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病毒 RNA 依赖性 RNA 聚合酶抑制剂 7-脱氮-2'--甲基腺苷可预防西尼罗河病毒感染的小鼠模型中的死亡。

Viral RNA-Dependent RNA Polymerase Inhibitor 7-Deaza-2'--Methyladenosine Prevents Death in a Mouse Model of West Nile Virus Infection.

机构信息

Department of Virology, Veterinary Research Institute, Brno, Czech Republic.

Institute of Parasitology, Biology Centre of the Czech Academy of Sciences, Ceske Budejovice, Czech Republic.

出版信息

Antimicrob Agents Chemother. 2019 Feb 26;63(3). doi: 10.1128/AAC.02093-18. Print 2019 Mar.

Abstract

West Nile virus (WNV) is a medically important emerging arbovirus causing serious neuroinfections in humans and against which no approved antiviral therapy is currently available. In this study, we demonstrate that 2'--methyl- or 4'-azido-modified nucleosides are highly effective inhibitors of WNV replication, showing nanomolar or low micromolar anti-WNV activity and negligible cytotoxicity in cell culture. One representative of 2'-methylated nucleosides, 7-deaza-2'--methyladenosine, significantly protected WNV-infected mice from disease progression and mortality. Twice daily treatment at 25 mg/kg starting at the time of infection resulted in 100% survival of the mice. This compound was highly effective, even if the treatment was initiated 3 days postinfection, at the time of a peak of viremia, which resulted in a 90% survival rate. However, the antiviral effect of 7-deaza-2'--methyladenosine was absent or negligible when the treatment was started 8 days postinfection (i.e., at the time of extensive brain infection). The 4'-azido moiety appears to be another important determinant for highly efficient inhibition of WNV replication However, the strong anti-WNV effect of 4'-azidocytidine and 4'-azido-aracytidine was cell type dependent and observed predominantly in porcine kidney stable (PS) cells. The effect was much less pronounced in Vero cells. Our results indicate that 2'--methylated or 4'-azidated nucleosides merit further investigation as potential therapeutic agents for treating WNV infections as well as infections caused by other medically important flaviviruses.

摘要

西尼罗河病毒(WNV)是一种医学上重要的新兴虫媒病毒,可导致人类严重的神经感染,目前尚无批准的抗病毒疗法。在这项研究中,我们证明 2'--甲基或 4'-叠氮修饰的核苷是 WNV 复制的高效抑制剂,在细胞培养中表现出纳摩尔或低微摩尔的抗 WNV 活性和可忽略的细胞毒性。2'--甲基化核苷的一种代表物,7-脱氮-2'--甲基腺苷,可显著保护 WNV 感染的小鼠免受疾病进展和死亡的影响。从感染时开始,每天两次以 25mg/kg 的剂量治疗可使小鼠 100%存活。即使在感染后 3 天,即病毒血症高峰时开始治疗,该化合物也非常有效,此时存活率为 90%。然而,如果在感染后 8 天开始治疗(即广泛脑感染时),则 7-脱氮-2'--甲基腺苷的抗病毒作用不存在或可忽略不计。4'-叠氮基似乎是高效抑制 WNV 复制的另一个重要决定因素。然而,4'-叠氮胞苷和 4'-叠氮阿糖胞苷的强烈抗 WNV 作用依赖于细胞类型,主要在猪肾稳定(PS)细胞中观察到。在 Vero 细胞中,效果要小得多。我们的结果表明,2'--甲基化或 4'-叠氮化核苷值得进一步研究,作为治疗 WNV 感染以及其他医学上重要的黄病毒感染的潜在治疗剂。

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