首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Intestinal human colon adenocarcinoma cell line LS180 is an excellent model to study pregnane X receptor, but not constitutive androstane receptor, mediated CYP3A4 and multidrug resistance transporter 1 induction: studies with anti-human immunodeficiency virus protease inhibitors
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Intestinal human colon adenocarcinoma cell line LS180 is an excellent model to study pregnane X receptor, but not constitutive androstane receptor, mediated CYP3A4 and multidrug resistance transporter 1 induction: studies with anti-human immunodeficiency virus protease inhibitors

机译:肠道人结肠腺癌细胞系LS180是研究妊娠X受体而不是组成型雄甾烷受体,介导的CYP3A4和多药耐药转运蛋白1诱导的优秀模型:抗人免疫缺陷病毒蛋白酶抑制剂的研究

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Lack of an established cell line model to study induction of cytochromes P450 (P450s) and drug transporters poses a challenge in predicting in vivo drug-drug interactions. Although not well characterized, LS180 cells could be an excellent cell line to study induction of P450s and transporters because they express pregnane X receptor (PXR). Therefore, as part of a larger study of in vitro to in vivo prediction of inductive drug interactions, we determined induction of various P450s and drug transporters by the anti-human deficiency virus protease inhibitors (PIs) and the prototypic inducer, rifampin, in LS180 cells. Among these proteins, the various PIs significantly induced (n = 3-5) only CYP3A4 and multidrug resistance transporter 1 (MDR1) transcripts (2- to 50-fold). CYP3A4 activity (1'-hydroxymidazolam formation) was increased (2-fold) by rifampin (10 microM) but was reduced by the PIs (1.5- to 7-fold). Surprisingly, constitutive androstane receptor 1 (CAR1) was not found to be expressed in these cells. Additionally, using a reporter assay, we found that PIs did not activate CAR3 (the natural splice variant of CAR1) but significantly activated PXR (2- to 24-fold), which correlated well with induction of CYP3A4 and MDR1 transcripts (approximately r = 0.9). Furthermore, in a PXR-knockdown stable LS180 cell line, induction of CYP3A4 and MDR1 mRNA after treatment with PIs and rifampin was significantly reduced (1.4- to 5-fold) compared with that in PXR nonsilenced cells. Based on these data, we conclude that LS180 cells could be used as a readily available, high-throughput cell line to screen for PXR-mediated induction of CYP3A4 and MDR1 transcripts. These data also indicate that the majority of the PIs are likely to produce intestinal drug-drug interactions by inactivating or inhibiting CYP3A enzymes even though they induce CYP3A4 and MDR1 transcripts via PXR.
机译:缺乏建立的细胞系模型来研究细胞色素P450(P450s)和药物转运蛋白的诱导,对预测体内药物相互作用产生了挑战。尽管尚未很好地表征,但是LS180细胞可能是研究P450和转运蛋白诱导的优秀细胞系,因为它们表达了孕烷X受体(PXR)。因此,作为对体外诱导的药物相互作用进行体内到体外预测的一项较大研究的一部分,我们确定了抗人类缺乏病毒蛋白酶抑制剂(PIs)和原型诱导剂rifampin在LS180中对各种P450和药物转运蛋白的诱导。细胞。在这些蛋白质中,各种PI仅诱导(n = 3-5)CYP3A4和多药耐药转运蛋白1(MDR1)转录本(2至50倍)。利福平(10 microM)使CYP3A4活性(1'-羟基咪达唑仑的形成)增加(2倍),但被PI降低(1.5至7倍)。令人惊讶的是,未在这些细胞中表达组成型雄烷受体1(CAR1)。此外,使用报告基因分析,我们发现PI不会激活CAR3(CAR1的天然剪接变体),但是会显着激活PXR(2至24倍),这与CYP3A4和MDR1转录本的诱导很好相关(大约r = 0.9)。此外,在PXR组合式稳定的LS180细胞系中,与PXR非沉默细胞相比,用PI和利福平处理后CYP3A4和MDR1 mRNA的诱导显着降低(1.4到5倍)。根据这些数据,我们得出结论,LS180细胞可用作一种容易获得的高通量细胞系,以筛选PXR介导的CYP3A4和MDR1转录本的诱导。这些数据还表明,即使它们通过PXR诱导CYP3A4和MDR1转录本,大多数PI也可能通过失活或抑制CYP3A酶来产生肠道药物相互作用。

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