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An Intestinal Epithelium-Specific Cytochrome P450 (P450) Reductase-Knockout Mouse Model: Direct Evidence for a Role of Intestinal P450s in First-Pass Clearance of Oral Nifedipine

机译:肠上皮特异性细胞色素P450(P450) 还原酶基因敲除小鼠模型:肠道P450s作用的直接证据。 硝苯地平的首过通关检查

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摘要

To determine the in vivo function of intestinal cytochrome P450 (P450) enzymes, we have generated an intestinal epithelium (IE)-specific P450 reductase gene (Cpr) knockout mouse model (designated IE-Cpr-null). In the IE-Cpr-null mouse, CPR expression was abolished in IE cells; however, CPR expression was not altered in other tissues examined. The loss of CPR expression in the small intestine (SI) led to increased expression of several P450 proteins examined, including CYP1A1, CYP2B, CYP2C, and CYP3A. It is interesting to note that the expression of CYP1A1 was also increased in the liver, kidney, and lung of the IE-Cpr-null mice compared with wild-type (WT) littermates, a result strongly supporting the notion that SI metabolism of putative dietary CYP1A1 inducers can influence the systemic bioavailability of these inducers. The rates of SI microsomal metabolism of nifedipine (NFP) in the IE-Cpr-null mice were ∼10% of the rates in WT littermates, despite the compensatory expression of multiple P450 enzymes in the SI. Furthermore, the area under the concentration-time curve (AUC) values for blood NFP (dosed at 10 mg/kg) levels were 1.6-fold higher in IE-Cpr-null mice than in WT littermates when NFP was given orally; in contrast, the AUC values were comparable for the two strains when NFP was given intravenously. This result directly showed that P450-catalyzed NFP metabolism in the SI plays an important role in the first-pass clearance of oral NFP. Our findings indicate that the IE-Cpr-null mouse model can be used to study the in vivo function of intestinal P450 enzymes in the clearance of oral drugs and other xenobiotics.
机译:若要确定肠道细胞色素P450(P450)酶的体内功能,我们已经生成了肠道上皮(IE)特异性P450还原酶基因(Cpr)敲除小鼠模型(称为IE-Cpr-null)。在IE-Cpr-null小鼠中,CPR在IE细胞中的表达消失了。然而,在其他检查的组织中,CPR表达未改变。小肠(SI)中CPR表达的丧失导致所检查的几种P450蛋白的表达增加,其中包括CYP1A1,CYP2B,CYP2C和CYP3A。有趣的是,与野生型(WT)同窝幼仔相比,IE-Cpr-null小鼠的肝,肾和肺中CYP1A1的表达也增加了,这一结果强烈支持了假定的SI代谢的观点。饮食中的CYP1A1诱导剂可影响这些诱导剂的全身生物利用度。 IE-Cpr-null小鼠中硝苯地平(NFP)的SI微粒体代谢率约为WT同窝幼仔率的10%,尽管SI中存在多种P450酶的代偿性表达。此外,当口服NFP时,IE-Cpr-null小鼠的血液NFP(以10 mg / kg剂量)水平的浓度-时间曲线(AUC)值下的面积比WT同窝小鼠高1.6倍;相反,AUC值是 当静脉注射NFP时,这两种菌株具有可比性。这个结果 直接表明SI中P450催化的NFP代谢起着 在口腔NFP的首过清除中起重要作用。我们的发现表明 IE-Cpr-null小鼠模型可用于研究小鼠的体内功能 肠道P450酶在清除口服药物和其他药物中的作用 异生物素。

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