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从植物中鉴定出鞣花酸作为抗埃博拉病毒进入抑制剂。

Identification of Ellagic Acid from Plant Rhodiola rosea L. as an Anti-Ebola Virus Entry Inhibitor.

机构信息

College of Pharmacy, Shandong University of Traditional Chinese Medicine, Jinan 250355, China.

Department of Microbiology and Immunology, College of Medicine, University of Illinois at Chicago, Chicago, IL 60612, USA.

出版信息

Viruses. 2018 Mar 27;10(4):152. doi: 10.3390/v10040152.

Abstract

The recent 2014-2016 West African Ebola virus epidemic underscores the need for the development of novel anti-Ebola therapeutics, due to the high mortality rates of Ebola virus infections and the lack of FDA-approved vaccine or therapy that is available for the prevention and treatment. Traditional Chinese medicines (TCMs) represent a huge reservoir of bioactive chemicals and many TCMs have been shown to have antiviral activities. 373 extracts from 128 TCMs were evaluated using a high throughput assay to screen for inhibitors of Ebola virus cell entry. Extract of displayed specific and potent inhibition against cell entry of both Ebola virus and Marburg virus. In addition, twenty commercial compounds that were isolated from were evaluated using the pseudotyped Ebola virus entry assay, and it was found that ellagic acid and gallic acid, which are two structurally related compounds, are the most effective ones. The activity of the extract and the two pure compounds were validated using infectious Ebola virus. The time-of-addition experiments suggest that, mechanistically, the extract and the effective compounds act at an early step in the infection cycle following initial cell attachment, but prior to viral/cell membrane fusion. Our findings provide evidence that has potent anti-filovirus properties that may be developed as a novel anti-Ebola treatment.

摘要

最近的 2014-2016 年西非埃博拉病毒疫情凸显了开发新型抗埃博拉治疗方法的必要性,这是因为埃博拉病毒感染的死亡率很高,而且缺乏获得 FDA 批准的可用于预防和治疗的疫苗或疗法。传统中药(TCM)代表了大量生物活性化学物质的宝库,许多 TCM 已被证明具有抗病毒活性。使用高通量测定法评估了来自 128 种 TCM 的 373 种提取物,以筛选埃博拉病毒细胞进入的抑制剂。 的提取物对埃博拉病毒和马尔堡病毒的细胞进入均表现出特异性和强效抑制作用。此外,从 中分离出的二十种商业化合物使用假型埃博拉病毒进入测定法进行了评估,发现鞣花酸和没食子酸这两种结构相关的化合物是最有效的化合物。使用感染性埃博拉病毒验证了提取物和两种纯化合物的活性。添加时间实验表明,从机制上讲,提取物和有效化合物在初始细胞附着后、病毒/细胞膜融合之前的感染周期的早期阶段发挥作用。我们的研究结果提供了证据表明 具有强大的抗丝状病毒特性,可开发为新型抗埃博拉治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/456c/5923446/94f49dbc8487/viruses-10-00152-g001.jpg

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