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首页> 外文期刊>Medical hypotheses >In silico rational design of a novel tetra-epitope tetanus vaccine with complete population coverage using developed immunoinformatics and surface epitope mapping approaches
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In silico rational design of a novel tetra-epitope tetanus vaccine with complete population coverage using developed immunoinformatics and surface epitope mapping approaches

机译:在新的Tetra-epitope tetanus疫苗的硅合理设计中,使用发育的免疫信息学和表面表位映射方法完全覆盖

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Presentation of many unwanted epitopes within tetanus toxoid vaccine to lymphocyte clones may lead to production of many unwanted antibodies. Moreover an ideal vaccine must cover all individuals in a population that is dependent to the kinds of human leukocyte antigen alleles. Concerning these issues, our study was aimed to in silico design of a multi-epitope tetanus vaccine (METV) in order to improve population coverage and protectivity of tetanus vaccine as well as reduction of complications. Concerning these issues, a novel rational filtration was implemented to design a novel METV using immunoinformatics and surface epitope mapping approaches.
机译:介绍破伤风毒素疫苗内的许多不需要的表位,可能导致许多不需要的抗体的产生。 此外,理想的疫苗必须涵盖依赖于人类白细胞抗原等位基因种群的所有人。 关于这些问题,我们的研究旨在在多表术破伤风疫苗(METV)的硅设计中,以改善破伤风疫苗的人口覆盖率和保护性以及减少并发症。 关于这些问题,实施了一种新的合理过滤,以设计使用免疫信息和表面表位映射方法设计一种新的metv。

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