Novel derivatives of thiohydantoin-containing tetrahydro-β-carboline possess activity against influenza virus at late stages of viral cycle without affecting viral neuraminidase

IF 4.3 3区 医学 Q2 CHEMISTRY, MEDICINAL
Derenik S. Khachatryan, Vasiliy N. Osipov, Anton V. Kolotaev, Svetlana K. Belus, Karine R. Matevosyan, Iana L. Esaulkova, Shokhrukh A. Khasanov, Polina A. Ilyina, Alexandrina S. Volobueva, Edward S. Ramsay, Vladimir V. Zarubaev
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Abstract

Influenza infection represents a serious challenge for virological surveillance and healthcare systems in all countries globally. Despite obvious success in control of influenza through vaccination and antiviral drug development, this infection remains poorly controlled due to antigenic drift and fast selection of drug-resistant viral variants. The design of novel drugs with alternative targets and mechanisms of action is, therefore, an important goal for medical science worldwide. In the current study, we describe the chemical synthesis of novel tetrahydro-β-carboline derivatives containing a thiohydantoin fragment, as well as their antiviral activity against influenza virus A/Puerto Rico/8/34 (H1N1). In general, the library of compounds was of low toxicity. Of the 23 compounds under investigation, 10 (43.5%) displayed a selectivity index (SI) of 10 or higher, their activity strongly exceeding that of the reference compound rimantadine. The most active compounds have also demonstrated suppressing activity against the phylogenetically distinct influenza virus of type B. These compounds, similar to the reference compound zanamivir, were active at very late stages of the viral cycle (4–6 h postinfection), suggesting interference with processes of virion assembly and budding. However, no direct inhibiting activity against viral neuraminidase has been demonstrated. The results obtained can be considered as a rationale for further structural optimization and study of this group as potential broad-range antivirals effective against influenza viruses.

Abstract Image

含硫代氢酮的新型四氢β-碳碱衍生物在病毒周期后期对流感病毒具有抗活性,而不影响病毒神经氨酸酶
流感感染对全球所有国家的病毒学监测和卫生保健系统构成严重挑战。尽管通过疫苗接种和开发抗病毒药物在控制流感方面取得了明显的成功,但由于抗原漂移和耐药病毒变体的快速选择,这种感染仍然控制不佳。因此,设计具有替代靶点和作用机制的新药是全世界医学科学的一个重要目标。在本研究中,我们描述了含有硫代海因片段的新型四氢β-碳碱衍生物的化学合成,以及它们对流感病毒a /Puerto Rico/8/34 (H1N1)的抗病毒活性。总的来说,化合物库的毒性较低。23个化合物中有10个(43.5%)的选择性指数在10以上,活性明显超过对照化合物金刚乙胺。最具活性的化合物还显示出对系统发育上不同的b型流感病毒的抑制活性。这些化合物与参比化合物扎那米韦相似,在病毒周期的非常晚期(感染后4-6小时)具有活性,表明对病毒粒子组装和出芽过程的干扰。然而,对病毒神经氨酸酶没有直接的抑制作用。所获得的结果可以被认为是进一步结构优化和研究这一群体作为潜在的广谱抗病毒药物对流感病毒有效的理论基础。
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来源期刊
Archiv der Pharmazie
Archiv der Pharmazie 医学-化学综合
CiteScore
7.90
自引率
5.90%
发文量
176
审稿时长
3.0 months
期刊介绍: Archiv der Pharmazie - Chemistry in Life Sciences is an international journal devoted to research and development in all fields of pharmaceutical and medicinal chemistry. Emphasis is put on papers combining synthetic organic chemistry, structural biology, molecular modelling, bioorganic chemistry, natural products chemistry, biochemistry or analytical methods with pharmaceutical or medicinal aspects such as biological activity. The focus of this journal is put on original research papers, but other scientifically valuable contributions (e.g. reviews, minireviews, highlights, symposia contributions, discussions, and essays) are also welcome.
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