利用天花病毒和猴痘病毒蛋白激发长期体液和细胞保护的多表位mRNA疫苗设计

Dženan Kovačić, Adnan Salihovic
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引用次数: 1

摘要

人类猴痘是一种相对未得到充分研究的感染,自2022年5月报告暴发以来,已受到越来越多的关注。由于其与人类天花的临床相似性,该病毒代表了一个潜在的巨大健康问题,需要在宿主-病原体相互作用和疫苗开发的背景下进一步研究。此外,猴痘的跨大陆传播重申了对人类痘病毒给予普遍关注的必要性,因为它们是潜在的生物恐怖主义制剂。目前,天花疫苗被用于猴痘免疫工作,考虑到它们的基因组和表型相似性,这是一个不足为奇的事实。虽然它提供了对天花的持久保护,但其对人类猴痘的保护作用仍在继续探索,并取得了令人鼓舞的结果。考虑到这一点,本工作旨在利用计算机工具识别来自天花病毒和猴痘病毒蛋白质组的有效肽基表位,以设计一种疫苗,该疫苗将提供对天花和猴痘的重要保护。从理论上讲,一种能对天花和猴痘提供交叉保护的疫苗,至少在严重的临床表现中,也能对相关病毒起到保护作用。在此,我们介绍了一种新的多表位mRNA疫苗设计,利用这两种病毒蛋白质组来引发持久的体液和细胞免疫。在确保候选疫苗引起Th1免疫反应,与预防两种病毒的临床严重疾病相关时,特别考虑了这一点。免疫系统模拟、物理化学和安全性分析表明我们的候选疫苗具有抗原性强、安全性和总体稳定性。该蛋白产物对相关免疫受体具有较高的结合亲和力。此外,候选疫苗将引发保护性的、体液和th1主导的细胞免疫反应,持续5年以上。最后,我们建立了一个使用mRNA疫苗技术绕过减毒活疫苗平台的快速和方便的案例。
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Multi-epitope mRNA Vaccine Design that Exploits Variola Virus and Monkeypox Virus Proteins for Elicitation of Long-lasting Humoral and Cellular Protection Against Severe Disease
Human monkeypox represents a relatively underexplored infection that has received increased attention since the reported outbreak in May 2022. Due to its clinical similarities with human smallpox, this virus represents a potentially tremendous health problem demanding further research in the context of host-pathogen interactions and vaccine development. Furthermore, the cross-continental spread of monkeypox has reaffirmed the need for devoting attention to human poxviruses in general, as they represent potential bioterrorism agents. Currently, smallpox vaccines are utilized in immunization efforts against monkeypox, an unsurprising fact considering their genomic and phenotypic similarities. Though it offers long-lasting protection against smallpox, its protective effects against human monkeypox continue to be explored, with encouraging results. Taking this into account, this works aims at utilizing in silico tools to identify potent peptide-based epitopes stemming from the variola virus and monkeypox virus proteomes, to devise a vaccine that would offer significant protection against smallpox and monkeypox. In theory, a vaccine that offers cross-protection against variola and monkeypox would also protect against related viruses, at least in severe clinical manifestation. Herein, we introduce a novel multi-epitope mRNA vaccine design that exploits these two viral proteomes to elicit long-lasting humoral and cellular immunity. Special consideration was taken in ensuring that the vaccine candidate elicits a Th1 immune response, correlated with protection against clinically severe disease for both viruses. Immune system simulations and physicochemical and safety analyses characterize our vaccine candidate as antigenically potent, safe, and overall stable. The protein product displays high binding affinity towards relevant immune receptors. Furthermore, the vaccine candidate is to elicit a protective, humoral and Th1-dominated cellular immune response that lasts over five years. Lastly, we build a case about the rapidity and convenience of circumventing the live attenuated vaccine platform using mRNA vaccine technology.
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