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用密码子对偏倚去优化的活减毒流感疫苗对猪进行免疫接种可预防同源性挑战。

Vaccination of pigs with a codon-pair bias de-optimized live attenuated influenza vaccine protects from homologous challenge.

机构信息

Virus and Prion Research Unit, National Animal Disease Center, USDA-ARS, Ames, IA, USA.

Dept. of Veterinary Diagnostic and Production Animal Medicine, Iowa State University, Ames, IA, USA.

出版信息

Vaccine. 2018 Feb 14;36(8):1101-1107. doi: 10.1016/j.vaccine.2018.01.027.

Abstract

Influenza A virus (IAV) in swine constitutes a major economic burden for producers as well as a potential threat to public health. Whole inactivated virus vaccines (WIV) are the predominant countermeasure employed to control IAV in swine herds in the United States despite the superior protection, and diminished adverse effects, induced by live attenuated influenza vaccines (LAIV). A major hurdle for the development of LAIV exists in achieving the proper level of attenuation while maintaining immunogenicity. Using Synthetic Attenuated Virus Engineering (SAVE) to introduce codon-pair bias de-optimization (CPBD) into the hemagglutinin (HA) and neuraminidase (NA) gene segments of pandemic H1N1 IAV, a novel LAIV was produced and evaluated for attenuation, immunogenicity, and efficacy in pigs. The CPBD LAIV induced inappreciable pathology following intranasal administration yet induced robust serum and mucosal antibody titers. CPBD LAIV vaccinated pigs challenged with wild-type virus showed protection from disease and virus detection, highlighted by the absence of detectable virus titers in the nasal passages and lungs. These results demonstrate the efficacy of a LAIV designed by SAVE codon de-optimization in pigs, providing support for the continued development of CPBD LAIV for use in swine.

摘要

猪流感病毒(IAV)对生产者来说是一个重大的经济负担,也是对公共卫生的潜在威胁。全灭活病毒疫苗(WIV)是美国控制猪群 IAV 的主要对策,尽管活减毒流感疫苗(LAIV)能提供更好的保护和减轻不良反应。LAIV 的主要发展障碍在于在保持免疫原性的同时实现适当的减毒水平。通过使用合成减毒病毒工程(SAVE)将密码子对偏性去优化(CPBD)引入大流行性 H1N1 IAV 的血凝素(HA)和神经氨酸酶(NA)基因片段,生产了一种新型的 LAIV,并对其在猪中的减毒、免疫原性和疗效进行了评估。CPBD LAIV 经鼻内给药后几乎不会引起明显的病理变化,但能诱导出强大的血清和黏膜抗体滴度。用野生型病毒对 CPBD LAIV 接种的猪进行攻毒试验,结果显示猪能免受疾病和病毒检测的影响,鼻道和肺部均未检测到可检测的病毒滴度。这些结果证明了 SAVE 密码子去优化设计的 LAIV 在猪中的有效性,为 CPBD LAIV 在猪中的进一步开发提供了支持。

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