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机构地区:[1]华中科技大学同济医学院医学分子生物学研究室,武汉430030
出 处:《中国免疫学杂志》2002年第9期614-617,共4页Chinese Journal of Immunology
基 金:国家自然科学基金 (No .3 9970 3 2 2 );教育部跨世纪人才培养计划基金资助
摘 要:目的 :探讨树突状细胞 (DC)及Hsp70 肿瘤抗原肽复合物修饰后的体内外特异性抗瘤作用。方法 :采用一定的生化技术 ,从H2 2肝癌细胞中提取肿瘤抗原肽 ,并在体外与Hsp70进行结合 ;采用细胞培养技术 ,培养rmGM CSF、rmIL 4诱导的小鼠骨髓细胞 ,体外获取大量的DC ,后者经Hsp70 肿瘤抗原肽复合物修饰后刺激小鼠脾淋巴细胞 ,通过MTT法进行检测淋巴细胞的激活 ;收集上述刺激传代培养的淋巴细胞 ,检测其对H2 2瘤细胞和艾氏腹水癌细胞的杀伤功能 ;采用H2 2瘤细胞肌肉接种和H2 2瘤细胞、艾氏腹水癌细胞腹腔接种 ,对接种小鼠给予经体外修饰的DC回输 ,观察其抑制肿瘤的效果。结果 :Hsp70 肿瘤抗原肽复合物可使DC成熟 ,大量分泌IL 12、TNF α、IL 1β等细胞因子 ,并能够使DC激活小鼠脾淋巴细胞 ;激活后传代培养的淋巴细胞对H2 2瘤细胞能够特异性地杀伤 ,而对艾氏腹水癌细胞无效 ;经Hsp 70 肿瘤抗原肽复合物修饰后的DC可作为一种有效的瘤苗 ,体内能特异性地抑制小鼠H2 2肿瘤生长。结论 :Hsp70 肿瘤抗原肽复合物能够很好地修饰体外诱导获取的DC ,使后者成为一种有效的瘤苗 ,体外能够特异性地激活淋巴细胞 。Objective:To study the specific antitumor effect of DC modified by Hsp70 tumor peptide complexes in vitro and in vivo.Methods:The tumor antigen peptides were acquired from H22 liver cancer cells and bound Hsp70 in vitro by using biochemical technique;the mouse marrow cells were cultured with induction of rmGM CSF and rmIL 4 by using cell culture technique;mouse spleen lymphocytes was stimulated.The cultured DC cells were harvested and activation of lymphocytes was detected by MTT test and cytotoxicity of stimulated and proliferated lymphocytes to H22 tumor cells and Ehrilich ascites carcinoma cells was tested;The inhibitation to tumor was observed in vivo,after stimulated DCs were injected in mice inoculated by tumor cells.Results:DCs could become mature with the effect of Hsp70 H22 peptide complexes and secret IL 12?TNF α?IL 1β and effectively activate lymphocyte;The activated and proliferated lymphocytes could specifically kill H22 cells but not Ehrilich ascites carcinoma cells in vitro;DCs modified by Hsp70 H22 peptide complexes could become one useful kind of vaccines to inhibit H22 tumor growth in vivo.Conclusion:DCs orignied from marrow cells can be effectively modified by Hsp70 H22 peptide complexes,these modified DCs can specifically activate lymphocytes in vitro and effectively induce antitumor immune response.
关 键 词:树突状细胞 肿瘤免疫学 Hsp70-肿瘤抗原肽复合物 DC疫苗 特异性抗瘤作用
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