首页> 外文期刊>Clinical and vaccine immunology: CVI >Cross-Reactive Immunity to Clade 2 Strains of Influenza Virus A Subtype H5N1 Induced in Adults and Elderly Patients by Fluval, a Prototype Pandemic Influenza Virus Vaccine Derived by Reverse Genetics, Formulated with a Phosphate Adjuvant, and Directed to Clade 1 Strains
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Cross-Reactive Immunity to Clade 2 Strains of Influenza Virus A Subtype H5N1 Induced in Adults and Elderly Patients by Fluval, a Prototype Pandemic Influenza Virus Vaccine Derived by Reverse Genetics, Formulated with a Phosphate Adjuvant, and Directed to Clade 1 Strains

机译:流感病毒对成年人和老年人的H2N亚型2株H5N1亚型的交叉反应免疫,是由流感病毒引起的,这是一种反向遗传基因衍生的大流行性流感病毒疫苗,由磷酸盐佐剂配制,并导向Clade 1株。

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High fatality rates and multiple cases of transmission of avian H5N1 influenza viruses to humans illustrate the urgent need for an efficacious, cross-protective vaccine against H5N1 strains. Extensive genetic characterization of H5N1 strains has elucidated the natural evolutionary relationship of these strains, linking groups known as clades to a common ancestor. Although the clades and subclades probably differ sufficiently in their antigenic structure to warrant the preparation of different vaccines, there is some evidence that cross-reactive immunity can be afforded. We aimed to assess the immunogenicity of a clade 1 H5N1 (NIBRG-14) whole-virus vaccine with an aluminum phosphate adjuvant and to determine whether it can induce cross-reactive immunity against antigenically drifted clade 2 H5N1 strains, both those derived by reverse genetics and wild-type isolates. A total of 88 (44 adult and 44 elderly) subjects, who received one dose (6 μg) of the vaccine, were studied. As judged by U.S. and European licensing criteria based on hemagglutination inhibition, the subjects developed cross-reactive immunity against all studied H5N1 strains belonging to a clade different from that of the strain utilized to produce the vaccine. Our findings highlight the importance of stockpiling, since cross-immune reactions induced by prepandemic vaccines will likely reduce morbidity and mortality in case of a pandemic.
机译:高死亡率和禽流感H5N1流感病毒向人类传播的多例病例表明,迫切需要针对H5N1株的有效的交叉保护疫苗。 H5N1菌株的广泛遗传特征已经阐明了这些菌株的自然进化关系,将称为进化枝的群体与一个共同祖先联系起来。尽管进化枝和亚进化枝的抗原结构可能差异很大,足以保证制备不同的疫苗,但有一些证据表明可以提供交叉反应性免疫。我们旨在评估进化枝1 H5N1(NIBRG-14)全病毒疫苗与磷酸铝佐剂的免疫原性,并确定它是否可以诱导针对抗原性漂移进化枝2 H5N1菌株的交叉反应性免疫,这两个都是通过反向遗传学获得的和野生型分离株。总共研究了88名(44名成人和44名老年人)受试者,他们接受了一剂(6μg)疫苗。根据基于血凝抑制作用的美国和欧洲许可标准判断,受试者对所有研究的H5N1菌株都具有交叉反应性免疫力,该菌株属于进化枝,与用于生产疫苗的菌株不同。我们的发现强调了储存的重要性,因为大流行前疫苗引起的交叉免疫反应可能会降低大流行时的发病率和死亡率。

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