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Inhibition of influenza virus-induced NF-kappaB and Raf/MEK/ERK activation can reduce both virus titers and cytokine expression simultaneously in vitro and in vivo.

机译:抑制流感病毒诱导的NF-κB和Raf / MEK / ERK激活可在体内外同时降低病毒滴度和细胞因子表达。

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Influenza virus (IV) infection can cause severe pneumonia and death. Therapeutic actions are limited to vaccines and a few anti-viral drugs. These target viral functions thereby selecting resistant variants. During replication IV activates the Raf/MEK/ERK-cascade and the transcription factor NF-kappaB. Both result in virus supportive and anti-viral effects by promoting viral genome transport for virus assembly and by inducing expression of pro-inflammatory host factors. Apart from tissue damage caused by the virus lytic replication, an imbalanced overproduction of anti-viral cytokines can cause severe lung damage as observed in human H5-type IV infections. Recently we showed that inhibition of NF-kappaB activity reduces the virus titer in vitro and in vivo. We have now analyzed whether inhibition of these pathways, allows simultaneous reduction of virus titers and virus-induced cytokines. The results show that inhibition of either pathway indeed leads to decreased virus titers and cytokine expression. This was not only true for infected permanent cells or primary mouse alveolar epithelial cells, but also in infected mice. Hereby we demonstrate for the first time in vitro and in vivo that virus titers and pro-inflammatory cytokine expression can be modulated simultaneously. This could provide a new rationale of future therapeutic strategies to treat IV pneumonia.
机译:流感病毒(IV)感染可导致严重的肺炎和死亡。治疗作用仅限于疫苗和一些抗病毒药物。这些靶病毒功能从而选择抗性变体。在复制过程中,IV激活Raf / MEK / ERK级联和转录因子NF-κB。两者都通过促进病毒基因组运输以组装病毒并诱导促炎性宿主因子表达而导致病毒支持和抗病毒作用。除了由病毒裂解复制引起的组织损伤外,抗病毒细胞因子的过量生产也会导致严重的肺部损伤,正如在人类H5型IV感染中所观察到的那样。最近,我们显示出对NF-κB活性的抑制作用可在体内和体外降低病毒效价。我们现在分析了抑制这些途径是否可以同时降低病毒滴度和病毒诱导的细胞因子。结果表明,任一途径的抑制确实导致病毒滴度和细胞因子表达降低。这不仅对于受感染的永久细胞或原代小鼠肺泡上皮细胞而言如此,而且在受感染的小鼠中也是如此。因此,我们首次在体外和体内证明病毒滴度和促炎细胞因子表达可以同时调节。这可以为将来治疗IV型肺炎的治疗策略提供新的理论依据。

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