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两种H5N8甲型流感疫苗候选毒株的研发与比较

Development and comparison of two H5N8 influenza A vaccine candidate strains.

作者信息

Lee Mi-Seon, Jang Eun Young, Cho Junhyung, Kim Kisoon, Lee Chan Hee, Yi Hwajung

机构信息

Division of Viral Disease Research, Center for Infectious Diseases Research, Korea National Institute of Health, Korea Centers for Disease Control and Prevention, 187, Osongsaengmyeong2-ro, Cheongju-si, 28159, Chungcheongbuk-do, Korea.

Department of Life Science and Technology, Pai Chai University, Daejeon, Korea.

出版信息

Arch Virol. 2019 Jan;164(1):127-136. doi: 10.1007/s00705-018-4062-9. Epub 2018 Oct 5.

Abstract

Avian influenza viruses circulating in birds have caused outbreaks of infection in poultry and humans, thereby threatening public health. Recently, a highly pathogenic avian influenza (HPAI) virus (H5N8) of clade 2.3.4.4 emerged in Korea and other countries and caused multiple outbreaks in domestic and wild birds, with concerns for human infection. To combat HPAI viral infections, novel vaccines are likely to be the most effective approach. Therefore, in this study, we generated H5N8 vaccine candidate viruses based on a Korean isolate (A/broiler duck/Korea/Buan2/2014). The vaccine candidate viruses were 2:6 reassortants expressing the two surface glycoproteins of A/broiler duck/Korea/Buan2/2014 on an A/Puerto Rico/8/34 (PR8) backbone generated by using an eight-plasmid-based reverse genetics system with or without replacement of the multi-basic amino acid cleavage motif (MBCM, a crucial pathogenic factor in HPAI virus) with a bi-basic amino acid cleavage motif (BBCM) in their HA. An H5N8 vaccine candidate virus containing the BBCM showed attenuated pathogenesis in embryonated eggs and exhibited less virulence in the infected mice compared with the wild H5N8 virus containing an MBCM. Vaccination with an inactivated preparation of the vaccine candidate virus protected mice from lethal H5N8 viral challenge. This is the first report of the development and evaluation of H5N8 vaccine strains (with an MBCM or BBCM) of HA clade 2.3.4.4 as vaccine candidates. Our findings suggest that H5N8 strains with a BBCM instead of an MBCM might be considered for H5N8 vaccine seed virus development or as a reference vaccine against H5N8 viral strains.

摘要

在鸟类中传播的禽流感病毒已引发家禽和人类的感染疫情,从而威胁到公众健康。最近,2.3.4.4分支的高致病性禽流感(HPAI)病毒(H5N8)在韩国和其他国家出现,并在 domestic 和 wild 鸟类中引发了多次疫情,引发了对人类感染的担忧。为了对抗HPAI病毒感染,新型疫苗可能是最有效的方法。因此,在本研究中,我们基于韩国分离株(A/肉鸡鸭/韩国/扶安2/2014)制备了H5N8候选疫苗病毒。候选疫苗病毒是2:6重配体,在A/波多黎各/8/34(PR8)骨架上表达A/肉鸡鸭/韩国/扶安2/2014的两种表面糖蛋白,该骨架是通过使用基于八质粒的反向遗传系统生成的,其HA中多碱性氨基酸裂解基序(MBCM,HPAI病毒中的关键致病因子)有或没有被双碱性氨基酸裂解基序(BBCM)取代。与含有MBCM的野生H5N8病毒相比,含有BBCM的H5N8候选疫苗病毒在鸡胚中表现出减弱的致病性,并且在感染小鼠中表现出较低的毒力。用候选疫苗病毒的灭活制剂进行疫苗接种可保护小鼠免受致命的H5N8病毒攻击。这是关于将HA分支2.3.4.4的H5N8疫苗株(含MBCM或BBCM)作为候选疫苗进行开发和评估的首次报告。我们的研究结果表明,具有BBCM而非MBCM的H5N8毒株可考虑用于H5N8疫苗种子病毒的开发或作为针对H5N8病毒株的参考疫苗。

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