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4,4'-二甲氧基-5,6,5',6'-二亚甲基二氧基联苯-2,2'-二羧酸二甲酯对细胞色素P450抑制作用的选择性及机制表征

Characterization of the selectivity and mechanism of cytochrome P450 inhibition by dimethyl-4,4'-dimethoxy-5,6,5',6'-dimethylenedioxybiphenyl-2,2'-dicarboxylate.

作者信息

Kim J Y, Baek M, Lee S, Kim S O, Dong M S, Kim B R, Kim D H

机构信息

Bioanalysis and Biotransformation Research Center, Korea Institute of Science and Technology, Chungryang, Seoul, Korea.

出版信息

Drug Metab Dispos. 2001 Dec;29(12):1555-60.

Abstract

In vitro studies with human liver microsomes and cytochrome P450 (P450) prototype substrates were performed to characterize the selectivity and mechanism of inhibition of P450 by dimethyl-4,4'-dimethoxy-5,6,5',6'-dimethylenedioxybiphenyl-2,2'-dicarboxylate (DDB). DDB was found to be a strong inhibitor of testosterone 6beta-hydroxylation activity (CYP3A4) with a K(i) value of 0.27 +/- 0.21 microM. At higher concentrations, DDB marginally inhibited caffeine N(3)-demethylation (CYP1A2), diclofenac 4'-hydroxylation (CYP2C9), and dextromethorphan O-demethylation (CYP2D6) activities, but this compound had no effect on CYP2A6-, CYP2C19-, and CYP2E1-mediated reactions. Spectral analysis indicated that the formation of metabolite-P450 complex having absorbance at 456 nm was concentration-dependent; 5 to 33% of the total P450 was complexed in rat and human liver microsomes after a 5-min incubation with DDB. In addition, microsomal incubations with DDB in the presence of NADPH resulted in a loss of spectral P450 content, which was restored after adding K(3)Fe(CN)(6). This complex formation resulted in a time-dependent loss of CYP3A-catalyzed marker activity (testosterone 6beta-hydroxylation) in human liver microsomes. The inhibition was only partially restored upon dialysis. These results collectively suggest that formation of a metabolite-CYP3A complex with DDB was responsible for the CYP3A-selective time-dependent loss of catalytic function of CYP3A.

摘要

利用人肝微粒体和细胞色素P450(P450)原型底物进行了体外研究,以表征4,4'-二甲氧基-5,6,5',6'-二亚甲基二氧基联苯-2,2'-二羧酸二甲酯(DDB)对P450的抑制选择性和机制。发现DDB是睾酮6β-羟化活性(CYP3A4)的强效抑制剂,K(i)值为0.27±0.21微摩尔。在较高浓度下,DDB对咖啡因N(3)-去甲基化(CYP1A2)、双氯芬酸4'-羟化(CYP2C9)和右美沙芬O-去甲基化(CYP2D6)活性有轻微抑制作用,但该化合物对CYP2A6-、CYP2C19-和CYP2E1介导的反应无影响。光谱分析表明,在456nm处有吸光度的代谢物-P450复合物的形成呈浓度依赖性;与DDB孵育5分钟后,大鼠和人肝微粒体中总P450的5%至33%形成了复合物。此外,在NADPH存在下用DDB进行微粒体孵育导致光谱P450含量损失,加入铁氰化钾(K(3)Fe(CN)(6))后可恢复。这种复合物的形成导致人肝微粒体中CYP3A催化的标记活性(睾酮6β-羟化)随时间依赖性丧失。透析后抑制作用仅部分恢复。这些结果共同表明,DDB与CYP3A形成的代谢物复合物是导致CYP3A选择性时间依赖性催化功能丧失的原因。

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