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Codelivery of improved immune complex and virus-like particle vaccines containing Zika virus envelope domain III synergistically enhances immunogenicity

机译:含有Zika病毒包膜结构域III的改进免疫复合物和病毒样颗粒疫苗的辅助交付协同增强免疫原性

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Zika virus (ZIKV) reemergence poses a significant health threat especially due to its risks to fetal development, necessitating safe and effective vaccines that can protect pregnant women. Zika envelope domain III (ZE3) has been identified as a safe and effective vaccine candidate, however it is poorly immunogenic. We previously showed that plant-made recombinant immune complex (RIC) vaccines are a robust platform to improve the immunogenicity of weak antigens. In this study, we altered the antigen fusion site on the RIC platform to accommodate N-terminal fusion to the IgG heavy chain (N-RIC), and thus a wider range of antigens, with a resulting 40% improvement in RIC expression over the normal C-terminal fusion (C-RIC). Both types of RICs containing ZE3 were efficiently assembled in plants and purified to >95% homogeneity with a simple one-step purification. Both ZE3 RICs strongly bound complement receptor C1q and elicited strong ZE3-specific antibody titers that correlated with ZIKV neutralization. When either N-RIC or C-RIC was codelivered with plant-produced hepatitis B core (HBc) virus-like particles (VLP) displaying ZE3, the combination elicited 5-fold greater antibody titers (>1,000,000) and more strongly neutralized ZIKV than either RICs or VLPs alone, after only two doses without adjuvant. These findings demonstrate that antigens that require a free N-terminus for optimal antigen display can now be used with the RIC system, and that plant-made RICs and VLPs are highly effective vaccines targeting ZE3. Thus, the RIC platform can be more generally applied to a wider variety of antigens. (C) 2020 Elsevier Ltd. All rights reserved.
机译:Zika病毒(ZIKV)的重新造型造成了重大的健康威胁,特别是由于其对胎儿发育的风险,需要可以保护孕妇的安全有效的疫苗。 Zika包络结构域III(ZE3)已被鉴定为安全有效的疫苗候选者,但它是较差的免疫原性。我们以前表明,植物制造的重组免疫复合物(RIC)疫苗是一种改善弱抗原的免疫原性的鲁棒平台。在这项研究中,我们改变了RIC平台上的抗原融合位点,以适应N末端融合到IgG重链(N-RIC),因此更广泛的抗原,导致RIC表达的40%改善正常的C末端融合(C-RIC)。含有ZE3的两种类型的RIC在植物中有效地组装并用简单的单步纯化纯化至> 95%均匀性。 ZE3 RICS强烈结合的补体受体C1Q并引发与ZIKV中和相关的强ZE3特异性抗体滴度。当N-RIC或C-RIC用植物产生的乙型肝炎核(HBC)病毒样颗粒(VLP)呈现出ZE3时,所述组合引起了5倍的抗体滴度(> 1,000,000)和更强烈的中和的ZIKV而不是单独的RIC或VLP,只有两剂没有佐剂。这些研究结果表明,需要用于最佳抗原显示器的自由N-末端的抗原现在可以与RIC系统一起使用,并且植物制造的RICS和VLP是靶向ZE3的高效疫苗。因此,RIC平台可以更普遍应用于更广泛的抗原。 (c)2020 elestvier有限公司保留所有权利。

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