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首页> 外文期刊>The journal of gene medicine >Double-stranded secondary structures on mRNA induce type I interferon (IFN alpha/beta) production and maturation of mRNA-transfected monocyte-derived dendritic cells
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Double-stranded secondary structures on mRNA induce type I interferon (IFN alpha/beta) production and maturation of mRNA-transfected monocyte-derived dendritic cells

机译:mRNA上的双链二级结构诱导I型干扰素(IFN alpha / beta)的产生和成熟的mRNA转染的单核细胞衍生的树突状细胞的成熟。

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Background The development of dendritic cell (DC)-based vaccines using antigen-encoding mRNA requires identification of the critical parameters for efficient ex vivo loading of DCs. Exogenously delivered mRNA can induce DC activation, but the molecular mechanisms involved are unknown. The aim of the present study was to identify the means by which mRNA-dependent activation of DCs occurs.Methods In vitro transcribed mRNA molecules were delivered into porcine monocyte-derived DCs (MoDCs) using different non-viral gene transfer procedures. Using the green fluorescent protein (GFP) as reporter gene, as well as rhodamine-labeled RNA, intracellular delivery and transfection efficiency were assessed by confocal microscopy and flow cytometry. DC activation was monitored in terms of MHC class II and CD80/86 upregulation, as well as the production of type I interferon (IFN-alpha/beta).Results mRNA-lipofected MoDCs produced type I IFN and upregulated MHC class 11 and CD80/86. Computational analysis of the mRNA molecules predicted highly ordered secondary structures forming double-stranded RNA (dsRNA). This dsRNA was also detectable by immunofluorescence in mRNA-lipofected cells, using antibody specific for dsRNA. Digestion of the mRNA prior to lipofection with a double-strand-specific RNase, but not a single-strand-specific RNase, abrogated DC activation. Impairment of protein kinase R (PKR) with 2-aminopurine also interfered with the activation.Conclusions Double-stranded secondary structures on mRNA delivered by lipofection can activate MoDCs. This could have important implications for mRNA-based immunomodulation of DCs, DC-based immunotherapy, and formulation of RNA-based vaccines. In addition, this report describes the first in vitro steps towards development of a novel large animal model system to evaluate DC-based vaccines against infectious diseases. Copyright (c) 2004 John Wiley C Sons, Ltd.
机译:背景技术使用编码抗原的mRNA的基于树突状细胞(DC)的疫苗的开发需要确定有效离体加载DC的关键参数。外源递送的mRNA可以诱导DC激活,但是涉及的分子机制尚不清楚。本研究的目的是确定发生依赖于DC的mRNA的激活的方法。方法采用不同的非病毒基因转移方法,将体外转录的mRNA分子递送到猪单核细胞衍生的DC(MoDC)中。使用绿色荧光蛋白(GFP)作为报告基因,以及若丹明标记的RNA,通过共聚焦显微镜和流式细胞术评估细胞内传递和转染效率。通过MHC II类和CD80 / 86上调以及I型干扰素(IFN-alpha / beta)的产生来监测DC激活。结果,mRNA脂质体感染的MoDCs产生I型IFN并上调了MHC 11类和CD80 / 86。 mRNA分子的计算分析预测形成双链RNA(dsRNA)的高度有序的二级结构。使用对dsRNA特异的抗体,该dsRNA也可通过免疫荧光检测在mRNA脂质转染的细胞中。在用双链特异性RNase而不是单链特异性RNase进行脂质转染前,mRNA的消化消除了DC激活。蛋白激酶R(PKR)受到2-氨基嘌呤的损害也干扰了激活。结论脂质体转染的mRNA的双链二级结构可以激活MoDC。这可能对DC的基于mRNA的免疫调节,DC的免疫疗法以及RNA疫苗的配制具有重要意义。此外,本报告介绍了开发新型大型动物模型系统以评估基于DC的抗传染病疫苗的第一步体外步骤。版权所有(c)2004 John Wiley C Sons,Ltd.

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