首页> 美国卫生研究院文献>Journal of Virology >Chimeric Virus-Like Particle Vaccines Displaying Conserved Enterovirus 71 Epitopes Elicit Protective Neutralizing Antibodies in Mice through Divergent Mechanisms
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Chimeric Virus-Like Particle Vaccines Displaying Conserved Enterovirus 71 Epitopes Elicit Protective Neutralizing Antibodies in Mice through Divergent Mechanisms

机译:显示保守的肠病毒71表位的嵌合病毒样颗粒疫苗通过不同的机制在小鼠中引起保护性中和抗体。

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摘要

Enterovirus 71 (EV71) is a major causative agent of hand, food, and mouth disease, which frequently occurs in young children. Since there are 11 subgenotypes (A, B1 to B5, and C1 to C5) within EV71, an EV71 vaccine capable of protecting against all of these subgenotypes is desirable. We report here the vaccine potential and protective mechanism of two chimeric virus-like particles (VLPs) presenting conserved neutralizing epitopes of EV71. We show that fusions of hepatitis B core antigen (HBc) with the SP55 or SP70 epitope of EV71, designated HBcSP55 and HBcSP70, respectively, can be rapidly generated and self-assembled into VLPs with the epitopes displayed on the surface. Immunization with the chimeric VLPs induced carrier- and epitope-specific antibody responses in mice. Anti-HBcSP55 and anti-HBcSP70 sera, but not anti-HBc sera, were able to neutralize in vitro multiple genotypes and strains of EV71. Importantly, passive immunization with anti-HBcSP55 or anti-HBcSP70 sera protected neonatal mice against lethal EV71 infections. Interestingly, anti-HBcSP70 sera could inhibit EV71 attachment to susceptible cells, whereas anti-HBcSP55 sera could not. However, both antisera were able to neutralize EV71 infection in vitro at the postattachment stage. The divergent mechanism of neutralization and protection conferred by anti-SP70 and anti-SP55 sera is in part attributed to their respective ability to bind authentic viral particles. Collectively, our study not only demonstrates that chimeric VLPs displaying the SP55 and SP70 epitopes are promising candidates for a broad-spectrum EV71 vaccine but also reveals distinct mechanisms of neutralization by the SP55- and SP70-targeted antibodies.
机译:肠病毒71(EV71)是手,食物和口腔疾病的主要病原体,经常在幼儿中发生。由于EV71内有11个亚型(A,B1至B5和C1至C5),因此需要一种能够抵抗所有这些亚型的EV71疫苗。我们在这里报告的疫苗潜力和两个嵌合病毒样颗粒(VLPs)呈现保守的EV71中和表位的疫苗保护机制。我们显示乙型肝炎核心抗原(HBc)与EV71的SP55或SP70表位的融合体,分别命名为HBcSP55和HBcSP70,可以快速生成并自组装成具有表位显示在表位的VLP。嵌合VLP免疫在小鼠中诱导了载体和表位特异性抗体反应。抗HBcSP55和抗HBcSP70血清能够中和EV71的多种基因型和病毒株,但不能中和。重要的是,用抗HBcSP55或抗HBcSP70血清进行被动免疫可以保护新生小鼠免于致命的EV71感染。有趣的是,抗HBcSP70血清可以抑制EV71附着于易感细胞,而抗HBcSP55血清则不能。但是,两种抗血清都能在附着后阶段在体外中和EV71感染。抗SP70和抗SP55血清赋予的中和和保护机制不同,部分归因于它们各自结合真实病毒颗粒的能力。总的来说,我们的研究不仅表明显示SP55和SP70表位的嵌合VLP是广谱EV71疫苗的有希望的候选者,而且还揭示了SP55和SP70靶向抗体的中和机制。

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