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羧酸酯酶1和2在人体内双炔失碳酯水解中的主要作用。

Predominant contributions of carboxylesterase 1 and 2 in hydrolysis of anordrin in humans.

作者信息

Jiang Jinfang, Chen Xiaoyan, Zhong Dafang

机构信息

a State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences , Shanghai , China and.

b University of Chinese Academy of Sciences , Beijing , China.

出版信息

Xenobiotica. 2018 May;48(5):533-540. doi: 10.1080/00498254.2017.1333658. Epub 2017 Jun 7.

DOI:10.1080/00498254.2017.1333658
PMID:28532270
Abstract

1. Anordrin (2α, 17α-diethynyl-A-nor-5α-androstane-2β, 17β-diol diproprionate) is post-coital contraceptive drug that is on the market in China for more than 30 years. This study aims to elucidate enzymes involved in anordrin hydrolysis, and to evaluate the significant role of carboxylesterases in anordrin hydrolysis in humans. 2. Human liver and intestinal microsomes, recombinant human carboxylesterase were selected as enzyme sources. In human liver microsomes, intrinsic clearance was 684 ± 83 μL/min/mg protein, which was considerably higher than the value of intestine microsomes (94.6 ± 13.3 μL/min/mg protein). Carboxylesterase (CES) 1 has more contribution than CES2 in human liver. 3. Inhibition studies were performed using representative esterase inhibitors to confirm esterase isoforms involved in anordrin hydrolysis. Simvastatin strongly inhibited hydrolytic process of anordrin in liver and intestine microsomes, with IC values of 10.9 ± 0.1 and 6.94 ± 0.03 μM, respectively. 4. The present study investigated for the first time hydrolytic enzyme phenotypes of anordrin. Anordrin is predominantly catalyzed by CES1 and CES2 to generate the main active metabolite, anordiol. Moreover, anordrin and its metabolite anordiol can be altered by esterase inhibitors, such as simvastatin, upon exposure in vivo.

摘要
  1. 双炔失碳酯(2α,17α - 二乙炔基 - A - 降 - 5α - 雄甾烷 - 2β,17β - 二醇二丙酸酯)是一种在中国上市超过30年的事后避孕药。本研究旨在阐明参与双炔失碳酯水解的酶,并评估羧酸酯酶在人体双炔失碳酯水解中的重要作用。2. 选择人肝微粒体、肠微粒体和重组人羧酸酯酶作为酶源。在人肝微粒体中,内在清除率为684±83μL/min/mg蛋白质,远高于肠微粒体的值(94.6±13.3μL/min/mg蛋白质)。羧酸酯酶(CES)1在人肝脏中的贡献比CES2更大。3. 使用代表性酯酶抑制剂进行抑制研究,以确认参与双炔失碳酯水解的酯酶同工型。辛伐他汀强烈抑制双炔失碳酯在肝微粒体和肠微粒体中的水解过程,其IC值分别为10.9±0.1和6.94±0.03μM。4. 本研究首次研究了双炔失碳酯的水解酶表型。双炔失碳酯主要由CES1和CES2催化生成主要活性代谢物双炔失碳醇。此外,双炔失碳酯及其代谢物双炔失碳醇在体内暴露后可被酯酶抑制剂如辛伐他汀改变。

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