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首页> 外文期刊>Archives of virology >IRES-based co-expression of influenza virus conserved genes can promote synergistic antiviral effects both in vitro and in vivo
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IRES-based co-expression of influenza virus conserved genes can promote synergistic antiviral effects both in vitro and in vivo

机译:基于IRES的流感病毒保守基因的共同表达可以在体外和体内促进协同抗病毒作用

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Vaccination is the most effective method for the prevention of influenza virus infection. Currently used influenza vaccines that target the highly polymorphic viral surface antigens can provide protection when well matched with circulating virus strains. Antigenic drift or cyclically occurring pandemics may hamper the efficacy of these vaccines, which are chosen prior to each flu season. Therefore, a universal vaccine, designed to induce broadly cross-protective immunity against the highly conserved internal antigens M1 and nucleoprotein could provide durable protection against various influenza virus subtypes, and it could also reduce the impact of pandemic influenza, which occurs less frequently. Here, we describe a new influenza vaccine candidate in which two highly conserved antigens, nucleoprotein (NP) and matrix (M1), are simultaneously expressed from a bicistronic vector termed pIRESM1/NP. Mice were immunized intradermally four times with the pIRESM1/NP construct. The protection efficacy of the gene-based vaccine was assessed by IFN-gamma and Granzyme B ELISpot assays, follow-up observation of weight loss, and survival rates of the mice groups against lethal challenges with influenza A virus subtypes H1N1 and H5N1. The group that received pIRESM1/NP showed full protection against disease following lethal challenge with H1N1 and H5N1. This group also generated significantly higher host immune cellular responses than the other groups. These results demonstrate that a DNA vaccine strategy based on co-expression of the M1 and NP proteins could provide an effective way to control influenza virus infection.
机译:疫苗接种是预防流感病毒感染最有效的方法。目前使用靶向高多态病毒表面抗原的流感疫苗可以提供循环病毒菌株良好匹配的液体抗原。抗原漂移或循环发生的淫乱可能会阻碍这些疫苗的功效,这些疫苗在每季之前选择。因此,旨在诱导对高度保守的内部抗原M1和核蛋白的普遍促使促使对抗保护性的抗保护性的通用疫苗可以为各种流感病毒亚型提供耐用的保护,并且还可以减少大流行性流感的影响,这频繁地发生。在这里,我们描述了一种新的流感疫苗候选候选,其中两个高度保守的抗原,核蛋白(NP)和基质(M1)同时表达于称为PIRESM1 / NP的双顺声载体。将小鼠与PIRESM1 / NP构建体皮内治疗四次。通过IFN-Gamma和Granzzyme B ELISPOT测定评估基于基因的疫苗的保护效果,对小鼠组的体重减轻的后续观察和小鼠患有流感病毒亚型H1N1和H5N1的致命挑战的致命挑战。接受PIRESM1 / NP的小组显示出致命攻击患有H1N1和H5N1后的疾病。该组还产生明显高于其他组的宿主免疫细胞反应。这些结果表明,基于M1和NP蛋白的共表达的DNA疫苗策略可以提供控制流感病毒感染的有效方法。

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