结合免疫信息学和反向疫苗学方法设计一种稳定的基于mrna的抗感染性心脏地带病毒的新型多表位疫苗。

IF 1.5 4区 医学 Q4 IMMUNOLOGY
Viral immunology Pub Date : 2025-04-01 Epub Date: 2025-03-24 DOI:10.1089/vim.2025.0004
Awais Ali, Syed Luqman Ali
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引用次数: 0

摘要

心脏地带病毒(HRTV)是一种蜱传播的人类致病性静脉病毒,主要引起白细胞减少和血小板减少。它是由美洲钝目蜱传播的,即以其攻击性咬人行为、对人类宿主的亲和力和高流行率而闻名。作为一项公共卫生预防战略,开发针对HRTV的疫苗或免疫越来越重要。目前的研究计划根据先进的免疫信息学方法,优先考虑从HRTV蛋白质组的b细胞和t细胞表位(IC50 < 100 nM)中提取HRTV多表位稳定的mRNA疫苗模型。模型构建通过连接最有效的、非过敏性的表位以及人类核糖体蛋白佐剂的结合来增强免疫反应。编码疫苗分子的免疫原性潜力通过与toll样受体免疫受体的分子对接进行检测,随后进行正常模式分析和基于能量最小化、分子稳定性和灵活性评估的分子动力学模拟。结合Kozak共识序列、起始密码子、MHC I类转运结构域(MITD)、tPA、Goblin 5′和3′非翻译区(UTRs)和poly (A)尾等基本元件,设计了一个稳健、稳定的多表位疫苗模型的圆形mRNA前体。这种战略性合并确保了免疫原性的提高,并预测了一种有希望的抗HRTV的环状mRNA疫苗模型。免疫模拟预测,所设计的模型疫苗能够引发细胞介导和体液免疫反应。预测的环状mRNA疫苗前体模型有望通过实验检验其免疫原性和安全性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Stable mRNA-Based Novel Multi-Epitope Vaccine Designs Against Infectious Heartland Virus by Integrated Immunoinformatics and Reverse Vaccinology Approaches.

The Heartland virus (HRTV) is a tick-borne human pathogenic phlebovirus that primarily causes leukopenia and thrombocytopenia. It is transmitted by Amblyomma americanum type of tick, that is, notable for their aggressive biting behavior, affinity for human hosts, and high prevalence. Developing vaccines or immunizations against HRTV is gaining importance as a public-health preventive strategy. The current study was planned to prioritize a multi-epitope stable mRNA vaccine model against HRTV from lead B-cell and T-cell epitopes (with IC50 < 100 nM) of HRTV proteome following advanced immunoinformatics approaches. Model constructs were designed by linking the most potent, nonallergenic epitopes along with incorporation of human ribosomal protein adjuvant for immune response enhancement. The immunogenic potential of the coding vaccine molecule was examined via molecular docking against toll-like receptors immune receptors followed by normal mode analysis and molecular dynamics simulations-based energy minimization, molecular stability, and flexibility assessments. A robust, stable circular mRNA precursor of multi-epitopes vaccine model was designed by incorporating the Kozak consensus sequence, a start codon, and essential elements such as MHC class I trafficking domain (MITD), tPA, Goblin 5' and 3' Untranslated Region (UTRs), and a poly (A) tail. This strategic amalgamation ensures elevated immunogenicity and predicts a promising circular mRNA vaccine model against HRTV. The immune simulation predicted that the designed model vaccine is capable to elicit cell-mediated and humoral immune responses. The predicted circular mRNA vaccine precursor model is promising against HRTV to examine experimentally for its immunogenicity and safety features.

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来源期刊
Viral immunology
Viral immunology 医学-病毒学
CiteScore
3.60
自引率
0.00%
发文量
84
审稿时长
6-12 weeks
期刊介绍: Viral Immunology delivers cutting-edge peer-reviewed research on rare, emerging, and under-studied viruses, with special focus on analyzing mutual relationships between external viruses and internal immunity. Original research, reviews, and commentaries on relevant viruses are presented in clinical, translational, and basic science articles for researchers in multiple disciplines. Viral Immunology coverage includes: Human and animal viral immunology Research and development of viral vaccines, including field trials Immunological characterization of viral components Virus-based immunological diseases, including autoimmune syndromes Pathogenic mechanisms Viral diagnostics Tumor and cancer immunology with virus as the primary factor Viral immunology methods.
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