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New dimensions in vaccinology: A new insight

机译:疫苗学的新领域:新见解

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摘要

The development of vaccines to prevent infectious diseases has been one of the most important contributions of biomedical sciences. Increasing understanding in biochemistry, molecular biology, molecular genetics and related fields have provided an opportunity for the development of new generation vaccines that are based on rational design approaches. This is possible because of proper understanding of the microbial-genetics, biochemistry, host-pathogen interaction and recent developments in molecular immunology. Another important improvement made in the quality of vaccine production is the incorporation of immunomodulators or adjuvants with modified delivery vehicles viz liposomes, Iscoms and microspheres apart from alum being used as a gold standard. This article reviews the art of vaccination from Jenner period to present day context highlighting all the developments made at each stage of the vaccine development. Various criteria have been discussed regarding the selection of epitopes that expand B & T cells, its linkage with other accessory cells of the immune system, means to overcome MHC linked immune unresponsiveness, enhanced antigen processing and presentations that specially induce either helper or cytotoxic or mucosal immune responses were critically discussed.
机译:开发预防传染病的疫苗一直是生物医学科学的最重要贡献之一。对生物化学,分子生物学,分子遗传学和相关领域的日益了解为基于合理设计方法的新一代疫苗的开发提供了机会。这是因为对微生物遗传学,生物化学,宿主-病原体相互作用以及分子免疫学的最新发展有适当的了解。疫苗生产质量的另一项重要改进是将免疫调节剂或佐剂与改良的运载体(即脂质体,Iscoms和微球体)并入,除了明矾以外,还用作金标准。本文回顾了从詹纳时代到今天的疫苗接种技术,重点介绍了疫苗开发各个阶段的所有进展。关于扩展B&T细胞的抗原决定簇的选择,与免疫系统其他辅助细胞的连接,克服MHC关联的免疫无反应性的手段,增强的抗原加工以及特别诱导辅助性或细胞毒性或粘膜表达的方法,已经讨论了各种标准。严格讨论了免疫反应。

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