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Vaccines based on structure-based design provide protection against infectious diseases

机译:基于结构设计的疫苗可预防传染病

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摘要

Vaccines elicit immune responses, provide protection against microorganisms and are considered as one of the most successful medical interventions against infectious diseases. Vaccines can be produced using attenuated virus or bacteria, recombinant proteins, bacterial polysaccharides, carbohydrates or plasmid DNA. Conventional vaccines rely on the induction of immune responses against antigenic proteins to be effective. The genetic diversity of microorganisms, coupled with the high degree of sequence variability in antigenic proteins, presents a challenge to developing broadly effective conventional vaccines. The observation that whole protein antigens are not necessarily essential for inducing immunity has led to the emergence of a new branch of vaccine design termed 'structural vaccinology'. Structure-based vaccines are designed on the rationale that protective epitopes should be sufficient to induce immune responses and provide protection against pathogens. Recent studies demonstrated that designing structure-based vaccine candidates with multiple epitopes induce a higher immune response. As yet there are no commercial vaccines available based on structure-based design and most of the structure-based vaccine candidates are in the preclinical stages of development. This review focuses on recent advances in structure-based vaccine candidates and their application in providing protection against infectious diseases.
机译:疫苗引起免疫反应,提供针对微生物的保护,被认为是针对传染病最成功的医学干预措施之一。可以使用减毒病毒或细菌,重组蛋白,细菌多糖,碳水化合物或质粒DNA生产疫苗。常规疫苗依靠诱导针对抗原蛋白的免疫反应才有效。微生物的遗传多样性以及抗原蛋白的高度序列变异性,对开发广泛有效的常规疫苗提出了挑战。观察到全蛋白抗原不一定是诱导免疫所必需的,这导致了疫苗设计新分支的出现,这种疫苗被称为“结构疫苗学”。基于结构的疫苗的设计依据是保护性表位应足以诱导免疫反应并提供针对病原体的保护。最近的研究表明,设计具有多个表位的基于结构的候选疫苗可诱导更高的免疫反应。到目前为止,还没有基于结构的设计的商业疫苗,大多数基于结构的候选疫苗都处于临床前开发阶段。这篇综述着重于基于结构的候选疫苗的最新进展及其在预防传染病中的应用。

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