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1-[5-(4-芳基苯氧基)烷基]-3-吡啶-4-基咪唑烷-2-酮衍生物的设计、合成及抗小RNA病毒活性

Design, synthesis, and antipicornavirus activity of 1-[5-(4-arylphenoxy)alkyl]-3-pyridin-4-ylimidazolidin-2-one derivatives.

作者信息

Chang Chih-Shiang, Lin Ying-Ting, Shih Shin-Ru, Lee Chung-Chi, Lee Yen-Chun, Tai Chia-Liang, Tseng Sung-Nien, Chern Jyh-Haur

机构信息

Division of Biotechnology and Pharmaceutical Research, National Health Research Institutes, 35 Keyan Road, Zhunan Town, Miaoli County 350, Taiwan, R.O.C.

出版信息

J Med Chem. 2005 May 19;48(10):3522-35. doi: 10.1021/jm050033v.

Abstract

A series of pyridylimidazolidinone derivatives was synthesized and tested in vitro against enterovirus 71 (EV71). On the basis of compound 33 (DBPR103), introduction of a methyl group at the 2- or 3-position of the linker between the imidazolidinone and the biphenyl resulted in markedly improved antiviral activity toward EV71 with IC(50) values of 5.0 nM (24b) and 9.3 nM (14a), respectively. Increasing the branched chain to propyl resulted in a progressive decrease in activity, while inserting different heteroatoms entirely rendered the compound only weakly active. The introduction of a bulky group (cyclohexyl, phenyl, or benzyl) led to loss of activity against EV71. The 4-chlorophenyl moiety in 14a was replaced with bioisosteric groups such as oxadiazole (28a-d) or tetrazole (32a,b), dramatically improving anti-EV71 activity and selectivity indices. Compounds 14a, 24b, 28b, 28d, and 32a exhibited a strong activity against lethal EV71, and no apparent cellular toxicity was observed. Three of the more potent imidazolidinone compounds, 14a, 28b, and 32b, were subjected to a large group of picornaviruses to determine their spectrum of antiviral activity.

摘要

合成了一系列吡啶基咪唑烷酮衍生物,并对其进行了抗肠道病毒71型(EV71)的体外测试。以化合物33(DBPR103)为基础,在咪唑烷酮与联苯之间的连接基的2位或3位引入甲基,导致对EV71的抗病毒活性显著提高,IC(50)值分别为5.0 nM(24b)和9.3 nM(14a)。将支链增加到丙基导致活性逐渐降低,而插入不同的杂原子则使化合物仅具有微弱的活性。引入大体积基团(环己基、苯基或苄基)导致对EV71的活性丧失。14a中的4-氯苯基部分被生物电子等排体基团如恶二唑(28a-d)或四唑(32a,b)取代,显著提高了抗EV71活性和选择性指数。化合物14a、24b、28b、28d和32a对致死性EV71表现出强大的活性,且未观察到明显的细胞毒性。对三种更有效的咪唑烷酮化合物14a、28b和32b进行了一大组小RNA病毒测试,以确定它们的抗病毒活性谱。

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