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解析免疫反应:流感疫苗平台的比较分析。

Deciphering immune responses: a comparative analysis of influenza vaccination platforms.

机构信息

Pfizer, Hudson Boulevard, New York, NY 10018, USA.

Pfizer, Hudson Boulevard, New York, NY 10018, USA.

出版信息

Drug Discov Today. 2024 Sep;29(9):104125. doi: 10.1016/j.drudis.2024.104125. Epub 2024 Aug 2.

Abstract

Influenza still poses a significant challenge due to its high mutation rates and the low effectiveness of traditional vaccines. At present, antibodies that neutralize the highly variable hemagglutinin antigen are a major driver of the observed variable protection. To decipher how influenza vaccines can be improved, an analysis of licensed vaccine platforms was conducted, contrasting the strengths and limitations of their different mechanisms of protection. Through this review, it is evident that these vaccines do not elicit the robust cellular immune response critical for protecting high-risk groups. Emerging platforms, such as RNA vaccines, that induce robust cellular responses that may be additive to the recognized mechanism of protection through hemagglutinin inhibition may overcome these constraints to provide broader, protective immunity. By combining both humoral and cellular responses, such platforms could help guide the future influenza vaccine development.

摘要

由于流感病毒的高突变率和传统疫苗的低效率,流感仍然构成重大挑战。目前,能够中和高度多变的血凝素抗原的抗体是观察到的可变保护的主要驱动因素。为了解释如何改进流感疫苗,对已授权的疫苗平台进行了分析,对比了它们不同保护机制的优缺点。通过这项综述,可以明显看出这些疫苗不能引起对保护高危人群至关重要的强大细胞免疫反应。新兴的平台,如 RNA 疫苗,可诱导强大的细胞反应,可能通过血凝素抑制作用与公认的保护机制相加,从而克服这些限制,提供更广泛的保护免疫。通过结合体液和细胞反应,这些平台可以帮助指导未来的流感疫苗开发。

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