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氮杂金刚烷类化合物的合成及其抗甲型流感病毒活性。

Synthesis and anti-viral activity of azolo-adamantanes against influenza A virus.

机构信息

Department of Chemotherapy, Influenza Research Institute, 15/17 Prof. Popova St., 197376 St. Petersburg, Russia.

出版信息

Bioorg Med Chem. 2010 Jan 15;18(2):839-48. doi: 10.1016/j.bmc.2009.11.047. Epub 2009 Nov 29.

Abstract

Chemotherapy and chemoprophylaxis of influenza is one of the most important directions of health protection activity. Due to the high rate of drug-resistant strains of influenza virus, there is a need for the search and further development of new potent antivirals against influenza with a broad spectrum of activity. In the present study, a set of di-, tri- and tetrazole derivatives of adamantane was efficiently prepared and their anti-influenza activities evaluated against rimantadine-resistant strain A/Puerto Rico/8/34. In general, derivatives of tetrazole possessed the highest virus-inhibiting activity. We demonstrated that several compounds of this set exhibited much higher activity than the currently used antiviral rimantadine, a compound of related structure. Moreover, we showed that these azolo-adamantanes were significantly less toxic. This study demonstrates that influenza viruses can be inhibited by adamantyl-azoles and thus have potential for developing antiviral agents with an alternate mechanism of action.

摘要

流感的化疗和化学预防是保健活动的最重要方向之一。由于流感病毒耐药株的高发生率,因此需要寻找和进一步开发具有广谱活性的新型有效的抗流感药物。在本研究中,高效地制备了一组金刚烷的二、三、四唑衍生物,并对其针对金刚烷胺耐药株 A/Puerto Rico/8/34 的抗流感活性进行了评估。通常,四唑衍生物具有最高的病毒抑制活性。我们证明,该系列的几种化合物的活性明显高于目前使用的抗病毒金刚烷胺,金刚烷胺是一种结构相关的化合物。此外,我们还表明,这些氮杂-金刚烷具有明显较低的毒性。本研究表明,金刚烷-氮杂唑类化合物可以抑制流感病毒,因此具有开发具有替代作用机制的抗病毒药物的潜力。

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