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发现 C-1 修饰的奥司他韦衍生物作为有效的流感神经氨酸酶抑制剂。

Discovery of C-1 modified oseltamivir derivatives as potent influenza neuraminidase inhibitors.

机构信息

Department of Medicinal Chemistry, Key Laboratory of Chemical Biology (Ministry of Education), School of Pharmaceutical Sciences, Shandong University, 44 West Culture Road, 250012, Jinan, Shandong, PR China.

College of Veterinary Medicine, South China Agricultural University, 483, Wushan Road, Tianhe District, Guangzhou, 510642, PR China.

出版信息

Eur J Med Chem. 2018 Feb 25;146:220-231. doi: 10.1016/j.ejmech.2018.01.050. Epub 2018 Feb 4.

Abstract

Inspired by our initial discovery about a series of neuraminidase (NA) inhibitors targeting the 150-cavity, in present study, we designed, synthesized, and biologically tested a panel of novel oseltamivir derivatives with C-1 modification, targeting the 430-cavity, an additional binding site which widely and stably existed in both group-1 and group-2 NAs. Some of the synthesized compounds displayed robust anti-influenza potencies against H5N1 and H5N6 viruses. Among them, compound 8b exerted the greatest inhibition, with IC values of 0.088 and 0.097 μM and EC values of 4.26 and 1.31 μM against H5N1 and H5N6 strains, respectively, which are similar to those of oseltamivir carboxylate (OSC). And its potency against mutant H5N1-H274Y NA was just 7-fold weaker than OSC. Molecular modeling revealed the elongated group at C-1 position being projected toward the 430-cavity. Notably, although compound 8b was not sensitive toward H5N1 strain relative to OSC in the embryonated egg model, it displayed greater anti-influenza virus effect against H5N6 strain than OSC at the concentration of 10 mmol/L. Overall, this work provided unique insights in the discovery of potent inhibitors against both group-1 and group-2 NAs.

摘要

受我们最初关于一系列针对 150 腔的神经氨酸酶 (NA) 抑制剂的发现启发,在本研究中,我们设计、合成并生物测试了一系列针对 430 腔的新型奥司他韦衍生物,这是一个额外的结合位点,广泛且稳定地存在于 1 型和 2 型 NA 中。一些合成的化合物对 H5N1 和 H5N6 病毒表现出强大的抗流感活性。其中,化合物 8b 对 H5N1 和 H5N6 株的抑制作用最强,IC 值分别为 0.088 和 0.097 μM,EC 值分别为 4.26 和 1.31 μM,与奥司他韦羧酸盐(OSC)相当。并且它对突变型 H5N1-H274Y NA 的抑制活性仅比 OSC 弱 7 倍。分子模拟表明,C-1 位的伸长基团被投射到 430 腔。值得注意的是,尽管化合物 8b 在鸡胚模型中对 H5N1 株的敏感性不如 OSC,但在 10 mmol/L 浓度下,它对 H5N6 株的抗流感病毒效果优于 OSC。总的来说,这项工作为发现针对 1 型和 2 型 NA 的有效抑制剂提供了独特的见解。

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