法维皮拉维
化学
病毒学
奥司他韦
核苷类似物
核苷
神经氨酸酶
病毒
扎那米韦
甲型流感病毒
聚合酶
神经氨酸酶抑制剂
金刚乙胺
药理学
酶
医学
立体化学
生物化学
2019年冠状病毒病(COVID-19)
疾病
传染病(医学专业)
病理
作者
Guangyi Wang,Jinqiao Wan,Yujian Hu,X. Wu,Marija Prhavc,Natalia Dyatkina,Vivek K. Rajwanshi,David B. Smith,Andreas Jekle,April Kinkade,Julian Symons,Zhinan Jin,Jérôme Deval,Qingling Zhang,Yuen Yi C. Tam,Sushmita Chanda,Lawrence M. Blatt,Leonid Beigelman
标识
DOI:10.1021/acs.jmedchem.5b01933
摘要
Influenza viruses are responsible for seasonal epidemics and occasional pandemics which cause significant morbidity and mortality. Despite available vaccines, only partial protection is achieved. Currently, there are two classes of widely approved anti-influenza drugs: M2 ion channel blockers and neuraminidase inhibitors. However, the worldwide spread of drug-resistant influenza strains poses an urgent need for novel antiviral drugs, particularly with a different mechanism of action. Favipiravir (T-705), a broad-spectrum antiviral agent, has shown potent anti-influenza activity in cell-based assays, and its riboside (2) triphosphate inhibited influenza polymerase. In one of our approaches to treat influenza infection, we designed, prepared, and tested a series of C-nucleoside analogues, which have an analogy to 2 and were expected to act by a similar antiviral mechanism as favipiravir. Compound 3c of this report exhibited potent inhibition of influenza virus replication in MDCK cells, and its triphosphate was a substrate of and demonstrated inhibitory activity against influenza A polymerase. Metabolites of 3c are also presented.
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