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猪流感 A 病毒:挑战与新型疫苗策略。

Swine influenza A virus: challenges and novel vaccine strategies.

机构信息

Nebraska Center for Virology, University of Nebraska-Lincoln, Lincoln, NE, United States.

School of Biological Sciences, University of Nebraska-Lincoln, Lincoln, NE, United States.

出版信息

Front Cell Infect Microbiol. 2024 Apr 3;14:1336013. doi: 10.3389/fcimb.2024.1336013. eCollection 2024.

Abstract

Swine Influenza A Virus (IAV-S) imposes a significant impact on the pork industry and has been deemed a significant threat to global public health due to its zoonotic potential. The most effective method of preventing IAV-S is vaccination. While there are tremendous efforts to control and prevent IAV-S in vulnerable swine populations, there are considerable challenges in developing a broadly protective vaccine against IAV-S. These challenges include the consistent diversification of IAV-S, increasing the strength and breadth of adaptive immune responses elicited by vaccination, interfering maternal antibody responses, and the induction of vaccine-associated enhanced respiratory disease after vaccination. Current vaccination strategies are often not updated frequently enough to address the continuously evolving nature of IAV-S, fail to induce broadly cross-reactive responses, are susceptible to interference, may enhance respiratory disease, and can be expensive to produce. Here, we review the challenges and current status of universal IAV-S vaccine research. We also detail the current standard of licensed vaccines and their limitations in the field. Finally, we review recently described novel vaccines and vaccine platforms that may improve upon current methods of IAV-S control.

摘要

猪流感病毒(IAV-S)对猪肉产业造成了重大影响,由于其潜在的人畜共患性,被认为是对全球公共卫生的重大威胁。预防 IAV-S 的最有效方法是接种疫苗。虽然人们在脆弱的猪群中付出了巨大的努力来控制和预防 IAV-S,但开发针对 IAV-S 的广泛保护疫苗仍面临着相当大的挑战。这些挑战包括 IAV-S 的持续多样化、增强疫苗接种引起的适应性免疫反应的强度和广度、干扰母源抗体反应以及接种后诱导疫苗相关的增强性呼吸道疾病。目前的疫苗接种策略往往不能及时更新以应对 IAV-S 的不断演变性质,无法诱导广泛的交叉反应,易受干扰,可能会加重呼吸道疾病,并且生产成本高。在这里,我们回顾了通用 IAV-S 疫苗研究的挑战和现状。我们还详细介绍了目前许可疫苗的标准及其在该领域的局限性。最后,我们回顾了最近描述的新型疫苗和疫苗平台,它们可能会改进 IAV-S 控制的现有方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98e6/11021629/2aa3d190f6b9/fcimb-14-1336013-g001.jpg

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