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Synthesis and Biological Evaluation of Novel (thio)semicarbazone-Based Benzimidazoles as Antiviral Agents against Human Respiratory Viruses

机译:新型(硫代)半卡巴唑类苯并咪唑类化合物作为抗人呼吸道病毒的抗病毒剂的合成及生物学评价

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摘要

Respiratory RNA viruses are responsible for recurrent acute respiratory illnesses that still represent a major medical need. Previously we developed a large variety of benzimidazole derivatives able to inhibit these viruses. Herein, two series of (thio)semicarbazone- and hydrazone-based benzimidazoles have been explored, by derivatizing 5-acetyl benzimidazoles previously reported by us, thereby evaluating the influence of the modification on the antiviral activity. Compounds , , and , bearing the 5-(thio)semicarbazone and 5-hydrazone functionalities in combination with the 2-benzyl ring on the benzimidazole core structure, acted as dual inhibitors of influenza A virus and human coronavirus. For respiratory syncytial virus (RSV), activity is limited to the 5-thiosemicarbazone ( ) and 5-hydrazone ( ) compounds carrying the 2-[(benzotriazol-1/2-yl)methyl]benzimidazole scaffold. These molecules proved to be the most effective antiviral agents, able to reach the potency profile of the licensed drug ribavirin. The molecular docking analysis explained the SAR of these compounds around their binding mode to the target RSV F protein, revealing the key contacts for further assessment. The herein-investigated benzimidazole-based derivatives may represent valuable hit compounds, deserving subsequent structural improvements towards more efficient antiviral agents for the treatment of pathologies caused by these human respiratory viruses.
机译:呼吸道RNA病毒可引起反复发作的急性呼吸道疾病,仍然代表着主要的医学需求。以前,我们开发了多种能够抑制这些病毒的苯并咪唑衍生物。在此,通过衍生我们先前报道的5-乙酰基苯并咪唑,已经探索了两个系列的(硫代)半卡巴zone和基苯并咪唑,从而评估了修饰对抗病毒活性的影响。具有5-(硫代)半碳carb和5-hydr官能团与苯并咪唑核心结构上的2-苄基环结合的化合物,和充当甲型流感病毒和人类冠状病毒的双重抑制剂。对于呼吸道合胞病毒(RSV),活性仅限于带有2-[((苯并三唑-1 / 2-基)甲基]苯并咪唑支架的5-硫代半脲(-)和5-hydr(-)化合物。这些分子被证明是最有效的抗病毒药物,能够达到许可药物利巴韦林的效能。分子对接分析解释了这些化合物与目标RSV F蛋白结合模式的SAR,揭示了进一步评估的关键联系。本文研究的基于苯并咪唑的衍生物可能代表有价值的命中化合物,应进行后续结构改进,以更有效地治疗由这些人类呼吸道病毒引起的病变的抗病毒剂。

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