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Influenza B-Cells Protective Epitope Characterization: A Passkey for the Rational Design of New Broad-Range Anti-Influenza Vaccines

机译:流感B细胞保护性抗原决定簇表征:合理设计新型宽范围抗流感疫苗的密钥

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The emergence of new influenza strains causing pandemics represents a serious threat to human health. From 1918, four influenza pandemics occurred, caused by H1N1, H2N2 and H3N2 subtypes. Moreover, in 1997 a novel influenza avian strain belonging to the H5N1 subtype infected humans. Nowadays, even if its transmission is still circumscribed to avian species, the capability of the virus to infect humans directly from avian reservoirs can result in fatalities. Moreover, the risk that this or novel avian strains could adapt to inter-human transmission, the development of resistance to anti-viral drugs and the lack of an effective prevention are all incumbent problems for the world population. In this scenario, the identification of broadly neutralizing monoclonal antibodies (mAbs) directed against conserved regions shared among influenza isolates has raised hopes for the development of monoclonal antibody-based immunotherapy and “universal” anti-influenza vaccines.
机译:引起大流行的新流感毒株的出现对人类健康构成了严重威胁。从1918年起,发生了由H1N1,H2N2和H3N2亚型引起的四次流感大流行。此外,在1997年,属于H5N1亚型的新型禽流感病毒感染了人类。如今,即使其传播仍受禽类限制,该病毒直接从禽类水库感染人类的​​能力也可能导致死亡。此外,这种或新型禽流感病毒株可能适应人际传播的风险,对抗病毒药物的耐药性的发展以及缺乏有效的预防措施,都是世界人口面临的问题。在这种情况下,针对针对流感分离株之间共有的保守区域的广泛中和的单克隆抗体(mAb)的鉴定,为基于单克隆抗体的免疫疗法和“通用”抗流感疫苗的开发带来了希望。

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