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首页> 外文期刊>Journal of Pharmacy and Pharmacology >Identification of human cytochrome P450 isozymes involved in the metabolism of naftopidil enantiomers in vitro
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Identification of human cytochrome P450 isozymes involved in the metabolism of naftopidil enantiomers in vitro

机译:鉴定萘普地尔对映异构体代谢中涉及的人细胞色素P450同工酶

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Objectives Naftopidil (NAF) is a chiral compound with two enantiomers (R(+)-NAF and S(-)-NAF) and is used as a racemic mixture in clinical practice. This study aims to investigate the metabolism of NAF enantiomers in pooled human liver microsomes (HLMs) and cytochrome P450 isozymes (CYPs) involved in their metabolism.Methods Metabolism studies were conducted in vitro using HLMs. Specific chemical inhibitors and recombinant human CYPs were used to confirm that the CYPs contributed to the metabolism of NAF enantiomers.Key findings Three metabolites were found and characterized in the HLMs incubations from R(+)-NAF and S(-)-NAF, respectively. The major metabolic pathways of R(+)-NAF and S(-)-NAF were demethylation and hydroxylation. CYP2C9 and CYP2C19 inhibitors strongly inhibited R(+)-NAF metabolism, and CYP1A2, CYP2C8, CYP2D6 and CYP3A4/5 inhibitors moderately inhibited R(+)-NAF metabolism. CYP2C9 inhibitors strongly inhibited S(-)-NAF metabolism, arid CYP2C8, CYP2C19 and CYP3A4/5 inhibitors moderately inhibited S(-)-NAF metabolism. Consistent with the results of chemical inhibitors experiments, recombinant human CYP2C9 and CYP2C19 contributed greatly to R(+)-NAF metabolism, and CYP2C9 contributed greatly to S(-)-NAF metabolism. Conclusion Both R(+)-NAF and S(-)-NAF are metabolized to three metabolites in HLMs. CYP2C9 plays the most important role in the demethylation and hydroxylation of both NAF enantiomers, CYP2C19 is another major CYP isoform that is involved in R(+)-NAF metabolism.
机译:目的萘甲地尔(NAF)是具有两个对映异构体(R(+)-NAF和S(-)-NAF)的手性化合物,在临床实践中用作外消旋混合物。这项研究旨在研究NAF对映异构体在人肝微粒体(HLMs)和细胞色素P450同工酶(CYPs)参与代谢中的代谢。方法在HLMs的体外进行代谢研究。使用特定的化学抑制剂和重组人CYP来证实CYP有助于NAF对映异构体的代谢。关键发现在R(+)-NAF和S(-)-NAF的HLM孵育中分别发现和表征了三种代谢物。 。 R(+)-NAF和S(-)-NAF的主要代谢途径是去甲基化和羟基化。 CYP2C9和CYP2C19抑制剂强烈抑制R(+)-NAF代谢,CYP1A2,CYP2C8,CYP2D6和CYP3A4 / 5抑制剂适度抑制R(+)-NAF代谢。 CYP2C9抑制剂强烈抑制S(-)-NAF代谢,而CYP2C8,CYP2C19和CYP3A4 / 5抑制剂则适度抑制S(-)-NAF代谢。与化学抑制剂实验的结果一致,重组人CYP2C9和CYP2C19对R(+)-NAF代谢有很大贡献,而CYP2C9对S(-)-NAF代谢有很大贡献。结论R(+)-NAF和S(-)-NAF在HLM中均代谢为三种代谢物。 CYP2C9在两个NAF对映体的去甲基化和羟基化中起着最重要的作用,CYP2C19是另一种主要的CYP亚型,参与R(+)-NAF代谢。

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