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9-[2-(膦酰甲氧基)乙基]腺嘌呤(PMEA)的双(S-酰基-2-硫代乙基)酯衍生物作为具有改善口服生物利用度的潜在PMEA前药的合成、体外抗病毒评估及稳定性研究

Synthesis, in vitro antiviral evaluation, and stability studies of bis(S-acyl-2-thioethyl) ester derivatives of 9-[2-(phosphonomethoxy)ethyl]adenine (PMEA) as potential PMEA prodrugs with improved oral bioavailability.

作者信息

Benzaria S, Pélicano H, Johnson R, Maury G, Imbach J L, Aubertin A M, Obert G, Gosselin G

机构信息

Laboratoire de Chimie Bioorganique, UMR CNRS-USTL, Université Montpellier II, France.

出版信息

J Med Chem. 1996 Dec 6;39(25):4958-65. doi: 10.1021/jm960289o.

Abstract

A new series of hitherto unknown 9-[2-(phosphonomethoxy)ethyl]adenine (PMEA) phosphonodiester derivatives incorporating carboxyesterase-labile S-acyl-2-thioethyl (SATE) moieties as transient phosphonate-protecting groups was prepared in an attempt to increase the oral bioavailability of the antiviral agent PMEA. We report here a direct comparison of the in vitro anti-HIV and anti-HSV activities as well as the in vitro stability between the bis(SATE) derivatives and the already known PMEA prodrugs, namely, bis[(pivaloyloxy)methyl (POM)]- and bis[dithiodiethyl (DTE)]PMEA. All of the compounds tested showed an enhanced in vitro antiviral activity compared to the parent PMEA. The bis(POM)- and bis(tBu-SATE)PMEA derivatives were the most effective. However, striking differences between these two compounds were found during the stability studies. In particular the bis(tBu-SATE)PMEA was found to be more stable than bis(POM)PMEA in human gastric juice and human serum, suggesting it could be considered as a promising candidate for further in vivo development.

摘要

为提高抗病毒药物9-[2-(膦酰甲氧基)乙基]腺嘌呤(PMEA)的口服生物利用度,制备了一系列新的、迄今未知的PMEA膦酸二酯衍生物,这些衍生物引入了作为瞬态膦酸酯保护基团的羧酸酯酶不稳定的S-酰基-2-硫代乙基(SATE)部分。我们在此报告双(SATE)衍生物与已知的PMEA前药,即双[(新戊酰氧基)甲基(POM)]-和双[二硫代二乙基(DTE)]PMEA之间的体外抗HIV和抗HSV活性以及体外稳定性的直接比较。所有测试的化合物与母体PMEA相比均显示出增强的体外抗病毒活性。双(POM)-和双(叔丁基-SATE)PMEA衍生物最有效。然而,在稳定性研究中发现这两种化合物之间存在显著差异。特别是发现双(叔丁基-SATE)PMEA在人胃液和人血清中比双(POM)PMEA更稳定,这表明它可被视为进一步体内开发的有前途的候选物。

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