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发现 14S-(2'-氯-4'-硝基苯氧基)-8R/S,17-环氧穿心莲内酯是 EV-A71 感染抑制剂。

Discovery of 14S-(2'-chloro-4'-nitrophenoxy)-8R/S,17-epoxy andrographolide as EV-A71 infection inhibitor.

机构信息

School of Pharmaceutical Sciences, Nanjing Tech University, Nanjing, Jiangsu, China.

Laboratory of Molecular RNA Virology and Antiviral Strategies, Department of Microbiology and Immunology, Yong Loo Lin School of Medicine, National University of Singapore, 117545 Singapore, Singapore.

出版信息

Biochem Pharmacol. 2021 Dec;194:114820. doi: 10.1016/j.bcp.2021.114820. Epub 2021 Nov 5.

Abstract

Human enterovirus A71 (EV-A71) is a major etiological agent of hand-foot-and-mouth disease (HFMD) and there is presently no internationally approved antiviral against EV-A71. In this study, it is disclosed that 14S-(2'-chloro-4'-nitrophenoxy)-8R/S,17-epoxy andrographolide (2) was discovered to be an effective inhibitor against EV-A71 infection showing significant reduction of viral titre. In addition to EV-A71, compound 2 exerts broad-spectrum antiviral effects against other enteroviruses. It is revealed that compound 2 inhibits the post-entry stages of EV-A71 viral replication cycle and significantly reduces viral protein expression of structural proteins such as VP0 and VP2 via inhibiting EV-A71 RNA replication. Moreover, the inhibitory property of compound 2 is specific to viral RNA replication. Furthermore, compound 2 is more likely to target a host factor in EV-A71 RNA replication. As a result, introduction of epoxide at positions 8 and 17 of andrographolide is effective for anti-EV-A71 infection and is a potential anti-EV-A71 strategy. Further work to discover more potent andrographolide derivatives and elucidate comprehensive SAR is under way.

摘要

人肠道病毒 A71(EV-A71)是手足口病(HFMD)的主要病原体,目前尚无国际批准的针对 EV-A71 的抗病毒药物。本研究发现,14S-(2'-氯-4'-硝基苯氧基)-8R/S,17-环氧穿心莲内酯(2)是一种有效的 EV-A71 感染抑制剂,可显著降低病毒滴度。除了 EV-A71,化合物 2 对其他肠道病毒也具有广谱抗病毒作用。研究表明,化合物 2 抑制 EV-A71 病毒复制周期的进入后阶段,并通过抑制 EV-A71 RNA 复制显著降低结构蛋白(如 VP0 和 VP2)的病毒蛋白表达。此外,化合物 2 的抑制特性是针对病毒 RNA 复制的。此外,化合物 2 更可能针对 EV-A71 RNA 复制中的宿主因子。因此,在穿心莲内酯的 8 位和 17 位引入环氧化物对于抗 EV-A71 感染是有效的,是一种潜在的抗 EV-A71 策略。正在进行进一步的工作以发现更有效的穿心莲内酯衍生物并阐明全面的 SAR。

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