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人肝微粒体中参与西酞普兰对映体 N-去甲基化的三种细胞色素 P450 同工酶的鉴定。

Identification of three cytochrome P450 isozymes involved in N-demethylation of citalopram enantiomers in human liver microsomes.

作者信息

Rochat B, Amey M, Gillet M, Meyer U A, Baumann P

机构信息

Unité de Biochimie et Psychopharmacologie Clinique, Département Universitaire de Psychiatrie Adulte, Prilly-Lausanne, Switzerland.

出版信息

Pharmacogenetics. 1997 Feb;7(1):1-10. doi: 10.1097/00008571-199702000-00001.

Abstract

Using in vitro techniques, the present study demonstrates that CYP2D6, and 3A4 are involved in N-demethylation of citalopram (CIT) enantiomers. Human liver microsome incubations performed with specific inhibitors of these three CYP isozymes have shown up to 60% inhibition of demethylcitalopram production. cDNA expressed human cytochrome P-450 3A4, 2C19 and 2D6 isozymes, but not CYP1A2, were identified to be involved in N-demethylation of CIT enantiomers. Kinetics using cDNA expressed CYP2C19 and CYP3A4 show K(m) values in the same range: 198 microM, 211 microM for CYP2C19 and 169 microM, 163 microM for CYP3A4 for S- and R-CIT demethylation, respectively. In contrast, kinetics using cDNA expressed CYP 2D6 show a K(m) of 18 microM and 22 microM for S- and R-CIT demethylation, respectively. Nevertheless, kinetics using cDNA expressed CYP2C19 and 3A4 have a range of Vmax values ten times higher than that of CYP2D6. For this reason, intrinsic clearance values (Vmax/K(m)) for S- and R-CIT were within a small range for these three isozymes: 0.25 to 0.39 microliter h-1 x pmol-1 of CYP. CYP2D6 has an opposite stereoselectivity in the biotransformation of CIT enantiomers than CYP2C19 and 3A4; the S/R ratios of the intrinsic clearance were 0.71, 1.57 and 1.37, respectively. Taking into account that CYP isozymes are expressed at various levels, CYP2D6, which is expressed at lower levels than CYP2C19 and CYP3A4, plays a minor role in the biotransformation of CIT enantiomers. These results confirm that the use of cDNA expressed CYP isozymes is a potent tool for the measurement of kinetic constants and help to predict clearance modifications of CIT enantiomers, especially in poor metabolizers of mephenytoin (with a CYP2C19 deficiency) or patients comedicated with potent CYP2C19 or 3A4 inhibitor(s). For instance, fluvoxamine (100 microM) inhibits CIT N-demethylation by 64% in microsomes.

摘要

本研究采用体外技术证明,CYP2D6和3A4参与了西酞普兰(CIT)对映体的N-去甲基化反应。用这三种CYP同工酶的特异性抑制剂进行的人肝微粒体孵育实验表明,去甲基西酞普兰生成的抑制率高达60%。已确定,cDNA表达的人细胞色素P-450 3A4、2C19和2D6同工酶参与了CIT对映体的N-去甲基化反应,而CYP1A2则未参与。使用cDNA表达的CYP2C19和CYP3A4进行的动力学研究表明,其米氏常数(K(m))值处于同一范围:对于S-和R-CIT的去甲基化反应,CYP2C19的K(m)值分别为198 microM和211 microM,CYP3A4的K(m)值分别为169 microM和163 microM。相比之下,使用cDNA表达的CYP 2D6进行的动力学研究表明,对于S-和R-CIT的去甲基化反应,其K(m)值分别为18 microM和22 microM。然而,使用cDNA表达的CYP2C19和3A4进行的动力学研究得到的最大反应速率(Vmax)值范围比CYP2D6高10倍。因此,这三种同工酶的S-和R-CIT的内在清除率值(Vmax/K(m))处于较小范围:0.25至0.39微升·小时-1·pmol-1 CYP。与CYP2C19和3A4相比,CYP2D6在CIT对映体的生物转化中具有相反的立体选择性;内在清除率的S/R比值分别为0.71、1.57和1.37。考虑到CYP同工酶的表达水平各不相同,CYP2D6的表达水平低于CYP2C19和CYP3A4,因此在CIT对映体的生物转化中起次要作用。这些结果证实,使用cDNA表达的CYP同工酶是测量动力学常数的有效工具,有助于预测CIT对映体清除率的变化,尤其是在美芬妥因代谢不良者(存在CYP2C19缺陷)或同时服用强效CYP2C19或3A4抑制剂的患者中。例如,氟伏沙明(100 microM)可使微粒体中CIT的N-去甲基化反应抑制64%。

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