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Identification of an antioxidant small-molecule with broad-spectrum antiviral activity

机译:具有广谱抗病毒活性的抗氧化剂小分子的鉴定

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The highly lethal filoviruses, Ebola and Marburg cause severe hemorrhagic fever in humans and non-human primates. To date there are no licensed vaccines or therapeutics to counter these infections. Identifying novel pathways and host targets that play an essential role during infection will provide potential targets to develop therapeutics. Small molecule chemical screening for Ebola virus inhibitors resulted in identification of a compound NSC 62914. The compound was found to exhibit anti-filovirus activity in cell-based assays and in vivo protected mice following challenge with Ebola or Marburg viruses. Additionally, the compound was found to inhibit Rift Valley fever virus, Lassa virus and Venezuelan equine encephalitis virus in cell-based assays. Investigation of the mechanism of action of the compound revealed that it had antioxidant properties. Specifically, compound NSC 62914 was found to act as a scavenger of reactive oxygen species, and to up-regulate oxidative stress-induced genes. However, four known antioxidant compounds failed to inhibit filovirus infection, thus suggesting that the mechanistic basis of the antiviral function of the antioxidant NSC 62914 may involve modulation of multiple signaling pathways/targets.
机译:高度致命的丝状病毒,埃博拉病毒和马尔堡病毒在人类和非人类灵长类动物中引起严重的出血热。迄今为止,还没有获得许可的疫苗或治疗剂来抵抗这些感染。鉴定在感染过程中起重要作用的新途径和宿主靶标将为开发治疗药物提供潜在靶标。对埃博拉病毒抑制剂进行小分子化学筛选导致鉴定出化合物NSC62914。在以细胞为基础的测定中,以及在受到埃博拉或马尔堡病毒攻击的体内受保护的小鼠中,发现该化合物具有抗丝状病毒活性。另外,在基于细胞的测定中发现该化合物抑制裂谷热病毒,拉沙病毒和委内瑞拉马脑炎病毒。对化合物作用机理的研究表明它具有抗氧化性能。具体而言,发现化合物NSC 62914充当活性氧的清除剂,并上调氧化应激诱导的基因。但是,四种已知的抗氧化剂化合物未能抑制丝状病毒感染,因此表明抗氧化剂NSC 62914的抗病毒功能的机理基础可能涉及多个信号通路/靶标的调节。

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