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Systems vaccinology: Probing humanity’s diverse immune systems with vaccines

机译:系统疫苗学:用疫苗探测人类的多种免疫系统

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摘要

Homo sapiens are genetically diverse, but dramatic demographic and socioeconomic changes during the past century have created further diversification with respect to age, nutritional status, and the incidence of associated chronic inflammatory disorders and chronic infections. These shifting demographics pose new challenges for vaccination, as emerging evidence suggests that age, the metabolic state, and chronic infections can exert major influences on the immune system. Thus, a key public health challenge is learning how to reprogram suboptimal immune systems to induce effective vaccine immunity. Recent advances have applied systems biological analysis to define molecular signatures induced early after vaccination that correlate with and predict the later adaptive immune responses in humans. Such “systems vaccinology” approaches offer an integrated picture of the molecular networks driving vaccine immunity, and are beginning to yield novel insights about the immune system. Here we discuss the promise of systems vaccinology in probing humanity’s diverse immune systems, and in delineating the impact of genes, the environment, and the microbiome on protective immunity induced by vaccination. Such insights will be critical in reengineering suboptimal immune systems in immunocompromised populations.
机译:智人在遗传上是多样的,但是在过去的一个世纪中,人口的急剧变化和社会经济变化在年龄,营养状况以及相关的慢性炎症性疾病和慢性感染的发生率方面创造了进一步的多样化。这些不断变化的人口统计构成了疫苗接种的新挑战,因为越来越多的证据表明年龄,代谢状态和慢性感染可以对免疫系统产生重大影响。因此,一个关键的公共卫生挑战是学习如何重新编程次优免疫系统以诱导有效的疫苗免疫。最近的进展已经应用系统生物学分析来定义在疫苗接种后早期诱导的分子特征,其与人中的后期适应性免疫反应相关并预测人的适应性免疫反应。这种“系统疫苗学”方法提供了驱动疫苗免疫的分子网络的综合图景,并开始产生有关免疫系统的新见解。在这里,我们将讨论系统疫苗学在探索人类多样化免疫系统中的前景,并描述基因,环境和微生物组对疫苗诱导的保护性免疫的影响。这些见解对于在免疫受损人群中重建次优免疫系统至关重要。

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