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Interferon γ Stimulates Cellular Maturation of Dendritic Cell Line DC2.4 Leading to Induction of Efficient Cytotoxic T Cell Responses and Antitumor Immunity
作者姓名:He T  Tang C  Xu S  Moyana T  Xiang J
作者单位:[1]Research Unit, Health Research Division, Saskatchewan Cancer Agency, Departments of Oncology and Immunology, University of Saskatchewan, Saskatoon, Saskatchewan S7N 4H4, Canada [2]Department of Pathology and Laboratory Medicine, University of Ottawa, Ontario, Canada
基金项目:Acknowledgement This study was supported by research grants (M0P 79415 and 81228) of Canadian Institute of Health Research.
摘    要:Dendritic cells (DCs) are the most potent antigen-presenting cells (APCs) for the initiation of antigen (Ag)-specific immune responses. In most studies, mature DCs are generated from bone marrow cells or peripheral monocytes; in either case, the harvested cells are then cultured in medium containing recombinant GM-CSF, IL-4 and TNF-α for 7-10 days and stimulated with lipopolysaccharide (LPS). However, this approach is time-consuming and expensive. There is another less cost approach of using immobilized DC cell lines, which can easily grow in the medium. A disadvantage with the immobilized DC cell lines, however, is that they are immature DCs and lack expression of MHC class Ⅱ and costimulatory CD40 and CD80 molecules. This, therefore, limits their capacity for inducing efficient antitumor immunity. In the current study, we investigated the possible efficacy of various stimuli (IL-1β, IFN-γ, TNF-α CpG and LPS) in converting the immature dendritic cell line DC2.4 to mature DCs. Our findings were quite interesting since we demonstrated for the first time that IFN-γ was able to stimulate the maturation of DC2.4 cells. The IFN-γ-activated ovalbumin (OVA)-pulsed DC2.4 cells have capacity to upregulate MHC class Ⅱ, CD40, CD80 and CCR7, and to more efficiently stimulate in vitro and in vivo OVA-specific CD8^+ T cell responses and antitumor immunity. Therefore, IFN-γ-activated immortal DC2.4 ceils may prove to be useful in the study of DC biology and antitumor immunity.

关 键 词:干扰素γ  刺激作用  树突状细胞系DC2.4  细胞成熟  诱导  细胞毒T淋巴细胞  免疫应答  抗肿瘤免疫
收稿时间:2007-02-21
修稿时间:2007-04-10

Interferon gamma stimulates cellular maturation of dendritic cell line DC2.4 leading to induction of efficient cytotoxic T cell responses and antitumor immunity
He T,Tang C,Xu S,Moyana T,Xiang J.Interferon gamma stimulates cellular maturation of dendritic cell line DC2.4 leading to induction of efficient cytotoxic T cell responses and antitumor immunity[J].Cellular & Molecular Immunology,2007,4(2):105-111.
Authors:He Tianpei  Tang Chaoke  Xu Shulin  Moyana Terence  Xiang Jim
Institution:Research Unit, Health Research Division, Saskatchewan Cancer Agency, Department of Oncology, University of Saskatchewan, Saskatoon, Saskatchewan S7N 4H4, Canada.
Abstract:Dendritic cells (DCs) are the most potent antigen-presenting cells (APCs) for the initiation of antigen (Ag)-specific immune responses. In most studies, mature DCs are generated from bone marrow cells or peripheral monocytes; in either case, the harvested cells are then cultured in medium containing recombinant GM-CSF, IL-4 and TNF-alpha for 7-10 days and stimulated with lipopolysaccharide (LPS). However, this approach is time-consuming and expensive. There is another less cost approach of using immobilized DC cell lines, which can easily grow in the medium. A disadvantage with the immobilized DC cell lines, however, is that they are immature DCs and lack expression of MHC class II and costimulatory CD40 and CD80 molecules. This, therefore, limits their capacity for inducing efficient antitumor immunity. In the current study, we investigated the possible efficacy of various stimuli (IL-1beta,IFN-gamma, TNF-alpha, CpG and LPS) in converting the immature dendritic cell line DC2.4 to mature DCs. Our findings were quite interesting since we demonstrated for the first time that IFN-gamma was able to stimulate the maturation of DC2.4 cells. The IFN-gamma-activated ovalbumin (OVA)-pulsed DC2.4 cells have capacity to upregulate MHC class II, CD40, CD80 and CCR7, and to more efficiently stimulate in vitro and in vivo OVA-specific CD8+ T cell responses and antitumor immunity. Therefore, IFN-gamma-activated immortal DC2.4 cells may prove to be useful in the study of DC biology and antitumor immunity.
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