首页> 美国卫生研究院文献>International Journal of Nanomedicine >Induction of a robust immune response against avian influenza virus following transdermal inoculation with H5-DNA vaccine formulated in modified dendrimer-based delivery system in mouse model
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Induction of a robust immune response against avian influenza virus following transdermal inoculation with H5-DNA vaccine formulated in modified dendrimer-based delivery system in mouse model

机译:在改良的基于树状聚合物的递送系统中配制的H5-DNA疫苗经皮接种后在小鼠模型中诱导了针对禽流感病毒的强大免疫反应

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摘要

This study was aimed to evaluate the immunogenicity of recombinant plasmid deoxyribonucleic acid (DNA), pBud-H5-green fluorescent protein (GFP)-interferon-regulatory factor (IRF)3 following delivery using polyamidoamine (PAMAM) dendrimer and transactivator of transcription (TAT)-conjugated PAMAM dendrimer as well as the effect of IRF3 as the genetic adjuvant. BALB/c mice were vaccinated transdermally with pBud-H5-GFP, PAMAM/pBud-H5-GFP, TAT-PAMAM/pBud-H5-GFP, and TAT-PAMAM/pBud-H5-GFP-IRF3. The expression analysis of H5 gene from the blood by using quantitative real-time reverse transcriptase polymerase chain reaction confirmed the ability of PAMAM dendrimer as a carrier for gene delivery, as well as the ability of TAT peptide to enhance the delivery efficiency of PAMAM dendrimer. Mice immunized with modified PAMAM by TAT peptide showed higher hemagglutination inhibition titer, and larger CD3+/CD4+ T cells and CD3+/CD8+ T cells population, as well as the production of cytokines, namely, interferon (IFN)-γ, interleukin (IL)-2, IL-15, IL-12, IL-6, and tumor necrosis factor-α compared with those immunized with native PAMAM. These results suggest that the function of TAT peptide as a cell-penetrating peptide is able to enhance the gene delivery, which results in rapid distribution of H5 in the tissues of the immunized mice. Furthermore, pBud-H5-GFP co-expressing IRF3 as a genetic adjuvant demonstrated the highest hemagglutination inhibition titer besides larger CD3+/CD4+ and CD3+/CD8+ T cells population, and strong Th1-like cytokine responses among all the systems tested. In conclusion, TAT-PAMAM dendrimer-based delivery system with IRF3 as a genetic adjuvant is an attractive transdermal DNA vaccine delivery system utilized to evaluate the efficacy of the developed DNA vaccine in inducing protection during challenge with virulent H5N1 virus.
机译:这项研究旨在评估重组质粒脱氧核糖核酸(DNA),pBud-H5-绿色荧光蛋白(GFP)-干扰素调节因子(IRF)3的免疫原性,方法是使用聚酰胺酰胺(PAMAM)树状大分子和转录反式激活因子(TAT) )偶联的PAMAM树状聚合物以及IRF3作为遗传佐剂的作用。 BALB / c小鼠经皮接种了pBud-H5-GFP,PAMAM / pBud-H5-GFP,TAT-PAMAM / pBud-H5-GFP和TAT-PAMAM / pBud-H5-GFP-IRF3。通过定量实时逆转录酶聚合酶链反应对血液中H5基因进行表达分析,证实了PAMAM树状聚合物作为基因传递载体的能力,以及TAT肽增强PAMAM树状聚合物传递效率的能力。用TAT肽修饰的PAMAM免疫的小鼠显示出更高的血凝抑制效价,并具有更大的CD3 + / CD4 + T细胞和CD3 + / CD8 < sup> + T细胞群体,以及干扰素(IFN)-γ,白介素(IL)-2,IL-15,IL-12,IL-6和肿瘤坏死的细胞因子产生与天然PAMAM免疫的相比。这些结果表明TAT肽作为细胞穿透肽的功能能够增强基因传递,这导致H5在免疫小鼠的组织中快速分布。此外,共表达IRF3作为基因佐剂的pBud-H5-GFP显示出除较大的CD3 + / CD4 + 和CD3 + / CD8 + T细胞群体以及强烈的Th1类细胞因子反应。总之,以IRF3作为遗传佐剂的TAT-PAMAM树状聚合物递送系统是一种有吸引力的透皮DNA疫苗递送系统,用于评估已开发的DNA疫苗在强毒H5N1病毒攻击过程中诱导保护的功效。

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