化学
连接器
细胞毒性
甲型流感病毒
神经氨酸酶
奥司他韦
结构-活动关系
肟
效力
体外
细胞病变效应
血凝素(流感)
药理学
病毒
病毒学
生物化学
酶
生物
2019年冠状病毒病(COVID-19)
医学
传染病(医学专业)
病理
操作系统
基因
疾病
计算机科学
作者
D. Xu,Ying Gong,Lianju Zhang,Xiao Fu,Xinran Wang,Ji Qin,Lin Tan,Teng Yang,Lin Zeng,Zhongliang Xu,Xiujuan Liu,Fuling Xiao,Feili Zhang,Feng Tang,Jianping Zuo,Xiaomin Luo,Wei Huang,Li Yang,Weibo Yang
标识
DOI:10.1021/acs.jmedchem.4c00319
摘要
Although vaccination remains the prevalent prophylactic means for controlling Influenza A virus (IAV) infections, novel structural antivirus small-molecule drugs with new mechanisms of action for treating IAV are highly desirable. Herein, we describe a modular biomimetic strategy to expeditiously achieve a new class of macrocycles featuring oxime, which might target the hemagglutinin (HA)-mediated IAV entry into the host cells. SAR analysis revealed that the size and linker of the macrocycles play an important role in improving potency. Particularly, as a 14-membered macrocyclic oxime, 37 exhibited potent inhibitory activity against IAV H1N1 with an EC50 value of 23 nM and low cytotoxicity, which alleviated cytopathic effects and protected cell survival obviously after H1N1 infection. Furthermore, 37 showed significant synergistic activity with neuraminidase inhibitor oseltamivir in vitro.
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