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考虑到人羧酸酯酶1的底物识别能力,水溶性苯妥英前药的设计、合成及生物学评价

Design, synthesis and biological evaluation of water-soluble phenytoin prodrugs considering the substrate recognition ability of human carboxylesterase 1.

作者信息

Takahashi Masato, Lee Yeon Joo, Kanayama Teruhiko, Kondo Yusuke, Nishio Kazuki, Mukai Kota, Haba Masami, Hosokawa Masakiyo

机构信息

Faculty of Pharmacy, Chiba Institute of Science, 15-8. Shiomi-cho, Choshi, Chiba 288-0025, Japan.

Faculty of Pharmacy, Chiba Institute of Science, 15-8. Shiomi-cho, Choshi, Chiba 288-0025, Japan.

出版信息

Eur J Pharm Sci. 2020 Sep 1;152:105455. doi: 10.1016/j.ejps.2020.105455. Epub 2020 Jul 3.

Abstract

Human carboxylesterase 1 (hCES1) is a hydrolase that is mainly expressed in the liver and lung and plays the most important role in the metabolic activation of ester-type prodrugs. In this study, design, synthesis and evaluation of water-soluble phenytoin prodrugs were performed with consideration of the substrate recognition ability of hCES1. The phenytoin prodrugs were synthesized in two steps without column chromatography. It was confirmed that all prodrugs are efficiently converted to phenytoin in a human liver microsome (HLM) solution (up to 54.6 nmol/mg protein/min). Although some of the prodrugs were degraded in strongly basic solution, the solubility of all prodrugs was greater than that of phenytoin in buffer solutions at pH 7.4 and 8.3. Among the synthesized phenytoin prodrugs, the 3,3-dimethylglutarate prodrug was superior in terms of solubility and stability, and it showed solubility of 10 mg/mL or more (phenytoin: <0.1 mg/mL) in a solution of pH 8.3. It was also found that the 3,3-dimethylglutarate prodrug was selectively activated by hCES1 but not hCES2 or arylacetamidodeacetylase.

摘要

人羧酸酯酶1(hCES1)是一种水解酶,主要在肝脏和肺中表达,在酯型前药的代谢活化中起最重要作用。在本研究中,考虑到hCES1的底物识别能力,进行了水溶性苯妥英前药的设计、合成和评价。苯妥英前药分两步合成,无需柱色谱法。已证实所有前药在人肝微粒体(HLM)溶液中均能有效转化为苯妥英(高达54.6 nmol/mg蛋白/分钟)。虽然一些前药在强碱性溶液中会降解,但在pH 7.4和8.3的缓冲溶液中,所有前药 的溶解度均大于苯妥英。在合成的苯妥英前药中,3,3-二甲基戊二酸前药在溶解度和稳定性方面表现优异,在pH 8.3的溶液中其溶解度达到10 mg/mL或更高(苯妥英:<0.1 mg/mL)。还发现3,3-二甲基戊二酸前药可被hCES1选择性激活,但不能被hCES2或芳基乙酰胺脱乙酰酶激活。

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