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Immunization with the H5N1 Recombinant Vaccine Candidate Induces High Protection in Chickens against Vietnamese Highly Pathogenic Avian Influenza Virus Strains

机译:H5N1重组疫苗候选者的免疫接种可诱导鸡对越南高致病性禽流感病毒株的高度保护

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摘要

Vietnam is one of the countries most affected worldwide by the highly pathogenic avian influenza (HPAI) virus, which caused enormous economic loss and posed threats to public health. Over nearly two decades, with the antigenic changes in the diversified H5Ny viruses, the limited protective efficacy of the available vaccines was encountered. Therefore, it is necessary to approach a technology platform for the country to accelerate vaccine production that enables quick response to new influenza subtypes. This study utilized a powerful reverse genetics technique to successfully generate a recombinant H5N1 vaccine strain (designated as IBT-RG02) containing two surface proteins (haemagglutinin (HA) and neuraminidase (NA)) from the HPAI H5N1 (A/duck/Vietnam/HT2/2014(H5N1)) of the dominant clade 2.3.2.1c in Vietnam during 2012–2014. Importantly, the IBT-RG02 vaccine candidate has elicited high antibody titres in chickens (geometric mean titre (GMT) of 6.42 and 6.92, log on day 14 and day 28 p.i., respectively). To test the efficacy, immunized chickens were challenged with the circulating virulent strains. As results, there was a high protection rate of 91.6% chickens against the virulent A/DK/VN/Bacninh/NCVD-17A384/2017 of the same clade and a cross-protection of 83.3% against A/duck/TG/NAVET(3)/2013 virus of clade 1.1. Our promising results showed that we can independently master the reverse genetics technology for generation of highly immunogenic vaccine candidates, and henceforth, it is a timely manner to reformulate avian influenza virus vaccines against variable H5 clade HPAI viruses in Vietnam.
机译:越南是世界上受高致病性禽流感(HPAI)病毒影响最大的国家之一,该病毒造成了巨大的经济损失,并威胁到公共健康。在将近二十年的时间里,随着多种H5Ny病毒的抗原性变化,现有疫苗的保护作用受到了限制。因此,有必要为该国建立一个技术平台,以加速疫苗生产,从而能够对新的流感亚型快速做出反应。这项研究利用强大的反向遗传学技术成功地从HPAI H5N1(A / duck / Vietnam / HT2)产生了包含两个表面蛋白(血凝素(HA)和神经氨酸酶(NA))的重组H5N1疫苗株(称为IBT-RG02) / 2014(H5N1))2012-2014年期间越南的主要进化枝2.3.2.1c。重要的是,IBT-RG02候选疫苗在鸡中引起了很高的抗体滴度(几何平均滴度(GMT)为6.42和6.92,分别在第14天和第28天登录)。为了测试功效,用循环的毒性毒株攻击免疫的鸡。结果,对同一个进化枝的强毒A / DK / VN / Bacninh / NCVD-17A384 / 2017的保护率高达91.6%,对A /鸭/ TG / NAVET的交叉保护率为83.3%( 3)/ 2013进化枝病毒1.1。我们有希望的结果表明,我们可以独立掌握反向遗传学技术来产生高度免疫原性的候选疫苗,因此,这是及时地重新制定针对越南H5进化枝HPAI病毒的禽流感疫苗的及时方式。

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