首页> 外文期刊>Veterinary Microbiology >A two dose immunization with an inactivated reassortant H5N2 virus protects chickens against lethal challenge with homologous 2.3.2.1 clade and heterologous 2.2 clade highly pathogenic avian influenza H5N1 viruses
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A two dose immunization with an inactivated reassortant H5N2 virus protects chickens against lethal challenge with homologous 2.3.2.1 clade and heterologous 2.2 clade highly pathogenic avian influenza H5N1 viruses

机译:用灭活的重新分化H5N2病毒免疫两种剂量免疫保护鸡免受同源的2.3.2.1疏水症和异源2.2思潮高致病性禽流感H5N1病毒

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The present study was aimed at generating a reassortant vaccine candidate virus with Glade 2.3.2.1 Hemagglutinin (HA) and its evaluation in a challenge study for protection against homologous (2.3.2.1 clade) and heterologous (2.2 Glade) highly pathogenic avian influenza (HPAI) H5N1 viruses. Plasmid-based reverse genetics technique was used to rescue a 5 + 3 reassortant H5N2 strain containing the modified HA of H5N1 (clade 2.3.2.1), the Neuraminidase (NA) of H9N2, the Matrix (M) of H5N1 and the internal genes of A/WSN/33 H1N1. In addition, another 6 + 2 reassortant virus containing modified HA from H5N1 (clade 2.3.2.1), the NA from H9N2 and the internal genes of A/WSN/33 H1N1 was also rescued. The 5 + 3 reassortant H5N2 virus could grow to a higher titer in both MDCK cells and chicken eggs compared to the 6 + 2 reassortant H5N2 virus. The vaccine containing the inactivated 5 + 3 reassortant H5N2 virus was used in a two-dose immunization regime which protected specific pathogen free (SPF) chickens against two repeated challenges with homologous 2.3.2.1 clade and heterologous 2.2 clade HPAI H5N1 viruses. The 5 + 3 reassortant H5N2 virus based on clade 2.3.2.1 generated in this study can be effective in protecting chickens in the case of an outbreak caused by antigenically different clade 2.2 HPAI H5N1 viruses and opens the way to explore its applicability as potential vaccine candidate especially in the Asian countries reporting these clades frequently. The study also indicates that sequential immunization can broaden protection level against antigenically diverse strains of H5N1 viruses.
机译:目前的研究旨在产生具有Glade 2.3.2.1 Hemagglutinin(HA)的重新级疫苗候选病毒及其在挑战研究中的评价,用于保护同源(2.3.2.1疏水)和异源(2.2沼泽)高致病性禽流感(HPAI) )H5N1病毒。基于质粒的逆向遗传技术用于拯救含有H5N1(CLADE 2.3.2.1)的改性HA,H9N2的神经氨酸(NA),H5N1的基质(M)和内部基因的改性HA的5 + 3重配位H5N2菌株。 A / WSN / 33 H1N1。此外,还救出了来自H5N1(CLADE 2.3.2.1)的改性HA的另外的6 + 2重配毒性病毒,来自H9N2的NA和A / WSN / 33 H1N1的内部基因。与6 + 2重配H5N2病毒相比,5 + 3重配H5N2病毒可以生长到MDCK细胞和鸡蛋中的较高滴度。含有灭活的5 + 3重配H5N2病毒的疫苗用于双剂量免疫制度,其保护特异性病原体(SPF)鸡,与同源2.3.2.1枝条和异源2.2枝HPAI HPAI H5N1病毒。基于CLADE 2.3.2.1的5 + 3重配H5N2病毒在本研究中产生的可能性可以有效地保护鸡在抗原不同的CLADE 2.2 HPAI H5N1病毒引起的爆发中,并打开探索其作为潜在疫苗候选者的适用性特别是在亚洲国家经常报告这些枝条。该研究还表明,序贯免疫可以扩大防止抗原性多种H5N1病毒的保护水平。

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