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Current progress of immunoinformatics approach harnessed for cellular- and antibody-dependent vaccine design

机译:用于细胞和抗体依赖性疫苗设计的免疫信息方法的目前进展

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摘要

Immunoinformatics plays a pivotal role in vaccine design, immunodiagnostic development, and antibody production. In the past, antibody design and vaccine development depended exclusively on immunological experiments which are relatively expensive and time-consuming. However, recent advances in the field of immunological bioinformatics have provided feasible tools which can be used to lessen the time and cost required for vaccine and antibody development. This approach allows the selection of immunogenic regions from the pathogen genomes. The ideal regions could be developed as potential vaccine candidates to trigger protective immune responses in the hosts. At present, epitope-based vaccines are attractive concepts which have been successfully trailed to develop vaccines which target rapidly mutating pathogens. In this article, we provide an overview of the current progress of immunoinformatics and their applications in the vaccine design, immune system modeling and therapeutics.
机译:免疫信息学在疫苗设计,免疫诊断发育和抗体生产中起着枢轴作用。 在过去,抗体设计和疫苗开发专门依赖于相对昂贵且耗时的免疫实验。 然而,免疫生物信息学领域的最近进展提供了可行的工具,可用于减少疫苗和抗体发育所需的时间和成本。 该方法允许从病原体基因组中选择免疫原区域。 理想的区域可以被开发为潜在的疫苗候选者,以引发宿主中的保护性免疫应答。 目前,基于表位的疫苗是有吸引力的概念,其已成功地落后于开发靶向迅速突变病原体的疫苗。 在本文中,我们概述了免疫信息性的当前进展及其在疫苗设计,免疫系统建模和治疗中的应用。

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