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Host-Brucella interactions and the Brucella genome as tools for subunit antigen discovery and immunization against brucellosis

机译:宿主-风疹相互作用和布鲁氏菌基因组作为亚单位抗原发现和针对布鲁氏菌病免疫的工具

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摘要

Vaccination is the most important approach to counteract infectious diseases. Thus, the development of new and improved vaccines for existing, emerging, and re-emerging diseases is an area of great interest to the scientific community and general public. Traditional approaches to subunit antigen discovery and vaccine development lack consideration for the critical aspects of public safety and activation of relevant protective host immunity. The availability of genomic sequences for pathogenic Brucella spp. and their hosts have led to development of systems-wide analytical tools that have provided a better understanding of host and pathogen physiology while also beginning to unravel the intricacies at the host-pathogen interface. Advances in pathogen biology, host immunology, and host-agent interactions have the potential to serve as a platform for the design and implementation of better-targeted antigen discovery approaches. With emphasis on Brucella spp., we probe the biological aspects of host and pathogen that merit consideration in the targeted design of subunit antigen discovery and vaccine development.
机译:疫苗接种是抵抗传染病的最重要方法。因此,针对现有,新兴和再出现的疾病开发新的和改良的疫苗是科学界和公众非常感兴趣的领域。亚单位抗原发现和疫苗开发的传统方法没有考虑到公共安全和激活相关保护性宿主免疫的关键方面。致病性布鲁氏菌属物种的基因组序列的可用性。他们的宿主推动了全系统分析工具的开发,这些工具可以更好地了解宿主和病原体的生理,同时也可以揭示宿主-病原体界面的复杂性。病原体生物学,宿主免疫学和宿主-试剂相互作用的进步有潜力作为设计和实施靶向性更好的抗原发现方法的平台。着重于布鲁氏菌属,我们探讨了亚单位抗原发现和疫苗开发的目标设计中值得考虑的宿主和病原体的生物学方面。

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