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Perfluorocarboxylic Acids Induce Cytochrome P450 Enzymes in Mouse Liver through Activation of PPAR-α and CAR Transcription Factors

机译:全氟羧酸通过激活PPAR-α和CAR转录因子在小鼠肝脏中诱导细胞色素P450酶

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摘要

Cytochrome p450 enzymes (Cyps) are major phase-I xenobiotic-metabolizing enzymes. Cyps are regulated by many environmental chemicals and drugs. However, knowledge about regulation of Cyps by perfluorocarboxylic acids (PFCAs), which are persistent in the environment, is limited. Two days after a single i.p. administration (50 mg/kg) of perfluorooctanoic acid (PFOA) and perfluorodecanoic acid (PFDA) increased mRNA expression of Cyp2B10 (20-fold), 3A11 (two-fold), and 4A14 (32-fold), but not Cyp1A1/2 in mouse livers. PFDA and PFOA also markedly increased protein expression of Cyp2B (50-fold) and 4A (10-fold). PFDA increased Cyp4A14 mRNA expression at relatively low doses (0.5 mg/kg), but increased Cyp2B10 mRNA expression only at high doses (> 20 mg/kg). By using constitutive androstane receptor (CAR)-, pregnane-X receptor (PXR)-, peroxisome proliferator–activated receptor alpha (PPAR)-α-, and farnesoid X receptor-null mouse models, PPAR-α and CAR were shown to play central roles in the induction of Cyps by PFDA. Specifically, PFDA increased Cyp4A14 mRNA expression in wild-type (WT) mice, but much less in PPAR-α-null mice. PFDA increased Cyp2B10 mRNA expression in WT mice, but not in CAR-null mice. In addition, PFDA increased mRNA expression and nuclear translocation of the transcription factor CAR. Therefore, the current studies provide important insight into understanding the regulatory mechanisms initiated by PFCAs, and may help to better predict and understand the toxicokinetics and toxicodynamics of various PFCAs. In conclusion, PFCAs increased Cyp2B10 and 4A14 expression by activating PPAR-α and CAR nuclear receptors, respectively. PPAR-α is activated at much lower doses of PFDA than CAR.
机译:细胞色素p450酶(Cyps)是主要的I期异种生物代谢酶。 Cyps受许多环境化学物质和药物的调节。但是,关于在环境中持续存在的全氟羧酸(PFCA)调节Cyps的知识是有限的。一次i.p.后两天给予全氟辛酸(PFOA)和全氟癸酸(PFDA)(50 mg / kg)可增加Cyp2B10(20倍),3A11(2倍)和4A14(32倍)的mRNA表达,但不增加Cyp1A1 / 2在小鼠肝脏中。 PFDA和PFOA还显着增加Cyp2B(50倍)和4A(10倍)的蛋白表达。 PFDA在相对低剂量(0.5 mg / kg)时增加Cyp4A14 mRNA表达,但仅在高剂量(> 20 mg / kg)时增加Cyp2B10 mRNA表达。通过使用本构雄激素受体(CAR)-,孕烷X受体(PXR)-,过氧化物酶体增殖物激活的受体α(PPAR)-α-和法尼醇X受体无效的小鼠模型,PPAR-α和CAR发挥了作用PFDA诱导Cyps的重要作用。具体而言,PFDA在野生型(WT)小鼠中增加Cyp4A14 mRNA表达,而在PPAR-α-null小鼠中则少得多。 PFDA可增加WT小鼠的Cyp2B10 mRNA表达,但不影响无CAR的小鼠。此外,PFDA增加了转录因子CAR的mRNA表达和核易位。因此,当前的研究为理解PFCA引发的调控机制提供了重要的见识,并可能有助于更好地预测和了解各种PFCA的毒物动力学和毒物动力学。总之,PFCAs通过激活PPAR-α和CAR核受体分别增加Cyp2B10和4A14表达。 PPAR-α的PFDA剂量要比CAR低得多。

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