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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >A cutting-edge immunoinformatics approach for design of multi-epitope oral vaccine against dreadful human malaria
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A cutting-edge immunoinformatics approach for design of multi-epitope oral vaccine against dreadful human malaria

机译:抗恐怖人疟疾多表位口腔疫苗设计的尖端免疫信息方法

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Human malaria is a pathogenic disease mainly caused by Plasmodium falciparum, which was responsible for about 405,000 deaths globally in the year 2018. To date, several vaccine candidates have been evaluated for prevention, which failed to produce optimal output at various preclinical/clinical stages. This study is based on designing of polypeptide vaccines (PVs) against human malaria that cover almost all stages of life-cycle of Plasmodium and for the same 5 genome derived predicted antigenic proteins (GDPAP) have been used. For the development of a multi-immune inducer, 15 PVs were initially designed using T-cell epitope ensemble, which covered N99% human population as well as linear B-cell epitopes with or without adjuvants. The immune simulation of PVs showed higher levels of T-cell and B-cell activities compared to positive and negative vaccine controls. Furthermore, in silico cloning of PVs and codon optimization followed by enhanced expression within Lactococcus lactis host system was also explored. Although, the study has sound theoretical and in silico findings, the in vitro/in vivo evaluation seems imperative to warrant the immunogenicity and safety of PVs towards management of P. falciparum infection in the future. (C) 2020 Published by Elsevier B.V.
机译:人类疟疾是一种致病性疾病,主要是由疟原虫疟原虫引起的,这是2018年全球范围内的约405,000人死亡。迄今为止,已经评估了几种疫苗候选人预防,该候选人未能在各种临床前/临床阶段产生最佳产出。本研究基于针对人疟疾的多肽疫苗(PVS)的设计,覆盖疟原虫的几乎所有生命周期的阶段和相同的5个基因组衍生的预测抗原蛋白(GDPAP)。为了开发多免疫诱导剂,最初使用T细胞表位合奏设计了15个PV,其覆盖了N99%的人群以及有或没有佐剂的线性B细胞表位。与阳性和阴性疫苗对照相比,PVS的免疫模拟显示出更高水平的T细胞和B细胞活性。此外,在PVS和密码子优化的硅克隆中,也探讨了乳酸乳乳乳乳杆菌宿主系统的增强表达。虽然,该研究具有良好的理论和硅化体,但体外/体内评估似乎必须保证PVS对未来P.Malciparum感染管理的免疫原性和安全性。 (c)2020由elsevier b.v发布。

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