首页> 外文期刊>Plant Biotechnology Journal >ELPylated haemagglutinins produced in tobacco plants induce potentially neutralizing antibodies against H5N1 viruses in mice.
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ELPylated haemagglutinins produced in tobacco plants induce potentially neutralizing antibodies against H5N1 viruses in mice.

机译:在烟草植物中产生的elpylated血凝素诱导潜在中和抗体对小鼠的H5N1病毒的抗体。

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Reducing the cost of vaccine production is a key priority for veterinary research, and the possibility of heterologously expressing antigen in plants provides a particularly attractive means of achieving this. Here, we report the expression of the avian influenza virus haemagglutinin (AIV HA) in tobacco, both as a monomer and as a trimer in its native and its ELPylated form. We firstly presented evidence to produce stabilized trimers of soluble HA in plants. ELPylation of these trimers does not influence the trimerization. Strong expression enhancement in planta caused by ELPylation was demonstrated for trimerized H5-ELP. ELPylated trimers could be purified by a membrane-based inverse transition cycling procedure with the potential of successful scale-up. The trimeric form of AIV HA was found to enhance the HA-specific immune response compared with the monomeric form. Plant-derived AIV HA trimers elicited potentially neutralizing antibodies interacting with both homologous virus-like particles from plants and heterologous inactivated AIV. ELPylation did not influence the functionality and the antigenicity of the stabilized H5 trimers. These data allow further developments including scale-up of production, purification and virus challenge experiments with the final goal to achieve suitable technologies for efficient avian flu vaccine production.
机译:降低疫苗生产的成本是兽医研究的关键优先事项,并且在植物中异源表达抗原的可能性提供了一种特别有吸引力的实现方法。在此,我们报告禽流感病毒Haemagglutinin(AIV HA)在烟草中的表达,无论是单体,也都是其天然和其烯烯化形式的单体。我们首先介绍了在植物中产生可溶性HA的稳定三分球。这些三聚体的elPyLation不会影响三聚化。对三聚H5-ELP进行了对由elpylation引起的植物植物中的强烈表达增强。可以通过基于膜的逆转变循环方法纯化烯酰化的三聚体,其具有成功扩大的潜力。发现AIV HA的三聚体形式,与单体形式相比增强了HA特异性免疫应答。植物衍生的AIV HA三聚体引发潜在中和抗体与来自植物和异源灭活的AIV的同源病毒样颗粒相互作用。 elPylation没有影响稳定的H5三聚体的功能和抗原性。这些数据允许进一步的发展,包括生产,净化和病毒挑战实验的扩大,以实现有效的禽流感疫苗生产的合适技术。

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