首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Immunization with Th-CTL Fusion Peptide and Cytosine-Phosphate-Guanine DNA in Transgenic HLA-A2 Mice Induces Recognition of HIV-Infected T Cells and Clears Vaccinia Virus Challenge.
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Immunization with Th-CTL Fusion Peptide and Cytosine-Phosphate-Guanine DNA in Transgenic HLA-A2 Mice Induces Recognition of HIV-Infected T Cells and Clears Vaccinia Virus Challenge.

机译:在转基因HLA-A2小鼠中用Th-CTL融合肽和胞嘧啶-磷酸-鸟嘌呤DNA进行免疫诱导对HIV感染的T细胞的识别,并清除痘苗病毒的攻击。

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摘要

We evaluated immunogenicity of a novel Th-CTL fusion peptide composed of the pan DR Th epitope and a CTL epitope derived from HIV-pol in two transgenic HLA-A*0201/K(b) mouse models. The immunogenicity of peptides of this structure is highly dependent on coadministered cytosine-phosphate-guanine DNA. Initial evaluations of peptide-specific immunity are based on results of chromium release assay, intracellular cytokine, and tetramer staining. Significant cytotoxic T cell responses are found upon a single immunization with as low as 0.1 nmol both peptide and cytosine-phosphate-guanine DNA. Splenocytes from immunized mice recognize naturally processed HIV-pol expressed from vaccinia virus (pol-VV). Translation of immunologic criteria into more relevant assays was pursued using systemic challenge of immunized mice with pol-VV. Only mice receiving both peptide and DNA together successfully cleared upward of 6 logs of virus from ovaries, compared with controls. Challenge with pol-VV by intranasal route of intranasal immunized mice showed a significant reduction in the levels of VV in lung compared with naive mice. A convincing demonstration of the relevance of these vaccines is the robust lysis of HIV-infected Jurkat T cells (JA2/R7/Hyg) by immune splenocytes from peptide- and DNA-immunized mice. This surprisingly effective immunization merits consideration for clinical evaluation, because it succeeded in causing immune recognition and lysis of cells infected with its target virus and reduction in titer of highly pathogenic VV.
机译:我们在两个转基因HLA-A * 0201 / K(b)小鼠模型中评估了由pan DR Th表位和HIV-pol衍生的CTL表位组成的新型Th-CTL融合肽的免疫原性。这种结构的肽的免疫原性高度依赖于共同施用的胞嘧啶-磷酸-鸟嘌呤DNA。肽特异性免疫的初步评估是基于铬释放测定,细胞内细胞因子和四聚体染色的结果。肽和胞嘧啶-磷酸-鸟嘌呤DNA均低至0.1 nmol进行单次免疫后,即可发现明显的细胞毒性T细胞反应。来自免疫小鼠的脾细胞识别从牛痘病毒(pol-VV)表达的天然加工的HIV-pol。使用pol-VV免疫小鼠的全身攻击,将免疫学标准转换为更相关的检测方法。与对照组相比,只有同时接受肽和DNA的小鼠才能从卵巢中成功清除多达6对数的病毒。通过鼻内途径免疫的小鼠经鼻内途径对pol-VV的攻击表明,与纯天然小鼠相比,肺中VV的水平明显降低。这些疫苗相关性的令人信服的证明是肽和DNA免疫小鼠的免疫脾细胞对HIV感染的Jurkat T细胞(JA2 / R7 / Hyg)的强烈裂解。这种令人惊讶的有效免疫方法值得临床评估,因为它成功地引起了对其目标病毒感染的细胞的免疫识别和裂解,并降低了高致病性VV的滴度。

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