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Principles of vaccine design-Lessons from nature. [Review]

机译:疫苗设计的原理-来自自然的教训。 [评论]

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Microbial pathogens have developed complex and efficient ways of counteracting and evading innate and adaptive immune mechanisms. The strategies used by pathogens determine strongly the type of immune response a vaccine should elicit and how the vaccine should be formulated. Improved knowledge of immune response mechanisms has brought successes in the development of vaccines that protect against challenging pathogens as well as vaccines that can be used in immunocompromised and elderly populations. This includes the production of highly purified antigens that provide a better reactogenicity and safety profile than some of the early whole-pathogen vaccines. Successful attempts to improve antigen purity, however, can result in weakened immunogenicity. The search for approaches to overcome this has led to new technologies, such as live vector vaccines, DNA vaccines and novel adjuvant formulations, which have been based on growing knowledge of the interplay between innate and adaptive immune systems and the central role played by antigen-presenting cells. Of these technologies, one of the most promising to date is based on the use of innovative adjuvants combined with careful antigen selection. Vaccine design has therefore become more tailored, and in turn has opened up the potential of extending its application in immunotherapies to tackle diseases such as cancer, Alzheimer disease and immune-mediated disorders. 2010 Elsevier Ltd. All rights reserved.
机译:微生物病原体已经发展出复杂和有效的方式来抵抗和逃避先天和适应性免疫机制。病原体使用的策略在很大程度上决定了疫苗应引起的免疫反应类型以及应如何配制疫苗。增强的免疫应答机制知识已成功开发出可抵抗挑战性病原体的疫苗以及可用于免疫力低下和老年人口的疫苗。这包括产生高度纯化的抗原,这些抗原提供了比某些早期的全病原体疫苗更好的反应原性和安全性。但是,成功提高抗原纯度的尝试会导致免疫原性减弱。寻找解决方法的方法导致了新技术的出现,例如活载体疫苗,DNA疫苗和新型佐剂制剂,这些新技术的基础是对先天性和适应性免疫系统之间相互作用的日益了解以及抗原-呈现细胞。在这些技术中,迄今为止最有前途的技术之一是基于创新佐剂的使用以及仔细的抗原选择。因此,疫苗的设计变得更加量身定制,从而打开了扩展其在免疫疗法中应用的潜力,以解决诸如癌症,阿尔茨海默氏病和免疫介导的疾病等疾病。 2010 Elsevier Ltd.保留所有权利。

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