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The production and development of H7 Influenza virus pseudotypes for the study of humoral responses against avian viruses

机译:H7流感病毒假型的产生和发展用于研究针对禽病毒的体液反应

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摘要

In recent years, high pathogenicity avian influenza (HPAI) virus, H5N1, low pathogenicity avian influenza (LPAI) virus, H9N2, and both HPAI and LPAI H7 viruses have proved devastating for the affected economies reliant on poultry industry, and have posed serious public health concerns. These viruses have repeatedly caused zoonotic disease in humans, raising concerns of a potential influenza pandemic. Despite the focus on the HPAI H5N1 outbreak in 1997 some H7 strains have also shown to be occasionally adaptable to infecting humans. Therefore, applying knowledge of the H5 virus evolution and spread to the development of sensitive serological methods is likely to improve our ability to understand and respond to the emergence of other HPAI and LPAI viruses, present within the avian populations, with the potential to infect humans and other species. In the present study we describe the construction and production of lentiviral pseudotypes bearing envelope glycoproteins of LPAI and HPAI H7 avian influenza viruses, which have been responsible for several outbreaks in the past decade. The H7 pseudotypes were evaluated in pseudotype-based neutralization (pp-NT) assays in order to detect and quantify the presence of neutralizing antibodies in avian sera, which were confirmed H7 positive by inhibition of haemagglutination (HI) test. Overall, our results substantiate influenza virus pseudotype neutralization as a robust tool for influenza sero-surveillance.
机译:近年来,高致病性禽流感(HPAI)病毒,H5N1,低致病性禽流感(LPAI)病毒,H9N2以及HPAI和LPAI H7病毒已被证明对依赖家禽业的受灾经济具有毁灭性,并已引起严重的公众关注。健康问题。这些病毒已多次在人类中引起人畜共患疾病,引起人们对潜在的流感大流行的担忧。尽管1997年重点研究了高致病性禽流感H5N1爆发,但一些H7菌株偶尔也能适应感染人类。因此,将H5病毒的进化和传播知识应用到敏感的血清学方法的开发中,可能会提高我们对禽类种群中存在的其他HPAI和LPAI病毒的理解和应对能力,并具有感染人类的​​潜力。和其他物种。在本研究中,我们描述了携带LPAI和HPAI H7禽流感病毒包膜糖蛋白的慢病毒假型的构建和生产,这些假蛋白在过去十年中曾导致多次爆发。为了检测和定量禽血清中中和抗体的存在,在基于假型的中和(pp-NT)分析中评估了H7假型,通过抑制血细胞凝集(HI)测试确认了H7阳性。总体而言,我们的研究结果证实了流感病毒假型中和是流感病毒血清监测的可靠工具。

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