The Biodesign Institute, Arizona State University, Tempe, AZ, USA.
School of Life Sciences, Arizona State University, Tempe, AZ, USA.
Plant Biotechnol J. 2018 Feb;16(2):572-580. doi: 10.1111/pbi.12796. Epub 2017 Aug 23.
The global Zika virus (ZIKV) outbreak and its link to foetal and newborn microcephaly and severe neurological complications in adults call for the urgent development of ZIKV vaccines. In response, we developed a subunit vaccine based on the ZIKV envelope (E) protein and investigated its immunogenicity in mice. Transient expression of ZIKV E (zE) resulted in its rapid accumulation in leaves of Nicotiana benthamiana plants. Biochemical analysis revealed that plant-produced ZIKV E (PzE) exhibited specific binding to a panel of monoclonal antibodies that recognize various zE conformational epitopes. Furthermore, PzE can be purified to >90% homogeneity with a one-step Ni affinity chromatography process. PzE are found to be highly immunogenic, as two doses of PzE elicited both potent zE-specific antibody and cellular immune responses in mice. The delivery of PzE with alum induced a mixed Th1/Th2 immune response, as the antigen-specific IgG isotypes were a mixture of high levels of IgG1/IgG2c and splenocyte cultures from immunized mice secreted significant levels of IFN-gamma, IL-4 and IL-6. Most importantly, the titres of zE-specific and neutralizing antibodies exceeded the threshold that correlates with protective immunity against multiple strains of ZIKV. Thus, our results demonstrated the feasibility of plant-produced ZIKV protein antigen as effective, safe and affordable vaccines against ZIKV.
全球 Zika 病毒(ZIKV)爆发及其与胎儿和新生儿小头畸形以及成年人严重神经并发症的关联,促使我们迫切需要开发 ZIKV 疫苗。为此,我们基于 Zika 病毒包膜(E)蛋白开发了一种亚单位疫苗,并在小鼠中研究了其免疫原性。Zika 病毒 E(zE)的瞬时表达导致其在本氏烟叶片中快速积累。生化分析表明,植物产生的 Zika 病毒 E(PzE)特异性结合了一组识别各种 zE 构象表位的单克隆抗体。此外,PzE 可以通过一步 Ni 亲和层析过程纯化至>90%的纯度。研究发现,PzE 具有高度的免疫原性,因为两剂 PzE 在小鼠中引发了强烈的 zE 特异性抗体和细胞免疫反应。PzE 与明矾一起递送可诱导混合 Th1/Th2 免疫反应,因为抗原特异性 IgG 同种型是高水平 IgG1/IgG2c 的混合物,并且来自免疫小鼠的脾细胞培养物分泌了大量的 IFN-γ、IL-4 和 IL-6。最重要的是,zE 特异性和中和抗体的滴度超过了与针对多种 ZIKV 株的保护免疫力相关的阈值。因此,我们的研究结果证明了植物产生的 Zika 病毒蛋白抗原作为针对 ZIKV 的有效、安全和负担得起的疫苗的可行性。