Role of Intestinal Cytochrome P450 (P450) in Modulating the Bioavailability of Oral Lovastatin: Insights from Studies on the Intestinal Epithelium-Specific P450 Reductase Knockout Mouse

被引:27
|
作者
Zhu, Yi
D'Agostino, Jaime
Zhang, Qing-Yu [1 ]
机构
[1] SUNY Albany, New York State Dept Hlth, Wadsworth Ctr, Lab Mol Toxicol,Div Environm Hlth Sci, Albany, NY 12201 USA
基金
美国国家卫生研究院;
关键词
GRAPEFRUIT JUICE; DRUG-INTERACTIONS; XENOBIOTIC METABOLISM; P-GLYCOPROTEIN; ORANGE JUICE; PRAVASTATIN; BIOTRANSFORMATION; DISPOSITION; INHIBITORS; ENZYMES;
D O I
10.1124/dmd.110.037861
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
The extents to which small intestinal (SI) cytochrome P450 (P450) enzymes control the bioavailability of oral drugs are not well defined, particularly for drugs that are substrates for both P450 and the P-glycoprotein (P-gp). In this study, we have determined the role of SI P450 in the clearance of orally administered lovastatin (LVS), an anti-hypercholesterolemia drug, using an intestinal epithelium (IE)-specific P450 reductase knockout (IE-Cpr-null) mouse model. In the IE-Cpr-null mouse, which has little P450 activities in the IE, the oral bioavailability of LVS was substantially higher than that in wild-type (WT) mice (15 and 5%, respectively). In control experiments, the clearance rates were not different between the two strains, either for intraperitoneally dosed LVS, which bypasses SI metabolism, or for orally administered pravastatin, which is known to be poorly metabolized by P450. Thus, our results demonstrate a predominant role of SI P450 enzymes in the first-pass clearance of oral LVS. The absence of IE P450 activities in the IE-Cpr-null mice also facilitated the identification of the molecular targets for orally administered grapefruit juice (GFJ), which is known to inhibit LVS clearance in humans. We found that pretreatment of mice with oral GFJ enhanced the systemic exposure of LVS in WT, but not in IE-Cpr-null mice, a result suggesting that the main target of GFJ action in the small intestine is P450, but not P-gp.
引用
收藏
页码:939 / 943
页数:5
相关论文
共 50 条
  • [21] Dietary Regulation of Mouse Intestinal P450 Expression and Drug Metabolism
    Zhang, Peng
    Jia, Kunzhi
    Fang, Cheng
    Zhou, Xin
    Ding, Xinxin
    Zhang, Qing-Yu
    DRUG METABOLISM AND DISPOSITION, 2013, 41 (02) : 529 - 535
  • [22] The role of the hepatic cytochrome P450 enzymes in psychopharmacology
    Normann, C
    Hesslinger, B
    Bauer, J
    Berger, M
    Walden, J
    NERVENARZT, 1998, 69 (11): : 944 - 955
  • [23] Mice Deficient in Intestinal Epithelium Cytochrome P450 Reductase are Prone to Acute Toxin-induced Mucosal Damage
    Ahlawat, Sarita
    Xie, Fang
    Zhu, Yi
    D'Hondt, Rebecca
    Ding, Xinxin
    Zhang, Qing-Yu
    Mantis, Nicholas J.
    SCIENTIFIC REPORTS, 2014, 4
  • [24] Modulation of Cytochrome P450 Metabolism and Transport across Intestinal Epithelial Barrier by Ginger Biophenolics
    Mukkavilli, Rao
    Gundala, Sushma R.
    Yang, Chunhua
    Donthamsetty, Shashikiran
    Cantuaria, Guilherme
    Jadhav, Gajanan R.
    Vangala, Subrahmanyam
    Reid, Michelle D.
    Aneja, Ritu
    PLOS ONE, 2014, 9 (09):
  • [25] Cytochrome P450s and cytochrome P450 reductase in the olfactory organ of the cotton leafworm Spodoptera littoralis
    Pottier, M. -A.
    Bozzolan, F.
    Chertemps, T.
    Jacquin-Joly, E.
    Lalouette, L.
    Siaussat, D.
    Maibeche-Coisne, M.
    INSECT MOLECULAR BIOLOGY, 2012, 21 (06) : 568 - 580
  • [26] Substrate promiscuity of cytochrome P450 RhF
    O'Reilly, Elaine
    Corbett, Mark
    Hussain, Shahed
    Kelly, Paul P.
    Richardson, Dominique
    Flitsch, Sabine L.
    Turner, Nicholas J.
    CATALYSIS SCIENCE & TECHNOLOGY, 2013, 3 (06) : 1490 - 1492
  • [27] Novel advances in cytochrome P450 research
    Singh, Deepika
    Kashyap, Akriti
    Pandey, Ram Vinay
    Saini, Kulvinder Singh
    DRUG DISCOVERY TODAY, 2011, 16 (17-18) : 793 - 799
  • [28] The Central Role of Cytochrome P450 Reductase (CPR) in Hyperoxic Lung Injury
    Narke, Deven
    Moorthy, Bhagavatula
    EXPERT OPINION ON DRUG METABOLISM & TOXICOLOGY, 2025, : 589 - 598
  • [29] Cytochrome P450 Networks in Chemical Space
    Lee, Soyoung
    Kim, Dongsup
    ARCHIVES OF PHARMACAL RESEARCH, 2010, 33 (09) : 1361 - 1374
  • [30] Regulation of cytochrome P450 expression by sphingolipids
    Merrill, AH
    Nikolova-Karakashian, M
    Schmelz, EM
    Morgan, ET
    Stewart, J
    CHEMISTRY AND PHYSICS OF LIPIDS, 1999, 102 (1-2) : 131 - 139