are) involved in the metabolism of a given drug, using a combination of data obtained with native human liver microsomes and rCYP proteins. The following describes how one can attempt to integrate such data. A total of ten drugs are included in the analysis, represented by twelve reactions (six hydroxylations, two O-demethylations, one N-demethylation, one O-deethylation, and two sulfoxidations) that are largely catalyzed (> or =20%) by various combinations of CYPs (CYP3A4, CYP2C9, CYP1A2, and CYP2D6), and characterized by a wide range of apparent Km values (12-820 microM). Briefly, reaction rates measured with individual rCYPs are normalized with respect to the nominal specific content of the corresponding CYP in native human liver microsomes. In turn, the normalized rates for each rCYP are summed, yielding a "total normalized rate" (TNR), and the normalized rate for each rCYP is expressed as a percent of the TNR (% TNR). Finally, % TNR is related to inhibition (percent inhibition in the presence of CYP form selective chemical inhibitors; % I) and univariate regression analysis (r > or = 0.63; P < or = 0.05; N > or = 10 different livers) data obtained with native human liver microsomes. Therefore, the reaction phenotype of a drug is assigned by integrating all three data sets (r, % TNR, and % I).
机译:随着人类肝脏组织,重组(表达cDNA)的细胞色素P450蛋白(rCYPs)的可用性增加以及人类CYP库的知识(例如天然肝脏微粒体中每种CYP形式的免疫定量水平),现在有可能进行体外“ CYP反应表型”的综合研究。反应表型可以结合使用天然人肝微粒体和rCYP蛋白获得的数据来鉴定一种CYP形式与给定药物的代谢有关。下面描述了如何尝试整合这些数据。分析中总共包括十种药物,以十二种反应(六种羟基化,两种O-脱甲基化,一种N-脱甲基化,一种O-脱乙基化和两种硫氧化)表示,它们在很大程度上被(≥20%)催化CYP的各种组合(CYP3A4,CYP2C9,CYP1A2和CYP2D6),并具有多种表观Km值(12-820 microM)。简而言之,相对于天然人肝微粒体中相应CYP的标称比含量,将用单个rCYP测得的反应速率进行了标准化。依次将每个rCYP的归一化率相加,得出“总归一化率”(TNR),每个rCYP的归一化率表示为TNR的百分比(%TNR)。最后,%TNR与抑制(CYP形式选择性化学抑制剂存在下的抑制百分比;%I)和单变量回归分析(r>或= 0.63; P <或= 0.05; N>或= 10种不同的肝脏)有关。用天然人肝微粒体获得。因此,通过整合所有三个数据集(r,%TNR和%I)来分配药物的反应表型。

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