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[筛选保护性病毒抗原的策略及其在新型疫苗研发中的应用]

[Strategies for screening protective viral antigens and their applications in the development of novel vaccines].

作者信息

Zhong Dailang, Wang Tao, Luo Rui, Qiu Hua-Ji, Sun Yuan

机构信息

State Key Laboratory of Veterinary Biotechnology, Harbin Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Harbin 150069, Heilongjiang, China.

出版信息

Sheng Wu Gong Cheng Xue Bao. 2022 Aug 25;38(8):2857-2871. doi: 10.13345/j.cjb.220146.

Abstract

With the development of vaccine research and development technologies, novel vaccines have been widely used in the prevention of various infectious diseases. Due to the excellent safety, novel vaccines have unique advantages in the application of vaccines against virulent pathogens. The major premise of developing novel vaccines is to screen protective antigens. With the development of various omics research, cutting-edge bioinformatics tools for eukaryotes have been well developed, while the much simpler structure of viruses compared with eukaryotic cells corresponds to relatively simple research methods. Strategies for screening protective antigens need to combine the advantages of both bioinformatics methods and traditional molecular biology methods. In this review, the strategies for screening virus protective antigens were discussed from the perspective of host and virus, and a series of bioinformatics tools developed based on eukaryotic cells that may be used for screening protective antigens were listed. This review also summarized the cases of using protective antigens to design novel vaccines, in order to better understand the strategies for screening virus protective antigens and facilitate the research and development of novel vaccines.

摘要

随着疫苗研发技术的发展,新型疫苗已广泛应用于各种传染病的预防。由于具有出色的安全性,新型疫苗在针对强毒病原体的疫苗应用中具有独特优势。开发新型疫苗的主要前提是筛选保护性抗原。随着各种组学研究的发展,针对真核生物的前沿生物信息学工具已得到很好的开发,而与真核细胞相比,病毒结构更为简单,这对应着相对简单的研究方法。筛选保护性抗原的策略需要结合生物信息学方法和传统分子生物学方法的优势。在这篇综述中,从宿主和病毒的角度讨论了筛选病毒保护性抗原的策略,并列出了一系列基于真核细胞开发的可用于筛选保护性抗原的生物信息学工具。本综述还总结了使用保护性抗原设计新型疫苗的案例,以便更好地理解筛选病毒保护性抗原的策略并促进新型疫苗的研发。

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