Moise Leonard, Gutierrez Andres, Kibria Farzana, Martin Rebecca, Tassone Ryan, Liu Rui, Terry Frances, Martin Bill, De Groot Anne S
a Institute for Immunology and Informatics; University of Rhode Island ; Providence , RI USA.
Hum Vaccin Immunother. 2015;11(9):2312-21. doi: 10.1080/21645515.2015.1061159.
Computational vaccine design, also known as computational vaccinology, encompasses epitope mapping, antigen selection and immunogen design using computational tools. The iVAX toolkit is an integrated set of tools that has been in development since 1998 by De Groot and Martin. It comprises a suite of immunoinformatics algorithms for triaging candidate antigens, selecting immunogenic and conserved T cell epitopes, eliminating regulatory T cell epitopes, and optimizing antigens for immunogenicity and protection against disease. iVAX has been applied to vaccine development programs for emerging infectious diseases, cancer antigens and biodefense targets. Several iVAX vaccine design projects have had success in pre-clinical studies in animal models and are progressing toward clinical studies. The toolkit now incorporates a range of immunoinformatics tools for infectious disease and cancer immunotherapy vaccine design. This article will provide a guide to the iVAX approach to computational vaccinology.
计算疫苗设计,也称为计算疫苗学,涵盖使用计算工具进行表位映射、抗原选择和免疫原设计。iVAX工具包是一套集成工具,自1998年以来由德格鲁特和马丁开发。它包括一套免疫信息学算法,用于筛选候选抗原、选择具有免疫原性和保守性的T细胞表位、消除调节性T细胞表位,以及优化抗原的免疫原性和疾病防护能力。iVAX已应用于新兴传染病、癌症抗原和生物防御靶点的疫苗开发项目。几个iVAX疫苗设计项目在动物模型的临床前研究中取得了成功,并正在向临床研究推进。该工具包现在包含一系列用于传染病和癌症免疫治疗疫苗设计的免疫信息学工具。本文将提供iVAX计算疫苗学方法指南。