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首页> 外文期刊>Vaccine >Maternal antibody inhibition of recombinant Newcastle disease virus vectored vaccine in a primary or booster avian influenza vaccination program of broiler chickens
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Maternal antibody inhibition of recombinant Newcastle disease virus vectored vaccine in a primary or booster avian influenza vaccination program of broiler chickens

机译:母体抗体抑制重组新城疾病病毒,肉鸡鸡的主要或加强禽流感疫苗接种程序中的疫苗

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摘要

Maternally-derived antibodies (MDA) provide early protection from disease, but may interfere with active immunity in young chicks. In highly pathogenic avian influenza virus (HPAIV)-enzootic countries, broiler chickens typically have MDA to Newcastle disease virus (NDV) and H5 HPAIV, and their impact on active immunity from recombinant vectored vaccines is unclear. We assessed the effectiveness of a spray-applied recombinant NDV vaccine with H5 AIV insert (rNDV-H5) and a recombinant turkey herpesvirus (HVT) vaccine with H5 AIV insert (rHVT-H5) in commercial broilers with MDA to NDV alone (MDA:AIV?NDV+) or to NDV plus AIV (MDA:AIV+NDV+) to provide protection against homologous HPAIV challenge. In Experiment 1, chicks were spray-vaccinated with rNDV-H5 at 3?weeks (3w) and challenged at 5?weeks (5w). All sham-vaccinated progeny lacked AIV antibodies and died following challenge. In rNDV-H5 vaccine groups, AIV and NDV MDA had completely declined to non-detectable levels by vaccination, enabling rNDV-H5 spray vaccine to elicit a protective AIV antibody response by 5w, with 70–78% survival and significant reduction of virus shedding compared to shams. In Experiment 2, progeny were vaccinated with rHVT-H5 and rNDV-H5 at 1?day (1d) or 3w and challenged at 5w. All sham-vaccinated progeny lacked AIV antibodies and died following challenge. In rHVT-H5(1d) vaccine groups, irrespective of rNDV-H5(3w) boost, AIV antibodies reached protective levels pre-challenge, as all progeny survived and virus shedding significantly decreased compared to shams. In contrast, rNDV-H5-vaccinated progeny had AIV and/or NDV MDA at the time of vaccination (1d and/or 3w) and failed to develop a protective immune response by 5w, resulting in 100% mortality after challenge. Our results demonstrate that MDA to AIV had minimal impact on the effectiveness of rHVT-H5, but MDA to AIV and/or NDV at the time of vaccination can prevent development of protective immunity from a primary or booster rNDV-H5 vaccine.
机译:母源性衍生的抗体(MDA)提供早期的疾病保护,但可能会干扰年轻小鸡的积极免疫力。在高度致病性禽流感病毒(HPAIV) - 血统国家,肉鸡鸡通常具有MDA至Newcastle疾病病毒(NDV)和H5 HPAIV,它们对重组载体疫苗的影响对来自重组的疫苗的影响尚不清楚。我们评估了用H5 AIV插入物(RNDV-H5)和重组土耳其疱疹病毒(HVT)疫苗的喷涂重组NDV疫苗的有效性,用H5 AIV插入物(RHVT-H5)在具有MDA至NDV的商业肉鸡中(MDA: AIV?NDV +)或NDV加AIV(MDA:AIV + NDV +),以提供针对同源HPAIV挑战的保护。在实验1中,用RNDV-H5在3?周(3W)下喷射雏鸡,并在5?周(5W)攻击。所有假疫苗的后代缺乏AIV抗体,并在挑战后死亡。在RNDV-H5疫苗基团中,AIV和NDV MDA通过疫苗接种完全下降到未检测到的水平,使RNDV-H5喷雾疫苗引发5W的保护AIV抗体反应,生存70-78%,病毒脱落的显着减少与shams相比。在实验2中,用rHVT-H5和RNDV-H5接种后代(1D)或3W,并在5W攻击。所有假疫苗的后代缺乏AIV抗体,并在挑战后死亡。在RHVT-H5(1D)疫苗基团中,无论RNDV-H5(3W)提升,AIV抗​​体达到保护水平前挑战,因为与Shams相比,所有后代的生存和病毒脱落显着降低。相反,在疫苗接种(1D和/或3W)时,RNDV-H5接种疫苗的后代具有AIV和/或NDV MDA,并且未能产生5W的保护性免疫应答,导致攻击后的10%死亡率。我们的结果表明,MDA对AIV对RHVT-H5的有效性影响最小,但疫苗接种时的MDA至AIV和/或NDV可以防止从初级或增强RNDV-H5疫苗的保护性免疫发育。

著录项

  • 来源
    《Vaccine 》 |2018年第43期| 共12页
  • 作者单位

    Exotic and Emerging Avian Viral Diseases Research Unit Southeast Poultry Research Laboratory U.S. National Poultry Research Center Agricultural Research Service U.S. Department of Agriculture;

    Exotic and Emerging Avian Viral Diseases Research Unit Southeast Poultry Research Laboratory U.S. National Poultry Research Center Agricultural Research Service U.S. Department of Agriculture;

    Exotic and Emerging Avian Viral Diseases Research Unit Southeast Poultry Research Laboratory U.S. National Poultry Research Center Agricultural Research Service U.S. Department of Agriculture;

    Exotic and Emerging Avian Viral Diseases Research Unit Southeast Poultry Research Laboratory U.S. National Poultry Research Center Agricultural Research Service U.S. Department of Agriculture;

    Exotic and Emerging Avian Viral Diseases Research Unit Southeast Poultry Research Laboratory U.S. National Poultry Research Center Agricultural Research Service U.S. Department of Agriculture;

    Exotic and Emerging Avian Viral Diseases Research Unit Southeast Poultry Research Laboratory U.S. National Poultry Research Center Agricultural Research Service U.S. Department of Agriculture;

    Exotic and Emerging Avian Viral Diseases Research Unit Southeast Poultry Research Laboratory U.S. National Poultry Research Center Agricultural Research Service U.S. Department of Agriculture;

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  • 原文格式 PDF
  • 正文语种 other
  • 中图分类 医学免疫学 ;
  • 关键词

    Highly pathogenic avian influenza; Newcastle disease virus; Maternally-derived antibodies; Recombinant vector vaccine; Vaccine interference;

    机译:高致病性禽流感;新城疫病毒;母源性衍生抗体;重组载体疫苗;疫苗干扰;

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