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新城疫病毒载体疫苗的异源初免-加强免疫可保护肉鸡抵御高致病性禽流感病毒和新城疫病毒。

Heterologous prime-boost immunization of Newcastle disease virus vectored vaccines protected broiler chickens against highly pathogenic avian influenza and Newcastle disease viruses.

作者信息

Kim Shin-Hee, Samal Siba K

机构信息

Virginia-Maryland Regional College of Veterinary Medicine, University of Maryland, College Park, MD, USA.

Virginia-Maryland Regional College of Veterinary Medicine, University of Maryland, College Park, MD, USA.

出版信息

Vaccine. 2017 Jul 24;35(33):4133-4139. doi: 10.1016/j.vaccine.2017.06.055. Epub 2017 Jun 28.

Abstract

Avian Influenza virus (AIV) is an important pathogen for both human and animal health. There is a great need to develop a safe and effective vaccine for AI infections in the field. Live-attenuated Newcastle disease virus (NDV) vectored AI vaccines have shown to be effective, but preexisting antibodies to the vaccine vector can affect the protective efficacy of the vaccine in the field. To improve the efficacy of AI vaccine, we generated a novel vectored vaccine by using a chimeric NDV vector that is serologically distant from NDV. In this study, the protective efficacy of our vaccines was evaluated by using H5N1 highly pathogenic avian influenza virus (HPAIV) strain A/Vietnam/1203/2004, a prototype strain for vaccine development. The vaccine viruses were three chimeric NDVs expressing the hemagglutinin (HA) protein in combination with the neuraminidase (NA) protein, matrix 1 protein, or nonstructural 1 protein. Comparison of their protective efficacy between a single and prime-boost immunizations indicated that prime immunization of 1-day-old SPF chicks with our vaccine viruses followed by boosting with the conventional NDV vector strain LaSota expressing the HA protein provided complete protection of chickens against mortality, clinical signs and virus shedding. Further verification of our heterologous prime-boost immunization using commercial broiler chickens suggested that a sequential immunization of chickens with chimeric NDV vector expressing the HA and NA proteins following the boost with NDV vector expressing the HA protein can be a promising strategy for the field vaccination against HPAIVs and against highly virulent NDVs.

摘要

禽流感病毒(AIV)是对人类和动物健康都很重要的病原体。在该领域,非常需要开发一种安全有效的禽流感感染疫苗。减毒活新城疫病毒(NDV)载体禽流感疫苗已显示出有效性,但针对疫苗载体的预先存在的抗体可能会影响该疫苗在实际应用中的保护效果。为提高禽流感疫苗的效力,我们通过使用一种与NDV血清学关系较远的嵌合NDV载体,构建了一种新型载体疫苗。在本研究中,我们使用H5N1高致病性禽流感病毒(HPAIV)毒株A/越南/1203/2004(一种用于疫苗开发的原型毒株)来评估我们疫苗的保护效果。疫苗病毒是三种表达血凝素(HA)蛋白并分别与神经氨酸酶(NA)蛋白、基质1蛋白或非结构1蛋白组合的嵌合NDV。对单次免疫和初免 - 加强免疫之间的保护效果进行比较表明,用我们的疫苗病毒对1日龄SPF雏鸡进行初免,随后用表达HA蛋白的传统NDV载体毒株LaSota进行加强免疫,可使鸡完全免受死亡、临床症状和病毒 shedding的影响。使用商品肉鸡对我们的异源初免 - 加强免疫进行进一步验证表明,在用表达HA蛋白的NDV载体进行加强免疫后,依次用表达HA和NA蛋白的嵌合NDV载体对鸡进行免疫,可能是针对HPAIV和高致病性NDV进行现场疫苗接种的一种有前景的策略。 (注:原文中“virus shedding”未明确中文释义,直接保留英文)

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