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首页> 外文期刊>Frontiers in Veterinary Science >Hemagglutinin-Specific Non-neutralizing Antibody Is Essential for Protection Provided by Inactivated and Viral-Vectored H7N9 Avian Influenza Vaccines in Chickens
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Hemagglutinin-Specific Non-neutralizing Antibody Is Essential for Protection Provided by Inactivated and Viral-Vectored H7N9 Avian Influenza Vaccines in Chickens

机译:血凝素特异性的非中和抗体对于鸡氏灭活和病毒的H7N9禽流感疫苗提供的保护是必不可少的

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摘要

Hemagglutination inhibition (HI) and virus neutralization antibody (nAb) do not always correlate with the protection of H7 avian influenza vaccines in mammals and humans. The contribution of different classes of antibodies induced by H7N9 vaccines to protection is poorly characterized in chickens. In this study, antibody responses induced by both inactivated and viral-vectored H7N9 vaccines in chickens were dissected. Chickens immunized with inactivated H7N9 vaccine showed 50% seroconversion rate and low HI and nAb titers at week 3 post immunization. However, inactivated H7N9 vaccine elicited 100% seroconversion rate in terms of high levels of HA-binding IgG antibody determined by ELISA. Despite inducing low levels of nAb, inactivated H7N9 vaccine conferred full protection against H7N9 challenge in chickens and markedly inhibited virus shedding. Similarly, Newcastle disease virus (NDV)-vectored H7N9 vaccine induced marginal HI and nAb titers but high level of IgG antibody against H7N9 virus. In addition, NDV-H7N9 vaccine also provided complete protection against H7N9 challenge. Chicken antisera had a high IgG/VN ratio, indicating that a larger proportion of serum antibodies were non-neutralizing antibody (non-nAb). More importantly, passive transfer challenge experiment showed that non-neutralizing antisera provided partial protection (37.5%) of chickens against H7N9 challenge, without significant difference from that provided by neutralizing antisera. In conclusion, our results suggest that antibodies measured by the traditional HI and virus neutralization assays do not correlate with the protection of inactivated and viral-vectored H7N9 vaccines in chickens, and HA-binding non-nAb also contributes to the protection against H7N9 infection. Total binding antibody can be used as a key correlate to the protection of H7N9 vaccine.
机译:血凝抑制(HI)和病毒中和抗体(NAB)并不总是与哺乳动物和人类的H7禽流感疫苗的保护相关。 H7N9疫苗诱导的不同类别抗体的贡献在鸡中的特征差异很差。在本研究中,解剖鸡中的灭活和病毒载体的H7N9疫苗诱导的抗体反应。用灭活H7N9疫苗免疫的鸡显示出50%的血清转化率和低HI和NAB滴度,第3周后免疫接种后。然而,灭活的H7N9疫苗在由ELISA测定的高水平的HA结合IgG抗体方面引发了100%的血清转化率。尽管诱导低水平的NAb,但灭活的H7N9疫苗赋予了鸡中H7N9攻击的全面保护,并且显着抑制病毒脱落。同样,新城疫病毒(NDV) - Vectored H7N9疫苗诱导了边缘HI和NAB滴度,但达到H7N9病毒的高水平IgG抗体。此外,NDV-H7N9疫苗还提供了针对H7N9挑战的完全保护。鸡抗血清具有高IgG / VN比,表明血清抗体比例较大是非中和抗体(非NaB)。更重要的是,被动转移挑战实验表明,非中和抗血清提供了针对H7N9挑战的部分保护(37.5%)鸡,而不是通过中和抗血清提供的显着差异。总之,我们的结果表明,通过传统的HI和病毒中和测定测量的抗体与鸡中的灭活和病毒 - 载体的H7N9疫苗的保护不相关,并且HA结合的非Nab也有助于防止H7N9感染的保护。总结合抗体可用作与保护H7N9疫苗的保护的关键。

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