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Coated protein nanoclusters from influenza H7N9 HA are highly immunogenic and induce robust protective immunity

机译:来自H7N9 HA流感的被膜蛋白纳米簇具有高度的免疫原性并具有强大的保护性免疫力

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摘要

Recurring influenza viruses pose an annual threat to public health. A time-saving, cost-effective and egg-independent influenza vaccine approach is important particularly when responding to an emerging pandemic. We fabricated coated, two-layer protein nanoclusters from recombinant trimeric hemagglutinin from an avian-origin H7N9 influenza A virus as an approach for vaccine development in response to an emerging pandemic. Assessment of the virus-specific immune responses and protective efficacy in mice immunized with the nanoclusters demonstrated that the vaccine candidates were highly immunogenic, able to induce protective immunity and long-lasting humoral antibody responses to this virus without the use of adjuvants. Because the advantages of the highly immunogenic coated nanoclusters also include rapid productions in an egg-independent system, this approach has great potential for influenza vaccine production not only in response to an emerging pandemic, but also as a replacement for conventional seasonal influenza vaccines.
机译:流行性感冒病毒每年都会对公共健康构成威胁。节省时间,成本效益和不依赖卵子的流感疫苗方法非常重要,特别是在应对新出现的大流行时。我们从禽源H7N9甲型流感病毒的重组三聚体血凝素制备了涂层的,两层的蛋白质纳米簇,作为应对新出现的大流行的疫苗开发方法。对用纳米簇免疫的小鼠的病毒特异性免疫反应和保护功效的评估表明,候选疫苗具有高度免疫原性,无需使用佐剂即可诱导对该病毒的保护性免疫和持久的体液抗体反应。由于高度免疫原性包被的纳米簇的优势还包括在不依赖卵的系统中快速生产,因此这种方法不仅可以应对正在出现的大流行,而且具有作为常规季节性流感疫苗的替代品的巨大潜力,可以生产流感疫苗。

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