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首页> 外文期刊>Psychopharmacology >Nefazodone, meta-chlorophenylpiperazine, and their metabolites in vitro: cytochromes mediating transformation, and P450-3A4 inhibitory actions.
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Nefazodone, meta-chlorophenylpiperazine, and their metabolites in vitro: cytochromes mediating transformation, and P450-3A4 inhibitory actions.

机译:奈法唑酮,间氯苯基哌嗪及其体外代谢物:介导转化的细胞色素和P450-3A4抑制作用。

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摘要

RATIONALE: Understanding of the mechanisms of biotransformation of antidepressant drugs, and of their capacity to interact with other medications, is of direct relevance to rational clinical psychopharmacology. OBJECTIVES: To determine the human cytochromes P450 mediating the metabolism of nefazodone, and the inhibitory activity of nefazodone and metabolites versus human P450-3A. METHODS: Biotransformation of nefazodone to its metabolic products, and of meta-chlorophenylpiperazine (mCPP) to para-hydroxy-mCPP, was studied in vitro using human liver microsomes and heterologously expressed human cytochromes. Nefazodone and metabolites were also tested as inhibitors of alprazolam hydroxylation, reflecting activity of cytochrome P450-3A isoforms. RESULTS: mCPP and two hydroxylated derivatives were the principal metabolites formed from nefazodone by liver microsomes. Metabolite production was strongly inhibited by ketoconazole or troleandomycin (relatively specific P450-3A inhibitors), and by an anti-P450-3A antibody. Only heterologously expressed human P450-3A4 mediated formation of nefazodone metabolites from the parent compound. Nefazodone, hydroxy-nefazodone, and para-hydroxy-nefazodone were strong 3A inhibitors, being more potent than norfluoxetine and fluvoxamine, but less potent than ketoconazole. The triazoledione metabolite and mCPP had weak or negligible 3A-inhibiting activity. Formation of parahydroxy-mCPP from mCPP was mediated by heterologously expressed P450-2D6; in liver microsomes, the reaction was strongly inhibitable by quinidine, a relatively specific 2D6 inhibitor. CONCLUSION: The complex parallel biotransformation pathways of nefazodone are mediated mainly by human cytochrome P450-3A, whereas clearance of mCPP is mediated by P450-2D6. Nefazodone and two of its hydroxylated metabolites are potent 3A inhibitors, accounting for pharmacokinetic drug interactions of nefazodone with 3A substrate drugs such as triazolam and alprazolam.
机译:理由:了解抗抑郁药的生物转化机制及其与其他药物相互作用的能力,与合理的临床心理药理学直接相关。目的:确定介导奈法唑酮代谢的人细胞色素P450,以及奈法唑酮和代谢产物对人P450-3A的抑制活性。方法:使用人肝微粒体和异源表达的人细胞色素,体外研究了奈法唑酮向其代谢产物的生物转化,以及间氯苯基哌嗪(mCPP)向对羟基-mCPP的生物转化。还测试了奈法唑酮和代谢产物作为阿普唑仑羟基化的抑制剂,反映了细胞色素P450-3A亚型的活性。结果:奈法唑酮由肝微粒体形成的主要代谢产物为mCPP和两种羟基化衍生物。酮康唑或曲安霉素(相对特异性的P450-3A抑制剂)和抗P450-3A抗体强烈抑制了代谢产物的产生。仅异源表达的人P450-3A4介导了来自母体化合物的奈法唑酮代谢物的形成。奈法唑酮,羟基奈法唑酮和对羟基奈法唑酮是强3A抑制剂,比去氟西汀和氟伏沙明更有效,但不如酮康唑有效。三唑二酮代谢物和mCPP具有弱或可忽略的3A抑制活性。由mCPP形成对羟基-mCPP是由异源表达的P450-2D6介导的。在肝脏微粒体中,该反应可被奎尼丁(一种相对特异性的2D6抑制剂)强烈抑制。结论:奈法唑酮复杂的平行生物转化途径主要由人细胞色素P450-3A介导,而对mCPP的清除则由P450-2D6介导。奈法唑酮及其两种羟基化代谢产物是有效的3A抑制剂,说明奈法唑酮与3A底物药物(如三唑仑和阿普唑仑)的药代动力学药物相互作用。

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