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体外对人肝微粒体中CYP2B6催化的安非他酮羟基化反应的选择性抑制作用。

Selective inhibition of CYP2B6-catalyzed bupropion hydroxylation in human liver microsomes in vitro.

作者信息

Turpeinen Miia, Nieminen Riina, Juntunen Tarja, Taavitsainen Päivi, Raunio Hannu, Pelkonen Olavi

机构信息

Department of Pharmacology and Toxicology, P.O. Box 5000, 90014 University of Oulu, Oulun Yliopisto, Finland.

出版信息

Drug Metab Dispos. 2004 Jun;32(6):626-31. doi: 10.1124/dmd.32.6.626.

Abstract

Some inhibitory agents against CYP2B6 have been reported, but none of these has been extensively characterized or compared with others, as to the potency and selectivity of inhibition toward CYP2B6. The goal of this work was to find a selective and potent chemical in vitro inhibitor toward CYP2B6 using bupropion hydroxylation as a model reaction. At the initial screening of more than 30 substances, ticlopidine, triethylenethiophosphoramide (thioTEPA), metyrapone, xanthate C8, and benzylisothiocyanate displayed IC(50) values of <10 microM and were selected for a more detailed analysis. Metyrapone, xanthate C8, and benzylisothiocyanate inhibited several other cytochrome P450 activities rather effectively, some of them even more potently than CYP2B6, and consequently are unsuitable as CYP2B6-selective probes. Ticlopidine and thioTEPA were the most potent inhibitors of bupropion hydroxylation with K(i) values of 0.2 and 2.8 microM, respectively. The inhibition type of ticlopidine was found to be mixed type, with a component of mechanism-based inhibition, whereas thioTEPA inhibited CYP2B6 in a competitive manner. In addition to CYP2B6, ticlopidine also inhibited both mephenytoin 4-hydroxylation (CYP2C19) (IC(50), 2.7 microM) and dextromethorphan O-demethylation (CYP2D6) (IC(50), 4.4 microM). For thioTEPA the next sensitive P450 activity after CYP2B6 was coumarin 7-hydroxylation (IC(50), 256 microM). Thus, although both compounds proved to be relatively potent inhibitors of CYP2B6, thioTEPA was about 2 orders of magnitude more selective than ticlopidine. Thus, thioTEPA is a drug of choice when high CYP2B6 selectivity among major P450 enzymes is required. Ticlopidine is a useful alternative under a controlled experimental setup and when higher potency is needed.

摘要

据报道,有一些针对CYP2B6的抑制剂,但就对CYP2B6抑制的效力和选择性而言,这些抑制剂均未得到广泛的特性描述或相互比较。本研究的目的是利用安非他酮羟基化作为模型反应,寻找一种对CYP2B6具有选择性且强效的化学体外抑制剂。在对30多种物质进行初步筛选时,噻氯匹定、三乙烯硫代磷酰胺(硫替派)、甲吡酮、辛基黄原酸盐和苄基异硫氰酸酯的IC(50)值<10微摩尔,被选用于更详细的分析。甲吡酮、辛基黄原酸盐和苄基异硫氰酸酯能相当有效地抑制其他几种细胞色素P450活性,其中一些甚至比CYP2B6更有效,因此不适合作CYP2B6选择性探针。噻氯匹定和硫替派是安非他酮羟基化最有效的抑制剂,其K(i)值分别为0.2和2.8微摩尔。发现噻氯匹定的抑制类型为混合型,伴有基于机制的抑制成分,而硫替派以竞争性方式抑制CYP2B6。除CYP2B6外,噻氯匹定还抑制美芬妥因4-羟基化(CYP2C19)(IC(50),2.7微摩尔)和右美沙芬O-去甲基化(CYP2D6)(IC(50),4.4微摩尔)。对于硫替派,仅次于CYP2B6的下一个敏感P450活性是香豆素7-羟基化(IC(50),256微摩尔)。因此,尽管这两种化合物均被证明是相对强效的CYP2B6抑制剂,但硫替派的选择性比噻氯匹定高约2个数量级。因此,当需要在主要P450酶中具有高CYP2B6选择性时,硫替派是首选药物。在可控的实验设置下且需要更高效力时,噻氯匹定是一种有用的替代药物。

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