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首页> 外文期刊>Molecular pharmacology. >Oral benzo(a)pyrene in Cyp1 knockout mouse lines: CYP1A1 important in detoxication, CYP1B1 metabolism required for immune damage independent of total-body burden and clearance rate.
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Oral benzo(a)pyrene in Cyp1 knockout mouse lines: CYP1A1 important in detoxication, CYP1B1 metabolism required for immune damage independent of total-body burden and clearance rate.

机译:Cyp1基因敲除小鼠品系中的口服苯并(a):: CYP1A1在解毒,免疫损伤所需的CYP1B1代谢中起重要作用,与全身负担和清除率无关。

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摘要

CYP1A1 and CYP1B1 metabolically activate many polycyclic aromatic hydrocarbons (PAHs), including benzo[a]pyrene, to reactive intermediates associated with toxicity, mutagenesis, and carcinogenesis. Paradoxically, however, Cyp1a1-/- knockout mice are more sensitive to oral benzo[a]pyrene exposure, compared with wild-type Cyp1a1+/+ mice (Mol Pharmacol 65:1225, 2004). To further investigate the mechanism for this enhanced sensitivity, Cyp1a1-/-, Cyp1a2-/-, and Cyp1b1-/- single-knockout, Cyp1a1/1b1-/- and Cyp1a2/1b1-/- double-knockout, and Cyp1+/+ wild-type mice were analyzed. After administration of oral benzo[a]pyrene (125 mg/kg/day) for 18 days, Cyp1a1-/- mice showed marked wasting, immunosuppression, and bone marrow hypocellularity, whereas the other five genotypes did not. After 5 days of feeding, steady-state blood levels of benzo[a]pyrene were approximately 25 and approximately 75 times higher in Cyp1a1-/- and Cyp1a1/1b1-/- mice, respectively, than in wild-type mice. Benzo[a]pyrene-DNA adduct levels were highest in liver, spleen, and marrow of Cyp1a1-/- and Cyp1a1/1b1-/- mice. Many lines of convergent data obtained with oral benzo[a]pyrene dosing suggest that: 1) inducible CYP1A1, probably in both intestine and liver, is most important in detoxication; 2) CYP1B1 in spleen and marrow is responsible for metabolic activation of benzo[a]pyrene, which results in immune damage in the absence of CYP1A1; 3) both thymus atrophy and hepatocyte hypertrophy are independent of CYP1B1 metabolism but rather may reflect long-term activation of the aryl hydrocarbon receptor; and 4) the magnitude of immune damage in Cyp1a1-/- and Cyp1a1/1b1-/- mice is independent of plasma benzo[a]pyrene and total-body burden and clearance. Thus, a balance between tissue-specific expression of the CYP1A1 and CYP1B1 enzymes governs sensitivity of benzo[a]pyrene toxicity and, possibly, carcinogenicity.
机译:CYP1A1和CYP1B1代谢活化许多多环芳烃(PAH),包括苯并[a] s,成为与毒性,诱变和致癌作用有关的反应性中间体。然而,自相矛盾的是,与野生型Cyp1a1 + / +小鼠相比,Cyp1a1-/-敲除小鼠对口服苯并[a]]的暴露更敏感(Mol Pharmacol 65:1225,2004)。为了进一步研究这种增强灵敏度的机制,Cyp1a1-/-,Cyp1a2-/-和Cyp1b1-/-单敲除,Cyp1a1 / 1b1-/-和Cyp1a2 / 1b1-/-双敲除和Cyp1 + / +分析了野生型小鼠。口服苯并[a] py(125 mg / kg /天)18天后,Cyp1a1-/-小鼠显示出明显的消瘦,免疫抑制和骨髓细胞减少,而其他五种基因型则没有。喂养5天后,Cyp1a1-/-和Cyp1a1 / 1b1-/-小鼠的苯并[a] a稳态血药浓度分别比野生型小鼠高25倍和约75倍。 Cyp1a1-/-和Cyp1a1 / 1b1-/-小鼠的肝脏,脾脏和骨髓中苯并[a] py-DNA加合物水平最高。口服苯并[a] py剂量获得的许多收敛数据表明:1)可能在肠和肝中均可诱导的CYP1A1在解毒中最重要; 2)脾脏和骨髓中的CYP1B1负责苯并[a] re的代谢活化,在没有CYP1A1的情况下会导致免疫损伤; 3)胸腺萎缩和肝细胞肥大均与CYP1B1代谢无关,但可能反映了芳烃受体的长期激活; 4)Cyp1a1-/-和Cyp1a1 / 1b1-/-小鼠的免疫损伤程度与血浆苯并[a] py和全身负荷及清除率无关。因此,CYP1A1和CYP1B1酶的组织特异性表达之间的平衡决定了苯并[a] re毒性的敏感性以及可能的致癌性。

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