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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Design and expeditious synthesis of organosilanes as potent antivirals targeting multidrug-resistant influenza A viruses
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Design and expeditious synthesis of organosilanes as potent antivirals targeting multidrug-resistant influenza A viruses

机译:设计和迅速合成有机硅烷作为靶向多药抗性流感病毒的有效抗病毒

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摘要

The efficacy of current influenza vaccines and small molecule antiviral drugs is curtailed by the emerging of multidrug-resistant influenza viruses. As resistance to the only FDA-approved oral influenza antiviral, oseltamivir (Tamiflu), continues to rise, there is a clear need to develop the next-generation of antiviral drugs. Since more than 95% of current circulating influenza A viruses carry the S31N mutation in their M2 genes, the AM2-S31N mutant proton channel represents an attractive target for the development of broad-spectrum antivirals. In this study we report the design and synthesis of the first class of organosilanes that have potent antiviral activity against a panel of human clinical isolates of influenza A viruses, including viruses that are resistant to amantadine, oseltamivir, or both. (C) 2017 Elsevier Masson SAS. All rights reserved.
机译:通过多药物抗性流感病毒的出现缩短了流感流感疫苗和小分子抗病毒药物的疗效。 由于抗FDA批准的口服流感抗病毒,奥斯特拉米维尔(Tamiflu)继续上升,明确需要开发下一代抗病毒药物。 由于超过95%的电流循环流感病毒在其M2基因中携带S31N突变,因此AM2-S31N突变体质子通道代表了广谱抗病毒的发展的吸引力靶标。 在这项研究中,我们报告了第一类有机硅烷的设计和合成,其对流感病毒的人类临床分离株小组具有有效的抗病毒活性,包括对含氨酰胺,奥司他韦或两者的病毒。 (c)2017年Elsevier Masson SAS。 版权所有。

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