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首页> 外文期刊>The Journal of Infectious Diseases >Influenza B virus with modified hemagglutinin cleavage site as a novel attenuated live vaccine.
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Influenza B virus with modified hemagglutinin cleavage site as a novel attenuated live vaccine.

机译:具有改良的血凝素裂解位点的乙型流感病毒,作为新型减毒活疫苗。

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摘要

BACKGROUND: Both pandemic and interpandemic influenza is associated with high morbidity and mortality worldwide. Seasonal epidemics are caused by both influenza A and B virus strains that cocirculate with varying predominance and may give rise to severe illness equally. According to World Health Organization recommendations, current annual vaccines are composed of 2 type A and 1 type B virus-specific component. METHODS: As a novel attenuated live vaccine against influenza B virus, we generated a hemagglutinin cleavage site mutant of strain B/Lee/40 by replacing the common monobasic cleavage site recognized by trypsinlike proteases with an elastase-sensitive site, and we investigated the in vitro properties, attenuation, humoral responses, and efficacy in mice. RESULTS: This mutant virus replicated in cell culture equally well as the wild type but in a strictly elastase-dependent manner. In contrast to the mouse-pathogenic parental virus, the cleavage site mutant was fully attenuated in mice and not detectable in their lungs. After 1 intranasal immunization, the animals survived lethal challenge with wild-type virus without weight loss or any other signs of disease. Furthermore, no challenge virus could be reisolated from the lungs of vaccinated mice. CONCLUSIONS: These findings demonstrate that proteolytic activation mutants can serve as live vaccine against influenza B virus.
机译:背景:大流行性流感和大流行间流感都与全世界的高发病率和高死亡率有关。季节性流行病是由甲型和乙型流感病毒以不同的流行率共同流行引起的,并可能同样导致严重的疾病。根据世界卫生组织的建议,当前的年度疫苗由2种A型和1种B型病毒特异性成分组成。方法:作为一种新型的针对乙型流感病毒的减毒活疫苗,我们用弹性蛋白酶敏感位点取代了胰蛋白酶样蛋白酶识别的常见一元裂解位点,从而产生了菌株B / Lee / 40的血凝素裂解位点突变体,并在小鼠的体外特性,衰减,体液反应和功效。结果:该突变病毒在细胞培养物中的复制与野生型相同,但严格地依赖于弹性蛋白酶。与小鼠致病性亲本病毒相反,切割位点突变体在小鼠中被完全减弱,在其肺中无法检测到。鼻内免疫1次后,这些动物在接受野生型病毒的致命攻击后仍存活下来,而没有体重减轻或任何其他疾病迹象。此外,不能从接种小鼠的肺中分离出挑战病毒。结论:这些发现表明蛋白水解激活突变体可以作为针对乙型流感病毒的活疫苗。

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