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Co-delivery of plasmid-encoded cytokines modulates the immune response to a DNA vaccine delivered by in vivo electroporation

机译:质粒编码细胞因子的共同传递可调节对体内电穿孔传递的DNA疫苗的免疫反应

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In this study, in vivo electroporation of a DNA vaccine adjuvanted with plasmids encoding different cytokines was investigated in large animals. Sheep were injected intramuscularly with a DNA vaccine encoding an antigen of Haemonchus contortus (pNPA) and plasmids encoding different cytokines followed by in vivo electroporation. Plasmids (pCI) carrying the genes of different cytokines including ovine IL-4(pCI-IL4), IL-10(pCI-IL10), GM-CSF(pCI-GMCSF), and MCP-1alpha(pCI-MCP1alpha), and pCI-IL4+pCI-GMCSF were co-delivered with pNPA. The results showed that co-delivery of pCI-GMCSF or pCI-IL4+pCI-GMCSF significantly enhanced both antibody responses and T cell proliferation responses to the antigen after two DNA immunisations compared to co-delivery of pCI. In contrast, antibody responses of the sheep that received pCI-IL10 were decreased significantly. Other cytokine expressing plasmids did not significantly alter the measured immune responses. Furthermore, co-delivery of pCI-GMCSF increased IgG2 response more than IgG1 responses, suggesting a Th1 bias. However, the increase in IgG2 over IgG1 was less apparent when co-delivery of pCI-IL4 with pCI-GMCSF. Interestingly, the co-delivery of pCI-IL4 alone did not increase the IgG1 titre, suggesting that both pCI-GMCSF and pCI-IL4 are required for optimal IgG1 production. Thus, co-delivery of plasmid-encoded cytokine genes with in vivo electroporation has the ability to effectively modulate immune responses to a DNA vaccine in a large animal.
机译:在这项研究中,在大型动物中研究了佐剂编码不同细胞因子质粒的DNA疫苗的体内电穿孔。绵羊肌肉内注射了一种编码变形金丝猴抗原(pNPA)的DNA疫苗和编码不同细胞因子的质粒,然后进行体内电穿孔。携带不同细胞因子基因的质粒(pCI),包括绵羊IL-4(pCI-IL4),IL-10(pCI-IL10),GM-CSF(pCI-GMCSF)和MCP-1alpha(pCI-MCP1alpha),以及pCI-IL4 + pCI-GMCSF与pNPA共递送。结果显示,与共同递送pCI相比,共同递送pCI-GMCSF或pCI-IL4 + pCI-GMCSF显着增强了两次DNA免疫后对抗原的抗体反应和T细胞增殖反应。相反,接受pCI-IL10的绵羊的抗体反应显着降低。其他表达细胞因子的质粒没有显着改变测得的免疫反应。此外,共递送pCI-GMCSF比IgG1应答增加IgG2应答,提示Th1偏倚。但是,当pCI-IL4与pCI-GMCSF共同递送时,IgG2相对于IgG1的增加不太明显。有趣的是,单独递送pCI-IL4并不会增加IgG1的滴度,这表明pCI-GMCSF和pCI-IL4都是产生最佳IgG1所必需的。因此,质粒编码的细胞因子基因与体内电穿孔的共同递送具有有效调节大型动物对DNA疫苗的免疫应答的能力。

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