Kononova A A, Sokolova A S, Cheresiz S V, Yarovaya O I, Nikitina R A, Chepurnov A A, Pokrovsky A G, Salakhutdinov N F
Novosibirsk State University , Pirogova St. 2 , 630090 Novosibirsk , Russia . Email:
N.N. Vorozhtsov Novosibirsk Institute of Organic Chemistry, Siberian Branch , Russian Academy of Sciences , Lavrentjev Avenue 9 , 630090 , Novosibirsk , Russia.
Medchemcomm. 2017 Oct 19;8(12):2233-2237. doi: 10.1039/c7md00424a. eCollection 2017 Dec 1.
There is currently no approved antiviral therapy for treatment of Marburg virus disease (MVD). Although filovirus infection outbreaks are quite rare, the high mortality rates in such outbreaks make the development of anti-filoviral drugs an important goal of medical chemistry and virology. Here, we performed screening of a large library of natural derivatives for their virus entry inhibition activity using pseudotype systems. The bornyl ester derivatives containing saturated N-heterocycles exhibited the highest antiviral activity. It is supposed that compounds with specific inhibitory activity toward MarV-GP-dependent virus entry will inhibit the rVSIV-ΔG-MarV-GP pseudotype much more efficiently than the control rVSIV-ΔG-G pseudotype. At the same time, the compounds similarly inhibiting both pseudotypes will likely affect rVSIV capsid replication or the cellular mechanisms common to the entry of both viruses. Borneol itself is not active against both pseudotypes and is nontoxic, whereas its derivatives have varying toxicity and antiviral activity. Among low-toxic borneol derivatives, six compounds turned out to be relatively specific inhibitors of MarV-GP-mediated infection (SC > 10). Of them, compound containing a methylpiperidine moiety exhibited the highest virus-specific activity. Notably, the virus-specific activity of this compound is twice as high as that of the reference.
目前尚无批准用于治疗马尔堡病毒病(MVD)的抗病毒疗法。尽管丝状病毒感染爆发相当罕见,但此类爆发中的高死亡率使得开发抗丝状病毒药物成为药物化学和病毒学的一个重要目标。在此,我们使用假型系统对大量天然衍生物文库进行了病毒进入抑制活性筛选。含有饱和N-杂环的冰片酯衍生物表现出最高的抗病毒活性。据推测,对马尔堡病毒糖蛋白(MarV-GP)依赖性病毒进入具有特异性抑制活性的化合物,对重组水疱性口炎病毒ΔG-马尔堡病毒糖蛋白(rVSIV-ΔG-MarV-GP)假型的抑制效率要比对照重组水疱性口炎病毒ΔG-G假型高得多。同时,同样抑制这两种假型的化合物可能会影响rVSIV衣壳复制或两种病毒进入所共有的细胞机制。冰片本身对两种假型均无活性且无毒,而其衍生物具有不同的毒性和抗病毒活性。在低毒的冰片衍生物中,有六种化合物被证明是马尔堡病毒糖蛋白介导感染的相对特异性抑制剂(选择性系数>10)。其中,含有甲基哌啶部分的化合物表现出最高的病毒特异性活性。值得注意的是,该化合物的病毒特异性活性是对照的两倍。