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Inactivation of avian influenza viruses by hydrostatic pressure as a potential vaccine development approach

机译:通过静压压力作为潜在疫苗开发方法的静物流感病毒失效

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摘要

Vaccines are a recommended strategy for controlling influenza A infections in humans and animals. Here, we describe the effects of hydrostatic pressure on the structure, morphology and functional characteristics of avian influenza A H3N8 virus. The effect of hydrostatic pressure for 3 h on H3N8 virus revealed that the particles were resistant to this condition, and the virus displayed only a discrete conformational change. We found that pressure of 3 kbar applied for 6 h was able to inhibit haemagglutination and infectivity while virus replication was no longer observed, suggesting that full virus inactivation occurred at this point. However, the neuraminidase activity was not affected at this approach suggesting the maintenance of neutralizing antibody epitopes in this key antigen. Our data bring important information for the area of structural virology of enveloped particles and support the idea of applying pressure-induced inactivation as a tool for vaccine production.
机译:疫苗是控制人类和动物流感感染的推荐策略。在这里,我们描述了静水压力对禽流感的结构,形态和功能特征的影响。静水压力对H3N8病毒的静水压力的影响显示颗粒对该条件抗性,并且病毒仅显示了离散的构象变化。我们发现,施加3 kB巴的压力施加6小时,能够抑制血凝和感染性,同时不再观察到病毒复制,表明此时发生了全部病毒失活。然而,在这种方法下,神经氨酸酶活性不受影响,表明该关键抗原中的中和抗体表位的维持。我们的数据为包膜粒子的结构病毒学领域带来了重要信息,并支持施用压力诱导的灭活作为疫苗生产工具的想法。

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