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FV - 100:迄今为止报道的最有效且最具选择性的抗水痘带状疱疹病毒药物。

FV-100: the most potent and selective anti-varicella zoster virus agent reported to date.

作者信息

Migliore Marco

机构信息

School of Chemistry, University of Leeds, Leeds, UK.

出版信息

Antivir Chem Chemother. 2010 Jan 5;20(3):107-15. doi: 10.3851/IMP1472.

DOI:10.3851/IMP1472
PMID:20054098
Abstract

Bicyclic aryl furano pyrimidines represent the most potent anti-varicella zoster virus (VZV) agents reported to date. Lead compounds have 50% effective concentration (EC(50)) values in vitro that are in the subnanomolar range and selectivity index values that exceed 1 million. They have an absolute requirement for VZV thymidine kinase and most likely act as their phosphate forms. Some structural modification (such as aryl substitution in the base moiety) is tolerated, whereas little sugar modification is acceptable. The Cf1743 compound has proved to be significantly more potent than all reference anti-VZV compounds, as measured either by inhibition of infectious virus particles and/or viral DNA production; however, the high lipophilicity and very low water solubility of this compound gives poor oral bioavailability (<14%). Use of the modified cyclodextrin captisol and the synthesis of the 5'-monophosphate prodrug of Cf1743 has significantly improved water solubility, but does not give any enhancement in oral bioavailability. By contrast, the synthesis of the ether series does not give any further improvement in terms of solubility. The most promising prodrug to emerge to date is the hydrochloric salt of the 5'-valyl-ester, designated as FV-100. Its uptake into cells has been studied using fluorescent microscopy and biological assays, which have indicated that the compound is efficiently taken up by the cells after a short period of incubation.

摘要

双环芳基呋喃嘧啶是迄今为止报道的最有效的抗水痘带状疱疹病毒(VZV)药物。先导化合物在体外的50%有效浓度(EC50)值处于亚纳摩尔范围内,选择性指数值超过100万。它们对VZV胸苷激酶有绝对需求,最有可能以其磷酸盐形式发挥作用。一些结构修饰(如碱基部分的芳基取代)是可以接受的,而很少有糖修饰是可接受的。Cf1743化合物已被证明比所有参考抗VZV化合物的效力显著更高,这是通过抑制感染性病毒颗粒和/或病毒DNA产生来衡量的;然而,该化合物的高亲脂性和极低的水溶性导致口服生物利用度较差(<14%)。使用修饰的环糊精Captisol和Cf1743的5'-单磷酸前药的合成显著提高了水溶性,但口服生物利用度没有任何提高。相比之下,醚系列的合成在溶解度方面没有进一步改善。迄今为止出现的最有前景的前药是5'-缬氨酸酯的盐酸盐,命名为FV-100。已使用荧光显微镜和生物学测定法研究了其进入细胞的情况,结果表明该化合物在短时间孵育后能被细胞有效摄取。

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