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Vaccines Reverse Vaccinology and Bacterial Pathogenesis

机译:疫苗反向疫苗学和细菌发病机理

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摘要

Advances in genomics and innovative strategies such as reverse vaccinology have changed the concepts and approaches to vaccine candidate selection and design. Genome mining and blind selection of novel antigens provide a novel route to investigate the mechanisms that underpin pathogenesis. The resulting lists of novel candidates are revealing new aspects of pathogenesis of target organisms, which in turn drives the rational design of optimal vaccine antigens. Here we use the discovery, characterization, and exploitation of fHbp, a vaccine candidate and key virulence factor of meningococcus, as an illustrative case in point. Applying genomic approaches to study both the pathogen and host will ultimately increase our fundamental understanding of pathogen biology, mechanisms responsible for the development of protective immunity, and guide next-generation vaccine design.
机译:基因组学的进步和反向疫苗等创新策略已经改变了候选疫苗选择和设计的概念和方法。基因组挖掘和新型抗原的盲选提供了研究基础发病机理的新颖途径。由此产生的新候选物清单揭示了靶标生物发病机理的新方面,进而推动了最佳疫苗抗原的合理设计。在此,我们以fHbp(一种候选疫苗和脑膜炎球菌的关键毒力因子)的发现,表征和开发为例。应用基因组学方法研究病原体和宿主的方法最终将增进我们对病原体生物学的基本了解,负责保护性免疫的机制,并指导下一代疫苗的设计。

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