首页> 美国卫生研究院文献>PLoS Neglected Tropical Diseases >The Viral Polymerase Inhibitor 7-Deaza-2’-C-Methyladenosine Is a Potent Inhibitor of In Vitro Zika Virus Replication and Delays Disease Progression in a Robust Mouse Infection Model
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The Viral Polymerase Inhibitor 7-Deaza-2’-C-Methyladenosine Is a Potent Inhibitor of In Vitro Zika Virus Replication and Delays Disease Progression in a Robust Mouse Infection Model

机译:病毒聚合酶抑制剂7-Deaza-2-C-甲基腺苷是体外寨卡病毒复制的有效抑制剂可在健壮的小鼠感染模型中延缓疾病进程。

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摘要

Zika virus (ZIKV) is an emerging flavivirus typically causing a dengue-like febrile illness, but neurological complications, such as microcephaly in newborns, have potentially been linked to this viral infection. We established a panel of in vitro assays to allow the identification of ZIKV inhibitors and demonstrate that the viral polymerase inhibitor 7-deaza-2’-C-methyladenosine (7DMA) efficiently inhibits replication. Infection of AG129 (IFN-α/β and IFN-γ receptor knock-out) mice with ZIKV resulted in acute neutrophilic encephalitis with viral antigens accumulating in neurons of the brain and spinal cord. Additionally, high levels of viral RNA were detected in the spleen, liver and kidney, and levels of IFN-γ and IL-18 were systematically increased in serum of ZIKV-infected mice. Interestingly, the virus was also detected in testicles of infected mice. In line with its in vitro anti-ZIKV activity, 7DMA reduced viremia and delayed virus-induced morbidity and mortality in infected mice, which also validates this small animal model to assess the in vivo efficacy of novel ZIKV inhibitors. Since AG129 mice can generate an antibody response, and have been used in dengue vaccine studies, the model can also be used to assess the efficacy of ZIKV vaccines.  
机译:Zika病毒(ZIKV)是一种新兴的黄病毒,通常引起登革热样的发热性疾病,但神经系统并发症(例如新生儿的小头畸形)可能与这种病毒感染有关。我们建立了一组体外试验,以鉴定ZIKV抑制剂,并证明病毒聚合酶抑制剂7-deaza-2'-C-甲基腺苷(7DMA)有效抑制复制。用ZIKV感染AG129(IFN-α/β和IFN-γ受体敲除)小鼠会导致急性中性粒细胞性脑炎,其病毒抗原会积聚在大脑和脊髓的神经元中。另外,在脾,肝和肾中检测到高水平的病毒RNA,并且在感染ZIKV的小鼠的血清中IFN-γ和IL-18的水平系统地增加。有趣的是,在受感染小鼠的睾丸中也检测到了这种病毒。与它的体外抗ZIKV活性一致,7DMA降低了病毒血症,并延迟了病毒在感染小鼠中的发病率和死亡率,这也验证了这种小型动物模型的有效性,以评估新型ZIKV抑制剂的体内功效。由于AG129小鼠可以产生抗体应答,并且已用于登革热疫苗研究,因此该模型也可以用于评估ZIKV疫苗的功效。

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