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细胞色素P-450和含黄素单加氧酶对人肝微粒体代谢阿苯达唑的相对贡献。

Relative contribution of cytochromes P-450 and flavin-containing monoxygenases to the metabolism of albendazole by human liver microsomes.

作者信息

Rawden H C, Kokwaro G O, Ward S A, Edwards G

机构信息

Department of Pharmacology and Therapeutics, The University of Liverpool, Ashton Street Medical School, Liverpool, UK.

出版信息

Br J Clin Pharmacol. 2000 Apr;49(4):313-22. doi: 10.1046/j.1365-2125.2000.00170.x.

Abstract

AIMS

Albendazole (ABZ; methyl 5-propylthio-1H-benzimidazol-2-yl carbamate) is a broad spectrum anthelmintic whose activity resides both in the parent compound and its sulphoxide metabolite (ABS). There are numerous reports of ABZ metabolism in animals but relatively few in humans. We have investigated the sulphoxidation of ABZ in human liver microsomes and recombinant systems.

METHODS

The specific enzymes involved in the sulphoxidation of ABZ were determined by a combination of approaches; inhibition with an antiserum directed against cytochrome P450 reductase, the effect of selective chemical inhibitors on ABZ sulphoxidation in human liver microsomes, the capability of expressed CYP and FMO to mediate the formation of ABS, regression analysis of the rate of metabolism of ABZ to ABS in human liver microsomes against selective P450 substrates and regression analysis of the rate of ABS sulphoxidation against CYP expression measured by Western blotting.

RESULTS

Comparison of Vmax values obtained following heat inactivation (3min at 45 degrees C) of flavin monoxygenases (FMO), chemical inhibition of FMO with methimazole and addition of an antiserum directed against cytochrome P450 reductase indicate that FMO and CYP contribute approximately 30% and 70%, respectively, to ABS production in vitro. Comparison of CLint values suggests CYP is a major contributor in vivo. A significant reduction in ABZ sulphoxidation (n = 3) was seen with ketoconazole (CYP3 A4; 32-37%), ritonavir (CYP3 A4: 34-42%), methimazole (FMO: 28-49%) and thioacetamide (FMO; 32-35%). Additive inhibition with ketoconazole and methimazole was 69 +/- 8% (n = 3). ABS production in heat - treated microsomes (3 min at 45 degrees C) correlated significantly with testosterone 6beta-hydroxylation (CYP3A4; P < 0.05) and band intensities on Western blots probed with an antibody selective for 3A4 (P < 0.05). Recombinant human CYP3 A4, CYP1A2 and FMO3 produced ABS in greater quantities than control microsomes, with those expressing CYP3A4 producing threefold more ABS than those expressing CYP1A2. Kinetic studies showed the Km values obtained with both CYP3A4 and FMO3 were similar.

CONCLUSIONS

We conclude that the production of ABS in human liver is mediated via both FMO and CYP, principally CYP3A4, with the CYP component being the major contributor.

摘要

目的

阿苯达唑(ABZ;5-丙硫基-1H-苯并咪唑-2-基氨基甲酸甲酯)是一种广谱驱虫药,其活性存在于母体化合物及其亚砜代谢物(ABS)中。关于ABZ在动物体内代谢的报道众多,但在人体内的报道相对较少。我们研究了ABZ在人肝微粒体和重组系统中的硫氧化作用。

方法

通过多种方法相结合来确定参与ABZ硫氧化的特定酶;用针对细胞色素P450还原酶的抗血清进行抑制,选择性化学抑制剂对人肝微粒体中ABZ硫氧化的影响,表达的CYP和FMO介导ABS形成的能力,人肝微粒体中ABZ代谢为ABS的速率与选择性P450底物的回归分析,以及ABS硫氧化速率与通过蛋白质免疫印迹法测量的CYP表达的回归分析。

结果

对黄素单加氧酶(FMO)进行热灭活(45℃3分钟)、用甲巯咪唑对FMO进行化学抑制以及添加针对细胞色素P450还原酶的抗血清后获得的Vmax值比较表明,在体外,FMO和CYP对ABS产生的贡献分别约为30%和70%。CLint值的比较表明CYP在体内是主要贡献者。酮康唑(CYP3A4;32 - 37%)、利托那韦(CYP3A4:34 - 42%)、甲巯咪唑(FMO:28 - 49%)和硫代乙酰胺(FMO;32 - 35%)可使ABZ硫氧化显著降低(n = 3)。酮康唑和甲巯咪唑的联合抑制为69±8%(n = 3)。热处理微粒体(45℃3分钟)中ABS的产生与睾酮6β-羟化(CYP3A4;P < 0.05)以及用针对3A4的选择性抗体进行蛋白质免疫印迹检测的条带强度显著相关(P < 0.05)。重组人CYP3A4、CYP1A2和FMO3产生的ABS比对照微粒体更多,表达CYP3A4的微粒体产生的ABS比表达CYP1A2的微粒体多三倍。动力学研究表明,CYP3A4和FMO3获得的Km值相似。

结论

我们得出结论,人肝中ABS的产生是由FMO和CYP介导的,主要是CYP

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引用本文的文献

本文引用的文献

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The metabolism of benzimidazole anthelmintics.苯并咪唑驱虫药的代谢
Parasitol Today. 1990 Apr;6(4):115-24. doi: 10.1016/0169-4758(90)90228-v.
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Parasitol Today. 1990 Apr;6(4):106. doi: 10.1016/0169-4758(90)90225-s.
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Involvement of multiple cytochrome P450 isoforms in naproxen O-demethylation.
Eur J Clin Pharmacol. 1997;52(4):293-8. doi: 10.1007/s002280050293.

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