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A Recombinant Rabies Virus Encoding Two Copies of the Glycoprotein Gene Confers Protection in Dogs against a Virulent Challenge

机译:编码两个副本的糖蛋白基因的重组狂犬病病毒可以保护犬免受猛烈攻击。

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摘要

The rabies virus (RABV) glycoprotein (G) is the principal antigen responsible for the induction of virus neutralizing antibodies (VNA) and is the major modality of protective immunity in animals. A recombinant RABV HEP-Flury strain was generated by reverse genetics to encode two copies of the G-gene (referred to as HEP-dG). The biological properties of HEP-dG were compared to those of the parental virus (HEP-Flury strain). The HEP-dG recombinant virus grew 100 times more efficiently in BHK-21 cell than the parental virus, yet the virulence of the dG recombinant virus in suckling mice was lower than the parental virus. The HEP-dG virus can improve the expression of G-gene mRNA and the G protein and produce more offspring viruses in cells. The amount of G protein revealed a positive relationship with immunogenicity in mice and dogs. The inactivated HEP-dG recombinant virus induced higher levels of VNA and conferred better protection against virulent RABV in mice and dogs than the inactivated parental virus and a commercial vaccine. The protective antibody persisted for at least 12 months. These data demonstrate that the HEP-dG is stable, induces a strong VNA response and confers protective immunity more effectively than the RABV HEP-Flury strain. HEP-dG could be a potential candidate in the development of novel inactivated rabies vaccines
机译:狂犬病毒(RABV)糖蛋白(G)是负责诱导病毒中和抗体(VNA)的主要抗原,并且是动物保护性免疫的主要形式。通过反向遗传学产生了重组RABV HEP-Flury菌株,以编码两个拷贝的G基因(称为HEP-dG)。将HEP-dG的生物学特性与亲本病毒(HEP-Flury株)的生物学特性进行了比较。 HEP-dG重组病毒在BHK-21细胞中的生长效率比亲本病毒高100倍,但dG重组病毒在乳鼠中的毒性低于亲本病毒。 HEP-dG病毒可改善G基因mRNA和G蛋白的表达,并在细胞中产生更多后代病毒。 G蛋白的量与小鼠和狗的免疫原性呈正相关。与灭活的亲本病毒和市售疫苗相比,灭活的HEP-dG重组病毒诱导了更高水平的VNA,并为小鼠和狗提供了更好的针对强毒RABV的保护。保护性抗体持续至少12个月。这些数据表明,与RABV HEP-Flury菌株相比,HEP-dG稳定,诱导强烈的VNA反应并更有效地赋予保护性免疫力。 HEP-dG可能是新型灭活狂犬病疫苗开发的潜在候选者

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