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Proteomics approaches towards antigen discovery and vaccine development.

机译:蛋白质组学方法用于抗原发现和疫苗开发。

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Vaccines have proved to be powerful medical interventions, and recent advances in immunology and in microbial pathogen genomics now allow the rational design of molecularly defined vaccines. Classical proteomics and immunoproteomics approaches such as serological proteome analysis (SERPA) have already provided first vaccine candidate antigens. The same is true for approaches based on recombinant DNA technology, and in the future protein arrays may further accelerate this kind of research. Taken together, these technologies will allow identification of the full set of antigens (ie, the immunome) targeted by the immune system in a certain pathological situation. The comparison of multiple immunomes may allow the discovery of immunogenic structural features shared and conserved between different pathogens, which could form the basis of broadly protective vaccines. In this review, recent proteomics and other post-genomics approaches for the identification of antigens in infectious disease and cancer, as well as strategies for their characterization, are discussed.
机译:疫苗已被证明是有力的医学干预手段,免疫学和微生物病原体基因组学的最新进展现在可以合理设计分子定义的疫苗。经典的蛋白质组学和免疫蛋白质组学方法(如血清蛋白质组分析(SERPA))已经提供了第一种疫苗候选抗原。基于重组DNA技术的方法也是如此,将来蛋白质阵列可能会进一步加速这种研究。综上所述,这些技术将允许鉴定在某些病理情况下免疫系统靶向的全套抗原(即免疫原)。多种免疫原的比较可以发现不同病原体之间共享和保守的免疫原性结构特征,这可以构成广泛保护性疫苗的基础。在这篇综述中,讨论了用于识别传染病和癌症中抗原的最新蛋白质组学和其他基因组学后方法,以及它们的表征策略。

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