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Virucidal and Synergistic Activity of Polyphenol-Rich Extracts of Seaweeds against Measles Virus

机译:富含多酚的海藻提取物对麻疹病毒的杀灭和协同活性

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摘要

Although preventable by vaccination, Measles still causes thousands of deaths among young children worldwide. The discovery of new antivirals is a good approach to control new outbreaks that cause such death. In this study, we tested the antiviral activity against Measles virus (MeV) of Polyphenol-rich extracts (PPs) coming from five seaweeds collected and cultivated in Mexico. An MTT assay was performed to determine cytotoxicity effect, and antiviral activity was measured by syncytia reduction assay and confirmed by qPCR. PPs from Ecklonia arborea (formerly Eisenia arborea, Phaeophyceae) and Solieria filiformis (Rhodophyta) showed the highest Selectivity Index (SI), >3750 and >576.9 respectively. Both PPs extracts were selected to the subsequent experiments owing to their high efficacy and low cytotoxicity compared with ribavirin (SI of 11.57). The combinational effect of PPs with sulphated polysaccharides (SPs) and ribavirin were calculated by using Compusyn software. Synergistic activity was observed by combining both PPs with low concentrations of Solieria filiformis SPs (0.01 µg/mL). The antiviral activity of the best combinations was confirmed by qPCR. Virucidal assay, time of addition, and viral penetration evaluations suggested that PPs act mainly by inactivating the viral particle. To our knowledge, this is the first report of the virucidal effect of Polyphenol-rich extracts of seaweeds.
机译:尽管可以通过疫苗预防,但麻疹仍在全球范围内导致数千名儿童死亡。新抗病毒药物的发现是控制引起此类死亡的新疾病暴发的好方法。在这项研究中,我们测试了来自墨西哥收集和种植的五种海藻中富含多酚的提取物(PPs)对麻疹病毒(MeV)的抗病毒活性。进行MTT测定以确定细胞毒性作用,并通过合胞体减少测定测量抗病毒活性并通过qPCR确认。来自Ecklonia arborea(以前称为Eisenia arborea,Phaeophyceae)和Solieria filiformis(Rhodophyta)的PP表现出最高的选择性指数(SI),分别> 3750和> 576.9。由于两种PPs提取物与利巴韦林相比具有较高的功效和较低的细胞毒性,因此被选择用于后续实验(SI为11.57)。使用Compusyn软件计算PP与硫酸化多糖(SP)和利巴韦林的组合作用。通过将两种PP与低浓度的丝状Solieria SPs(0.01 µg / mL)结合使用,观察到了协同活性。最佳组合的抗病毒活性通过qPCR确认。杀病毒测定,添加时间和病毒渗透评估表明,PPs主要通过灭活病毒颗粒发挥作用。据我们所知,这是富含多酚的海藻提取物的杀病毒作用的首次报道。

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