首页> 外文期刊>Xenobiotica: the fate of foreign compounds in biological systems >Metabolism of digoxin and digoxigenin digitoxosides in rat liver microsomes: involvement of cytochrome P4503A.
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Metabolism of digoxin and digoxigenin digitoxosides in rat liver microsomes: involvement of cytochrome P4503A.

机译:大鼠肝脏微粒体中地高辛和地高辛配基的地高辛的代谢:细胞色素P4503A的参与。

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摘要

1. The sequential metabolism of digoxin (Dg3) to digoxigenin bis-digitoxoside (Dg2), digoxigenin mono-digitoxoside (Dg1) and digoxigenin (Dg0) was investigated in rat liver microsomes. 2. Kinetic studies produced results consistent with a single enzyme mechanism describing the successive oxidative cleavages. Formation of Dg2 was catalysed with mean (+/-SD) Km and Vmax of 125 +/- 22 microM and 362 +/- 37 pmol/min/mg protein, respectively. The corresponding values for the formation of Dg1 were 61 +/- 5 microM and 7 +/-1 pmol/min/mg protein. Dg0 formation was catalysed with the apparent values of 30 +/- 9 microM and 310 +/- 30 pmol/min/mg protein. 3. Chemical inhibition of cytochrome P450 (CYP) 3A subfamily with ketoconazole and triacetyoleandomycin decreased the formation of Dg2 and Dg1 by up to 90%. Antibodies specific to rat CYP3A2 lowered the rate of oxidative cleavage of Dg3 and Dg2 by up to 85%. Inhibition of CYP2E1, CYP2C subfamily and CYP1A2 by chemical and immuno-inhibition did not affect initial rates of metabolism of Dg3 and Dg2. In contrast, Dg1 metabolism was not affected by triacetyloleandomycin as well as by antibodies to CYP3A2, CYP2C11, CYP2E1, CYP2B1/2B2 and CYP1A2. It was however inhibited by >80% by gestodene and 17alpha-ethynylestradiol (selective inhibitors of human CYP3A). 4. Collectively, these data support the involvement of CYP3A in the cleavage of Dg3 and Dg2 in rat liver microsomes. The enzyme-metabolizing Dg1 remains to be identified.
机译:1.在大鼠肝微粒体中,研究了地高辛(Dg3)到地高辛双双氧苷(Dg2),地高辛单硬脂酸(Dg1)和地高辛(Dg0)的顺序代谢。 2.动力学研究产生的结果与描述连续氧化裂解的单一酶机制相符。 Dg2的形成分别以125 +/- 22 microM和362 +/- 37 pmol / min / mg蛋白的平均(+/- SD)Km和Vmax催化。 Dg1形成的相应值为61 +/- 5 microM和7 +/- 1 pmol / min / mg蛋白。 Dg0的形成以30 +/- 9 microM和310 +/- 30 pmol / min / mg蛋白的表观值催化。 3.用酮康唑和三乙氧基andomycin对细胞色素P450(CYP)3A亚家族的化学抑制作用使Dg2和Dg1的形成减少了90%。大鼠CYP3A2特异的抗体可将Dg3和Dg2的氧化裂解速率降低多达85%。通过化学和免疫抑制作用抑制CYP2E1,CYP2C亚家族和CYP1A2不会影响Dg3和Dg2的初始代谢率。与此相反,Dg1代谢不受三乙酰基柔顺霉素以及CYP3A2,CYP2C11,CYP2E1,CYP2B1 / 2B2和CYP1A2抗体的影响。然而,它被孕二烯酮和17α-乙炔基雌二醇(人CYP3A的选择性抑制剂)抑制> 80%。 4.总体而言,这些数据支持CYP3A参与大鼠肝微粒体中Dg3和Dg2的裂解。酶代谢的Dg1仍有待确定。

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