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Vaccine development for protecting swine against influenza virus

机译:预防猪流感病毒的疫苗开发

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Influenza virus infects a wide variety of species including humans, pigs, horses, sea mammals and birds. Weight loss caused by influenza infection and/or co-infection with other infectious agents results in significant financial loss in swine herds. The emergence of pandemic H1N1 (A/CA/04/2009/H1N1) and H3N2 variant (H3N2v) viruses, which cause disease in both humans and livestock constitutes a concerning public health threat. Influenza virus contains eight single-stranded, negative-sense RNA genomesegments. This genetic structure allows the virus to evolve rapidly by antigenic drift and shift. Antigen-specific antibodies induced by current vaccines provide limited cross protection to heterologous challenge. In pigs, this presents a major obstaclefor vaccine development. Different strategies are under development to produce vaccines that provide better cross-protection for swine. Moreover, overriding interfering maternal antibodies is another goal for influenza vaccines in order to permit effective immunization of piglets at an early age. Herein, we present a review of influenza virus infection in swine, including a discussion of current vaccine approaches and techniques used for novel vaccine development.
机译:流感病毒感染多种物种,包括人类,猪,马,海洋哺乳动物和鸟类。由流感病毒感染和/或与其他传染因子共同感染引起的体重减轻导致猪群的重大经济损失。大流行的H1N1(A / CA / 04/2009 / H1N1)和H3N2变体(H3N2v)病毒的出现,它们同时导致人类和牲畜的疾病,构成对公共健康的威胁。流感病毒包含八个单链负义RNA基因组片段。这种遗传结构使病毒能够通过抗原性漂移和转移而迅速进化。当前疫苗诱导的抗原特异性抗体对异源攻击提供有限的交叉保护。在猪中,这是疫苗开发的主要障碍。正在开发不同的策略来生产能为猪提供更好的交叉保护的疫苗。此外,对流感疫苗的主要目标是消除干扰母源抗体,以使仔猪能够在幼年期得到有效免疫。在此,我们提出了猪流感病毒感染的综述,包括对当前疫苗方法和用于新型疫苗开发的技术的讨论。

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