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In vitro anti-influenza virus and anti-inflammatory activities of theaflavin derivatives

机译:茶黄素衍生物的体外抗流感病毒和抗炎活性

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The theaflavins fraction (TF80%, with a purity of 80%) and three theaflavin (TF) derivatives from black tea have been found to exhibit potent inhibitory effects against influenza virus in vitro. They were evaluated with a neuraminidase (NA) activity assay, a hemagglutination (HA) inhibition assay, a real-time quantitative PCR (qPCR) assay for gene expression of hemagglutinin (HA) and a cytopathic effect (CPE) reduction assay. The experimental results showed that they all exerted significant inhibitory effects on the NA of three different subtypes of influenza virus strains [A/PR/8/34(H1N1), A/Sydney/5/97(H3N2) and B/Jiangsu/10/2003] with 50% inhibitory concentration (IC 50) values ranging from 9.27 to 36.55μg/mL, and they also displayed an inhibitory effect on HA; these inhibitory effects might constitute two major mechanisms of their antiviral activity. Time-of-addition studies demonstrated that TF derivatives might have a direct effect on viral particle infectivity, which was consistent with the inhibitory effect on HA. Subsequently, the inhibitory effect of TF derivatives on the replication of the viral HA gene as assayed by qPCR and on the nuclear localization of the influenza virus vRNP further demonstrated that they may primarily act during the early stage of infection. Interestingly, besides the activity against functional viral proteins, TF derivatives also decreased the expression level of the inflammatory cytokine IL-6 during viral infection, expression of which may result in serious tissue injury and apoptosis. Our results indicated that TF derivatives are potential compounds with anti-influenza viral replication and anti-inflammatory properties. These findings will provide important information for new drug design and development for the treatment of influenza virus infection.
机译:已经发现茶黄素级分(TF80%,纯度为80%)和三种来自红茶的茶黄素(TF)衍生物在体外对流感病毒表现出有效的抑制作用。他们通过神经氨酸酶(NA)活性测定,血凝(HA)抑制测定,血凝素(HA)基因表达的实时定量PCR(qPCR)测定和细胞病变效应(CPE)减少测定进行了评估。实验结果表明,它们都对三种不同亚型的流感病毒株[A / PR / 8/34(H1N1),A / Sydney / 5/97(H3N2)和B / Jiangsu / 10]的NA均具有明显的抑制作用。 / 2003]的50%抑制浓度(IC 50)值在9.27至36.55μg/ mL之间,并且它们还显示出对HA的抑制作用;这些抑制作用可能构成其抗病毒活性的两个主要机制。添加时间研究表明,TF衍生物可能对病毒颗粒的感染性有直接影响,这与对HA的抑制作用一致。随后,如通过qPCR测定的,TF衍生物对病毒HA基因的复制的抑制作用以及对流感病毒vRNP的核定位的抑制作用进一步表明,它们可能主要在感染的早期阶段起作用。有趣的是,除了对功能性病毒蛋白的活性外,TF衍生物还降低了病毒感染过程中炎性细胞因子IL-6的表达水平,其表达可能导致严重的组织损伤和细胞凋亡。我们的结果表明,TF衍生物是具有抗流感病毒复制和抗炎特性的潜在化合物。这些发现将为治疗流感病毒感染的新药设计和开发提供重要信息。

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