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在人肝微粒体中,CYP1A2在萘丁美酮代谢为活性代谢物6-甲氧基-2-萘乙酸的过程中起主要作用。

A predominate role of CYP1A2 for the metabolism of nabumetone to the active metabolite, 6-methoxy-2-naphthylacetic acid, in human liver microsomes.

作者信息

Turpeinen Miia, Hofmann Ute, Klein Kathrin, Mürdter Thomas, Schwab Matthias, Zanger Ulrich M

机构信息

Dr. Margarete Fischer-Bosch Institute of Clinical Pharmacology, Auerbachstrasse 112, D-70376 Stuttgart, Germany.

出版信息

Drug Metab Dispos. 2009 May;37(5):1017-24. doi: 10.1124/dmd.108.025700. Epub 2009 Feb 9.

DOI:10.1124/dmd.108.025700
PMID:19204080
Abstract

Nabumetone, a widely used nonsteroidal anti-inflammatory drug, requires biotransformation into 6-methoxy-2-naphthylacetic acid (6-MNA), a close structural analog to naproxen, to achieve its analgesic and anti-inflammatory effects. Despite its wide use, the enzymes involved in metabolism have not been identified. In the present study, several in vitro approaches were used to identify the cytochrome P450 (P450) enzyme(s) responsible for 6-MNA formation. In human liver microsomes (HLMs) 6-MNA formation displayed monophasic Michaelis-Menten kinetics with apparent K(m) and V(max) values (mean +/- S.D.) of 75.1 +/- 15.3 microM and 1304 +/- 226 pmol/min/mg protein, respectively, and formation rate of 6-MNA varied approximately 5.5-fold (179-983 pmol/min/mg protein). 6-MNA activity correlated strongly with both CYP1A2-mediated phenacetin O-deethylation activity and CYP1A2 protein content (r = 0.85 and 0.74, respectively; p < 0.0001 for both). Additional correlations were found with model activities of CYP2C19 and CYP3A4. Of 11 cDNA-expressed recombinant P450s used, recombinant CYP1A2 was the major form catalyzing the 6-MNA formation with an apparent K(m) of 45 microM and V(max) of 8.7 pmol/min/pmol P450. Minor fractions were catalyzed by recombinant P450s CYP1A1, CYP2B6, CYP2C19, CYP2D6, and CYP2E1. Experiments with P450-selective chemical inhibitors and monoclonal anti-P450 antibodies showed that furafylline, a mechanism-based inhibitor CYP1A2, and anti-CYP1A2 antibody markedly inhibited 6-MNA formation, whereas inhibitors for other P450s did not show significant inhibitory effects. Taken together, these studies indicate that the formation of the active metabolite of nabumetone, 6-MNA, is predominantly catalyzed by CYP1A2 in HLMs with only minor contribution of other P450s.

摘要

萘丁美酮是一种广泛使用的非甾体抗炎药,需要经生物转化生成6-甲氧基-2-萘乙酸(6-MNA)才能发挥其镇痛和抗炎作用,6-MNA是萘普生的一种结构类似物。尽管萘丁美酮应用广泛,但参与其代谢的酶尚未明确。在本研究中,采用了多种体外方法来鉴定负责生成6-MNA的细胞色素P450(P450)酶。在人肝微粒体(HLM)中,6-MNA的生成呈现单相米氏动力学,其表观K(m)和V(max)值(均值±标准差)分别为75.1±15.3μM和1304±226 pmol/min/mg蛋白,6-MNA的生成速率变化约5.5倍(179 - 983 pmol/min/mg蛋白)。6-MNA活性与CYP1A2介导的非那西丁O-脱乙基活性及CYP1A2蛋白含量均密切相关(r分别为0.85和0.74;两者p均<0.0001)。还发现与CYP2C19和CYP3A4的模型活性存在相关性。在所使用的11种cDNA表达的重组P450中,重组CYP1A2是催化6-MNA生成的主要形式,其表观K(m)为45μM,V(max)为8.7 pmol/min/pmol P450。少量部分由重组P450 CYP1A1、CYP2B6、CYP2C19、CYP2D6和CYP2E1催化。使用P450选择性化学抑制剂和单克隆抗P450抗体进行的实验表明,基于机制的CYP1A2抑制剂呋拉茶碱和抗CYP1A2抗体可显著抑制6-MNA的生成,而其他P450的抑制剂未显示出明显的抑制作用。综上所述,这些研究表明,萘丁美酮的活性代谢产物6-MNA在HLM中的生成主要由CYP1A2催化,其他P450的贡献较小。

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