利用免疫信息学工具构建冠状病毒膜糖蛋白M抗原表位免疫原性结构

Q4 Medicine
S. Pirmoradi
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引用次数: 0

摘要

背景:虽然传统疗法在许多疾病的治疗中发挥了至关重要的作用,但新出现的疾病需要新的治疗方法,并发症更少。因此,开发有效的新冠病毒感染疫苗对于预防死亡和创造社会免疫力至关重要。材料和方法:本研究利用生物信息学工具设计了一种针对SARS-CoV-2 M膜蛋白的疫苗。在M蛋白中构建了27个限定于B细胞和MHC I和II等位基因的表位,用于免疫刺激和抗体识别,用于构建嵌合肽疫苗。发现:该疫苗被预测为一种稳定的、抗原性的、非致敏性的化合物。TRL5/疫苗复合物分析和对接模拟表明,与适当受体激活的结合足够稳定。假设免疫后的免疫反应模拟表明,该疫苗有可能刺激活性和记忆B细胞、CD8 + T细胞和CD4 + T细胞的产生,以及Th2和Th1诱导的有效免疫反应。结论:计算机过程分析表明,该疫苗结构在宿主体内诱导了高抗原性和良好的细胞免疫,并刺激了TLR5、MHC I、MHC II等多种免疫受体。疫苗功能还与IgM和IgG抗体以及一组Th1和Th2细胞因子的增加有关。但是最终确认设计的疫苗的有效性需要临床过程。版权所有©2022,TMU出版社。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a New Epitope Immunogenic Structure Based on the Coronavirus Membrane Glycoprotein M Using Immunoinformatics Tools
Backgrounds: Although conventional therapies have played an essential role in the treatment of many diseases, emerging diseases require new treatment methods with less complications. Therefore, it is important to develop an effective vaccine for infections caused by the coronavirus to prevent mortality and create immunity the community. Material(s) and Method(s): In this research bioinformatics tools were used to design a vaccine against the M membrane protein of SARS-CoV-2. A total of 27 epitopes confined to B cells and MHC I and II alleles were structurally constructed in M protein for immune stimulation and antibody recognition which were used in the construction of a chimeric peptide vaccine. Finding(s): The vaccine was predicted to be a stable, antigenic, and non-allergenic compound. TRL5/vaccine complex analysis and docking simulation indicated a sufficiently stable binding with appropriated receptor activation. The immune response simulation following hypothetical immunization indicated the potential of this vaccine to stimulate the production of active and memory B cells, CD8 + T and, CD4 + T cells, and effective immunological responses induced by Th2 and Th1. Conclusion(s): The analysis of in-silico processes showed that the vaccine structure induced high antigenicity and good cellular immunity in the host body and stimulates various immune receptors such as TLR5, MHC I, and MHC II. Vaccine function was also associated with an increase in IgM and IgG antibodies and a set of Th1 and Th2 cytokines. But the final confirmation of the effectiveness of the designed vaccine requires clinical processes.Copyright © 2022, TMU Press.
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来源期刊
CiteScore
0.50
自引率
0.00%
发文量
20
审稿时长
6 weeks
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