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Vaccinomics and adversomics as new trends in vaccinology

机译:疫苗组学和逆反医学成为疫苗学的新趋势

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Currently used vaccines have been developed based on experimental pre-clinical and clinical trials. Although the widespread availability of vaccines is one of the greatest achievements in public health, the selection of antigens capable of inducing an effective immune response has not been successful for some pathogens to date. Searching for and detecting a relationship between genes or whole genome sequences and the level of immunization response has opened the second “golden age” of vaccinology and led to the development of two new branches: vaccinomics and adversomics. Vaccinomics is a combination of pharmacogenetics, which defines the correlation between single gene polymorphism and immunization response and pharmacogenomics, which characterizes the correlation between genome sequence polymorphism, immunogenicity induced by the vaccine. Adversomics is aimed at developing a strategy for reducing the risk of adverse events by diagnosing potentially high-risk individuals and using modified vaccines. The assumptions and achievements of vaccinomics, initiated by Georg Poland, have influenced the development of a new vaccine antigen selection strategy. This strategy consists of selecting the optimal antigen after characterizing the genetic and epigenetic determinants of the immune system components of all candidate vaccine antigens. Taking into account the role of variability, not only in the pathogen but also in the host in antigen, selection strategies may significantly improve the efficiency of the newly developed vaccines and vaccines currently in use after their respective modifications.
机译:基于临床前实验和临床试验开发了当前使用的疫苗。尽管疫苗的广泛普及是公共卫生领域的最大成就之一,但是迄今为止,对于某些病原体来说,能够诱导有效免疫应答的抗原的选择还没有成功。寻找并检测基因或全基因组序列与免疫反应水平之间的关系,开启了疫苗学的第二个“黄金时代”,并导致了两个新的分支的发展:疫苗学和逆境学。疫苗组学是药物遗传学的组合,它定义了单基因多态性与免疫应答之间的相关性,而药物基因组学则表征了基因组序列多态性与疫苗诱导的免疫原性之间的相关性。 Adversomics旨在通过诊断潜在的高风险个体并使用改良疫苗来制定降低不良事件风险的策略。由Georg Poland发起的疫苗经济学的假设和成就已经影响了新疫苗抗原选择策略的发展。该策略包括在表征所有候选疫苗抗原的免疫系统成分的遗传和表观遗传决定因素后选择最佳抗原。考虑到可变性的作用,不仅在病原体中,而且在抗原中的宿主中,选择策略都可以显着提高新开发的疫苗和经过各自修改后正在使用的疫苗的效率。

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