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Intradermal Administration of DNA Vaccines Combining a Strategy to Bypass Antigen Processing with a Strategy to Prolong Dendritic Cell Survival Enhances DNA Vaccine Potency

机译:DNA疫苗的皮内给药结合了绕过抗原加工的策略和延长树突状细胞存活的策略可提高DNA疫苗的效力。

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摘要

Intradermal vaccination via gene gun efficiently delivers DNA vaccines into dendritic cells (DCs) of the skin, resulting in the activation and priming of antigen-specific T cells in vivo. We have previously demonstrated that intradermal delivery of DNA vaccines encoding single-chain trimer (SCT) composed of the most immunogenic epitope of human papillomavirus type 16 (HPV-16) E6 protein (aa49-57), β2-microglobulin, and MHC class I heavy chain (SCT-E6) can bypass antigen processing and lead to stable cell-surface presentation of E6 peptides. We also showed that co-administration of DNA vaccines with DNA encoding anti-apoptotic proteins can prolong the survival of DNA-transduced DCs, resulting in significant enhancement of antigen-specific CD8+ T cell immune responses. In the current study, we hypothesized that combining the SCT strategy and antiapoptotic strategy may further enhance DNA vaccine potency by augmenting antigen-specific CD8+ T cell immune responses and antitumor effects in vaccinated mice. Here, we show that C57BL/6 mice vaccinated with SCT-E6 DNA combined with antiapoptotic protein Bcl-xL DNA generated enhanced E6-specific CD8+ T cell immune responses compared to mice vaccinated with SCT-E6 DNA and a non-functional mutant Bcl-xL (mtBcl-xL) DNA. Furthermore, we show that mice treated with SCT-E6 and Bcl-xL DNA generated enhanced anti-tumor effects against E6-expressing tumor cells (TC-1/Luciferase) compared to mice treated with SCT-E6 and mtBcl-xL DNA. We conclude that the combination of a strategy to bypass antigen processing and presentation mechanisms and a strategy to prolong the life of DCs can lead to significant enhancement of DNA vaccine potency.
机译:通过基因枪进行的皮内疫苗接种可将DNA疫苗有效地递送到皮肤的树突状细胞(DC)中,从而在体内激活和引发抗原特异性T细胞。我们以前已经证明,皮内注射编码单链三聚体(SCT)的DNA疫苗是由人乳头瘤病毒16型(HPV-16)E6蛋白(aa49-57),β2-微球蛋白和I类MHC的最具免疫原性的抗原决定簇组成的重链(SCT-E6)可以绕过抗原加工,并导致E6肽稳定的细胞表面呈递。我们还表明,将DNA疫苗与编码抗凋亡蛋白的DNA并用可以延长DNA转导的DC的存活时间,从而显着增强抗原特异性CD8 + T细胞的免疫反应。在当前的研究中,我们假设将SCT策略和抗凋亡策略相结合可以通过增强抗原特异性CD8 + T细胞免疫应答和抗肿瘤作用进一步增强DNA疫苗的效力。在此,我们显示,与接种SCT-E6 DNA的小鼠相比,接种SCT-E6 DNA结合抗凋亡蛋白Bcl-xL DNA的C57BL / 6小鼠产生增强的E6特异性CD8 + T细胞免疫反应和非功能性突变Bcl-xL(mtBcl-xL)DNA。此外,我们显示与用SCT-E6和mtBcl-xL DNA处理的小鼠相比,用SCT-E6和Bcl-xL DNA处理的小鼠对表达E6的肿瘤细胞(TC-1 /荧光素酶)产生了增强的抗肿瘤作用。我们得出结论,绕过抗原加工和呈递机制的策略与延长DC寿命的策略的组合可以导致DNA疫苗效力的显着提高。

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