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首页> 外文期刊>Journal of Immunological Methods >Murine dendritic cells generated under serum-free conditions have a mature phenotype and efficiently induce primary immune responses.
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Murine dendritic cells generated under serum-free conditions have a mature phenotype and efficiently induce primary immune responses.

机译:在无血清条件下产生的鼠树突状细胞具有成熟的表型,并有效诱导初次免疫反应。

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摘要

Vaccination with in vitro-generated dendritic cells (DC) that present tumor-associated antigens is a promising approach for immunotherapy of malignant tumors. For optimization of DC-based vaccination protocols, preclinical tumor models that mimic the clinical situation closely are highly desirable. Strong non-specific T cell activation was observed in experimental immunization of mice with syngeneic DC generated in standard FCS-supplemented culture medium. To avoid deviation of the immune response to FCS-derived antigens, a serum-free culture protocol for in vitro generation of murine DC from bone marrow progenitor cells was developed. In comparison to DC differentiated with FCS supplementation, DC generated under serum-free conditions (sfDC) have a more homogeneous phenotype with higher expression of IL-12 and the differentiation and activation markers CD11c, CD40, CD80, CD83, CD86, DEC-205, and MHC class II. Demonstration of strong uptake of protein and carbohydrate antigens and analysis of the in vivo migration behaviour of sfDC also indicated excellent APC function. Vaccination of mice with peptide-pulsed sfDC efficiently induced an antigen-specific T cell response as assessed by MHC tetramer staining, IFN-gamma ELISPOT and in vivo cytotoxicity assay. sfDC may therefore represent a valuable tool to improve active tumor immunotherapy in animal models.
机译:呈递与肿瘤相关的抗原的体外生成树突状细胞(DC)的疫苗接种是恶性肿瘤免疫治疗的一种有前途的方法。为了优化基于DC的疫苗接种方案,非常需要紧密模拟临床情况的临床前肿瘤模型。在标准FCS补充培养基中产生的同基因DC对小鼠进行的实验免疫中,观察到了强烈的非特异性T细胞活化。为了避免对FCS衍生抗原的免疫反应发生偏差,开发了一种无血清培养方案,用于从骨髓祖细胞中体外产生鼠DC。与添加FCS分化的DC相比,在无血清条件下产生的DC(sfDC)具有更均一的表型,具有更高的IL-12表达以及分化和激活标记CD11c,CD40,CD80,CD83,CD86,DEC-205 ,以及MHC II类。蛋白质和碳水化合物抗原的强摄取以及对sfDC的体​​内迁移行为的分析也表明了出色的APC功能。通过MHC四聚体染色,IFN-γELISPOT和体内细胞毒性试验评估,用肽脉冲的sfDC免疫小鼠可有效诱导抗原特异性T细胞应答。因此,sfDC可能代表了改善动物模型中主动肿瘤免疫疗法的有价值的工具。

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