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首页> 外文期刊>Vaccine >Coimmunization with an optimized IL15 plasmid adjuvant enhances humoral immunity via stimulating B cells induced by genetically engineered DNA vaccines expressing consensus JEV and WNV E DIII.
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Coimmunization with an optimized IL15 plasmid adjuvant enhances humoral immunity via stimulating B cells induced by genetically engineered DNA vaccines expressing consensus JEV and WNV E DIII.

机译:与优化的IL15质粒佐剂共免疫可通过刺激表达共有JEV和WNV E DIII的基因工程DNA疫苗诱导的B细胞来增强体液免疫。

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摘要

The Japanese encephalitis virus (JEV) and West Nile virus (WNV) are responsible for a large proportion of viral encephalitis in humans. Currently, there is no FDA approved specific treatment for either, though there are attempts to develop vaccines against both viruses. In this study, we proposed novel genetically engineered DNA vaccines against these two neurotrophic flaviviruses. The structural domain III (DIII) of E protein from these viruses is reported to carry dominant epitopes that induce neutralizing antibodies. Therefore we created consensus sequence of DIII domain across numerous strains of JEV and WNV. Based on the consensus amino acid sequence, synthetic codon and RNA optimized DIII-expressing DNA vaccine constructs with an efficient leader sequence were synthesized for immunization studies. In addition, we also constructed a genetically engineered IL15 DNA vaccine molecular adjuvant for co-stimulating the immune response against DIII clones. Vaccine constructs were delivered into BALB/C mice intramuscularly followed by electroporation using the CELLECTRAReg. in vivo electroporator. We have observed that the combined delivery of both WNV DIII and IL15-ECRO DNA vaccine constructs resulted in not only the highest level of antibody against DIII, but also enhanced cross reactivity with two other antigens tested. Also, coimmunization with IL15 plasmid further increased the immune response by four- to five-fold. Importantly, we have shown that IL15 coimmunization adjuvanted humoral responses against DIII antigens by elevating the level of antibody secreting B cells. Such a DNA vaccine approach may better help to control potential travel related infectious agents such as JEV.
机译:日本脑炎病毒(JEV)和西尼罗河病毒(WNV)是人类病毒性脑炎的主要原因。尽管尝试开发针对两种病毒的疫苗,但目前尚无FDA批准的任何一种特异性治疗方法。在这项研究中,我们提出了针对这两种神经营养性黄病毒的新型基因工程DNA疫苗。据报道,来自这些病毒的E蛋白的结构域III(DIII)带有可诱导中和抗体的显性表位。因此,我们在JEV和WNV的许多菌株之间建立了DIII结构域的共有序列。基于共有氨基酸序列,合成了具有有效前导序列的合成密码子和RNA优化的表达DIII的DNA疫苗构建体,用于免疫研究。此外,我们还构建了基因工程的IL15 DNA疫苗分子佐剂,用于共同刺激针对DIII克隆的免疫应答。将疫苗构建体肌肉内递送至BALB / C小鼠,然后使用CELLECTRAReg电穿孔。 体内电穿孔器。我们已经观察到,WNV DIII和IL15-ECRO DNA疫苗构建体的联合递送不仅导致最高水平的针对DIII的抗体,而且还增强了与测试的其他两种抗原的交叉反应性。同样,用IL15质粒共免疫进一步使免疫应答提高了四到五倍。重要的是,我们已经表明,IL15共免疫可通过提高抗体分泌B细胞的水平来辅助针对DIII抗原的体液反应。这种DNA疫苗方法可能会更好地帮助控制潜在的与旅行有关的传染原,例如JEV。

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