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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Synthesis, cytotoxicity and antiviral evaluation of new series of imidazo[4,5-g]quinoline and pyrido[2,3-g]quinoxalinone derivatives
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Synthesis, cytotoxicity and antiviral evaluation of new series of imidazo[4,5-g]quinoline and pyrido[2,3-g]quinoxalinone derivatives

机译:新系列咪唑并[4,5-g]喹啉和吡啶并[2,3-g]喹喔啉酮衍生物的合成,细胞毒性和抗病毒性评价

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Linear aromatic N-tricyclic compounds with promising antiviral activity and minimal cytotoxicity were prepared and analyzed in the last years. Specifically, the pyrido[2,3-g]quinoxalinone nucleus was found endowed with high potency against several pathogenic RNA viruses as etiological agents of important veterinary and human pathologies. Following our research program on new antiviral agents we have designed, synthesized and assayed new series of imidazo[4,5-g]quinoline and pyrido[2,3-g]quinoxalinone derivatives. Lead compounds 1-4 were further modified to enhance their antiviral activity and reduce their cytotoxicity. Thus, different substituents were introduced on N atom at position 1 or the 0 atom at position 2 of the leads; contextually, several groups were inserted on the nitrogen atom at position 7 of diaminoquinoline intermediates. Title compounds were tested in cell-based assays for cytotoxicity and antiviral activity against RNA virus families containing single-stranded (either positive-sense (ssRNA+) or negative-sense (ssRNA-)), and double-stranded genomes (dsRNA), and against two representatives of DNA virus families. Some derivatives emerged as potential leads for further development as antiviral agents against some viruses of public health significance, such as RSV, Reo, BVDV and HCV. Particularly, compounds 4, 11b, 11c, 13c, 15a,18 and 21 resulted active against BVDV at concentrations ranging from 1.3 to 5 mu M. Compound 21 was also evaluated for its activity on the BVDV RdRp. Compound 4 was also tested as potential anti-HCV compound in a subgenomic replication assay. Molecular simulation results provided a molecular rationale for the anti-BVDV activity of these compounds. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:在最近几年中,制备并分析了具有良好抗病毒活性和最小细胞毒性的线性芳族N-三环化合物。具体而言,发现吡啶并[2,3-g]喹喔啉酮核具有作为几种重要的兽医和人类病理病原体的多种致病性RNA病毒的高效力。按照我们对新抗病毒药的研究计划,我们设计,合成和测定了新的咪唑并[4,5-g]喹啉和吡啶并[2,3-g]喹喔啉酮衍生物系列。进一步修饰了铅化合物1-4,以增强其抗病毒活性并降低其细胞毒性。因此,在引线的位置1的N原子或位置2的0原子上引入了不同的取代基;在上下文中,在二氨基喹啉中间体的7位氮原子上插入了几个基团。在基于细胞的测定中测试了标题化合物对含有单链(正链(ssRNA +)或负链(ssRNA-))和双链基因组(dsRNA)的RNA病毒家族的细胞毒性和抗病毒活性,并且反对DNA病毒家族的两名代表。一些衍生物作为抗病毒剂针对某些具有公共卫生意义的病毒(如RSV,Reo,BVDV和HCV)的抗病毒剂,成为进一步开发的潜在先导。特别地,化合物4、11b,11c,13c,15a,18和21在1.3至5μM的浓度范围内对BVDV具有活性。还评估了化合物21对BVDV RdRp的活性。在亚基因组复制试验中,还测试了化合物4作为潜在的抗HCV化合物。分子模拟结果为这些化合物的抗BVDV活性提供了分子原理。 (C)2015 Elsevier Masson SAS。版权所有。

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