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A plant-produced vaccine protects mice against lethal West Nile virus infection without enhancing Zika or Dengue virus infectivity

机译:植物生产的疫苗可保护小鼠免受致命的西尼罗河病毒感染而不会增强寨卡病毒或登革热病毒的感染力

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摘要

West Nile virus (WNV) has caused multiple global outbreaks with increased frequency of neuroinvasive disease in recent years. Despite many years of research, there are no licensed therapeutics or vaccines available for human use. One of the major impediments of vaccine development against WNV is the potential enhancement of infection by related flaviviruses in vaccinated subjects through the mechanism of antibody-dependent enhancement of infection (ADE). For instance, the recent finding of enhancement of Zika virus (ZIKV) infection by pre-exposure to WNV further complicates the development of WNV vaccines. Epidemics of WNV and the potential risk of ADE by current vaccine candidates demand the development of effective and safe vaccines. We have previously reported that the domain III (DIII) of the WNV envelope protein can be readily expressed in Nicotiana benthamiana leaves, purified to homogeneity, and promote antigen-specific antibody response in mice. Herein, we further investigated the in vivo potency of a plant-made DIII (plant-DIII) in providing protective immunity against WNV infection. Furthermore, we examined if vaccination with plant-DIII would enhance the risk of a subsequent infection by ZIKV and Dengue virus (DENV). Plant-DIII vaccination evoked antigen-specific cellular immune responses as well as humoral responses. DIII-specific antibodies were neutralizing and the neutralization titers met the threshold correlated with protective immunity by vaccines against multiple flaviviruses. Furthermore, passive administration of anti-plant DIII mouse serum provided full protection against a lethal challenge of WNV infection in mice. Notably, plant DIII-induced antibodies did not enhance ZIKV and DENV infection in Fc gamma receptor-expressing cells, addressing the concern of WNV vaccines in inducing cross-reactive antibodies and sensitizing subjects to subsequent infection by heterologous flavivirus. This study provides the first report of a WNV subunit vaccine that induces protective immunity, while circumventing induction of antibodies with enhancing activity for ZIKV and DENV infection.
机译:近年来,西尼罗河病毒(WNV)导致了多起全球性暴发,神经侵袭性疾病的发生率也在增加。尽管进行了多年的研究,但尚无可供人类使用的许可疗法或疫苗。针对WNV的疫苗开发的主要障碍之一是通过抗体依赖性感染增强(ADE)的机制,潜在地增强了相关黄病毒在疫苗接种对象中的感染。例如,最近发现通过预先暴露于WNV可以增强Zika病毒(ZIKV)感染,这使WNV疫苗的开发更加复杂。当前候选疫苗引起的WNV流行和潜在的ADE风险要求开发有效和安全的疫苗。我们以前曾报道过,WNV包膜蛋白的结构域III(DIII)可以很容易地在本氏烟草叶片中表达,纯化至均一并促进小鼠中的抗原特异性抗体反应。在本文中,我们进一步研究了植物提供的DIII(plant-DIII)在提供针对WNV感染的保护性免疫方面的体内效力。此外,我们检查了用植物DIII疫苗接种是否会增加ZIKV和登革热病毒(DENV)后续感染的风险。植物-DIII疫苗接种引起抗原特异性细胞免疫应答以及体液应答。 DIII特异性抗体被中和,中和滴度达到与针对多种黄病毒的疫苗的保护性免疫相关的阈值。此外,抗植物DIII小鼠血清的被动给药可提供针对小鼠WNV感染致死性攻击的全面保护。值得注意的是,植物DIII诱导的抗体并未增强Fcγ受体表达细胞中的ZIKV和DENV感染,解决了WNV疫苗诱导交叉反应抗体并使受试者对异源黄病毒随后感染敏感的担忧。这项研究提供了WNV亚单位疫苗的第一份报告,该疫苗可诱导保护性免疫,同时绕开对ZIKV和DENV感染具有增强活性的抗体的诱导。

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