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通过树突状细胞相关启动子将抗原靶向树突状细胞。

Targeting dendritic cells with antigen via dendritic cell-associated promoters.

机构信息

Department of Tumor Immunology, Nijmegen Centre for Molecular Life Sciences, Radboud University Nijmegen Medical Centre, Nijmegen, The Netherlands.

出版信息

Cancer Gene Ther. 2012 May;19(5):303-11. doi: 10.1038/cgt.2012.2. Epub 2012 Feb 24.

Abstract

The induction of tumor-specific immune responses is largely dependent on the ability of dendritic cells (DCs) to present tumor-associated antigens to T lymphocytes. Therefore, we investigated the use of DC-associated promoter-driven genetic vaccines to specifically target DC in vivo. Restricted expression of vaccine-encoding genes in DC should enhance specificity and improves their safety for clinical applications. Hereto, 3-5 kb upstream sequences of the murine genes encoding CD11c, DC-SIGN, DC-STAMP and Langerin were isolated, characterized and subcloned into enhanced green fluorescent protein (EGFP) reporter constructs. Upon electroporation, EGFP was expressed in DC cell lines, but not in other cell lines, confirming DC-restricted promoter activity. When these promoters were cloned into a construct upstream of the gene for ovalbumin (OVA), it appeared that DC-STAMP promoter-driven expression of OVA (pDCSTAMP/OVA) in DC yielded the most efficient OVA-specific CD4+ and CD8+ T-cell responses in vitro. Administration of pDC-STAMP/OVA in vivo, using the tattoo gun vaccination system, evoked specific immune responses as evidenced in a mouse tumor model. Adoptively transferred pDC-STAMP/OVA-transfected DCs induced strong CD8+ T-cell proliferation in vivo. These experiments demonstrate that our DC-directed promoter constructs are potential tools to restrict antigen expression in DC and could be implemented to modulate DC function by the introduction of relevant proteins.

摘要

肿瘤特异性免疫反应的诱导在很大程度上取决于树突状细胞 (DC) 将肿瘤相关抗原呈递给 T 淋巴细胞的能力。因此,我们研究了使用与 DC 相关的启动子驱动的基因疫苗在体内特异性靶向 DC。疫苗编码基因在 DC 中的受限表达应增强其特异性,并提高其用于临床应用的安全性。为此,我们分离、鉴定了编码小鼠 CD11c、DC-SIGN、DC-STAMP 和 Langerin 的基因的 3-5kb 上游序列,并将其亚克隆到增强型绿色荧光蛋白 (EGFP) 报告构建体中。电穿孔后,EGFP 在 DC 细胞系中表达,但不在其他细胞系中表达,证实了 DC 特异性启动子活性。当这些启动子被克隆到卵清蛋白 (OVA) 基因的上游构建体中时,似乎 DC-STAMP 启动子驱动的 OVA 表达(pDCSTAMP/OVA)在 DC 中产生了最有效的 OVA 特异性 CD4+和 CD8+T 细胞反应。使用纹身枪接种系统在体内给予 pDC-STAMP/OVA,在小鼠肿瘤模型中证明了特异性免疫反应。体内过继转移 pDC-STAMP/OVA 转染的 DC 诱导强烈的 CD8+T 细胞增殖。这些实验表明,我们的 DC 定向启动子构建体是限制 DC 中抗原表达的潜在工具,并可通过引入相关蛋白来调节 DC 功能。

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