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Metabolism of (+)-fenchone by CYP2A6 and CYP2136 in human liver microsomes

机译:CYP2A6和CYP2136在人肝微粒体中代谢(+)-孕酮

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The in vitro metabolism of (+)-fenchone was examined in human liver microsomes and recombinant enzymes. Biotransformation of (+)-fenchone was investigated by gas chromatography-mass spectrometry. (+)-Fenchone was found to be oxidized to 6-exo-hydroxyfenchone, 6-endo-hydroxyfenchone and 10-hydroxyfenchone by human liver microsomal P450 enzymes. The formation of metabolite of (+)-fenchone was determined by relative abundance of mass fragments and retention time with GC. CYP2A6 and CYP2B6 in human liver microsomes were major enzymes involved in the hydroxylation of (+)-fenchone, based on the following lines of evidence. First, of eleven recombinant human P450 enzymes tested, CYP2A6 and CYP2B6 catalyzed oxidation of (+)-fenchone. Second, oxidation of (+)-fenchone was inhibited by thioTEPA, (+)-menthofuran anti-CYP2A6 and anti-CYP2B6 antibodies. Finally, there was a good correlation between CYP2A6, CYP2B6 contents and (+)-fenchone hydroxylation activities in liver microsomes of 8 human samples.
机译:在人肝微粒体和重组酶中检测了(+)-富琴酮的体外代谢。通过气相色谱-质谱法研究了(+)-富琴酮的生物转化。发现(+)-Fenchone被人肝微粒体P450酶氧化为6-exo-羟基孕酮,6--endo-羟基孕酮和10-羟基孕酮。通过质量碎片的相对丰度和GC的保留时间来确定(+)-甲酮代谢产物的形成。根据以下证据,人肝微粒体中的CYP2A6和CYP2B6是参与(+)-孕酮羟基化的主要酶。首先,在测试的十一种重组人P450酶中,CYP2A6和CYP2B6催化了(+)-甲睾酮的氧化。其次,thioTEPA,(+)-menthofuran抗CYP2A6和抗CYP2B6抗体抑制了(+)-孕酮的氧化。最终,CYP2A6,CYP2B6含量与8个人体样本的肝微粒体中的(+)-富琴酮羟化活性之间存在良好的相关性。

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