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THE RELATIVE IMMUNOGENICITY OF DNA VACCINES DELIVERED BY THE INTRAMUSCULAR NEEDLE INJECTION ELECTROPORATION AND GENE GUN METHODS

机译:髓内针注射电穿孔和基因枪法产生的DNA疫苗的相对免疫原性

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摘要

Immunogenicity of DNA vaccines varies significantly due to many factors including the inherent immunogenicity of the protein antigen encoded in the DNA vaccine, the optimal immune responses that can be achieved in different animal models and in humans with different genetic backgrounds and, to a great degree, the delivery methods used to administer the DNA vaccines. Based on published results, only the gene gun-mediated delivery approach has been able to elicit protective levels of immune responses in healthy, adult volunteers by DNA immunization alone without the use of another vaccine modality as a boost [, ]. Recent results from animal studies suggest that electroporation is also effective in eliciting high level immune responses. However, there have been no reports to identify the similarities and differences between these two leading physical delivery methods for DNA vaccines against infectious disease targets. In the current study, we compared the relative immunogenicity of a DNA vaccine expressing a hemagglutinin (HA) antigen from an H5N1 influenza virus in two animal models (rabbit and mouse) when delivered by either intramuscular needle immunization (IM), gene gun (GG) or electroporation (EP). HA-specific antibody, T cell and B cell responses were analyzed. Our results indicate that, overall, both the GG and EP methods are more immunogenic than the IM method. However, EP and IM stimulated a Th-1 type antibody response and the antibody response to GG was Th-2 dominated. These findings provide important information for the further selection and optimization of DNA vaccine delivery methods for human applications.
机译:DNA疫苗的免疫原性受很多因素的影响,其中包括DNA疫苗中编码的蛋白质抗原的固有免疫原性,可以在不同动物模型和具有不同遗传背景的人类中实现的最佳免疫反应,并且在很大程度上,用于管理DNA疫苗的递送方法。根据已发表的结果,仅基因枪介导的递送方法仅通过DNA免疫就能够在健康的成年志愿者中引发保护性免疫反应水平,而无需使用其他疫苗形式来增强免疫力[,]。动物研究的最新结果表明,电穿孔在引起高水平免疫应答方面也有效。但是,目前尚无报道确定这两种主要的针对传染病靶标的DNA疫苗的物理传递方法之间的异同。在当前的研究中,我们比较了两种动物模型(兔和小鼠)中通过肌肉注射针免疫(IM),基因枪(GG)表达H5N1流感病毒表达血凝素(HA)抗原的DNA疫苗的相对免疫原性。 )或电穿孔(EP)。分析HA特异性抗体,T细胞和B细胞反应。我们的结果表明,总体而言,GG和EP方法均比IM方法更具免疫原性。然而,EP和IM刺激Th-1型抗体应答,并且对GG的抗体应答以Th-2为主。这些发现为进一步选择和优化人类应用的DNA疫苗递送方法提供了重要信息。

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