异丙嗪
细胞色素P450
微粒体
组胺
药理学
CYP2D6型
化学
新陈代谢
组胺N-甲基转移酶
人肝
奎尼丁
酶
药物代谢
羟基化
体外
生物化学
组胺H1受体
CYP1A2
微粒体
CYP3A4型
生物
CYP2B6型
敌手
作者
Katsunori Nakamura,Tsuyoshi Yokoi,Kazuaki Inoue,Noriaki Shimada,Noriko Ohashi,Toshiyuki Kume,Tetsuya Kamataki
出处
期刊:Pharmacogenetics
[Lippincott Williams & Wilkins]
日期:1996-10-01
卷期号:6 (5): 449-457
被引量:81
标识
DOI:10.1097/00008571-199610000-00009
摘要
To determine which cytochrome P450 form is involved in the promethazine [10-(2-dimethylaminopropyl) phenothiazine] metabolism, in vitro analysis using human liver microsomes were performed. Promethazine was mainly biotransformed to ring-hydroxylated, S-oxidized and N-demethylated metabolites. The promethazine hydroxylase in human liver microsomes was inhibited by SKF-525A, propranolol, sparteine, quinidine and anti-CYP2D6 serum suggesting involvement of a P450 related to CYP2D6. Lineweaver-Burk plots for the hydroxylation, S-oxidation and N-demethylation indicated that the hydroxylation occurred with a low K(m) value in human liver microsomes. Microsomes from genetically-engineered human B-lymphoblastoid cells expressing CYP2D6 hydroxylated promethazine most efficiently as compared to other P450 forms, indicating that it was the principal P450 responsible for the metabolism of promethazine in human liver microsomes. The inhibition of CYP2D6-catalysed bufuralol 1'-hydroxylase by various histamine H3 antagonists including promethazine suggested that promethazine and some other histamine H1 antagonists could be inhibitors of this P450 in human liver microsomes.
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