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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Human Langerhans cells use an IL-15R-α/IL-15/pSTAT5-dependent mechanism to break T-cell tolerance against the self-differentiation tumor antigen WT1
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Human Langerhans cells use an IL-15R-α/IL-15/pSTAT5-dependent mechanism to break T-cell tolerance against the self-differentiation tumor antigen WT1

机译:人类Langerhans细胞使用IL-15R-α/ IL-15 / pSTAT5依赖性机制来打破T细胞对自分化肿瘤抗原WT1的耐受性

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Human CD34 + progenitor-derived Langerhans-type dendritic cells (LCs) are more potent stimulators of T-cell immunity against tumor and viral antigens in vitro than are monocyte-derived DCs (moDCs). The exact mechanisms have remained elusive until now, however. LCs synthesize the highest amounts of IL-15R-α mRNA and protein, which binds IL-15 for presentation to responder lymphocytes, thereby signaling the phosphorylation of signal transducer and activator of transcription 5 (pSTAT5). LCs electroporated with Wilms tumor 1 (WT1) mRNA achieve sufficiently sustained presentation of antigenic peptides, which together with IL-15R-α/IL-15, break tolerance against WT1 by stimulating robust autologous, WT1-specific cytolytic T-lymphocytes (CTLs). These CTLs develop from healthy persons after only 7 days' stimulation without exogenous cytokines and lyse MHC-restricted tumor targets, which include primary WT1 + leukemic blasts. In contrast, moDCs require exogenous rhuIL-15 to phosphorylate STAT5 and attain stimulatory capacity comparable to LCs. LCs therefore provide a more potent costimulatory cytokine milieu for T-cell activation than do moDCs, thus accounting for their superior stimulation of MHC-restricted Ag-specific CTLs without need for exogenous cytokines. These data support the use of mRNA-electroporated LCs, or moDCs supplemented with exogenous rhuIL-15, as vaccines for cancer immunotherapy to break tolerance against selfdifferentiation antigens shared by tumors.
机译:与单核细胞来源的DC(moDC)相比,人CD34 +祖细胞衍生的Langerhans型树突细胞(LC)在体外对T细胞针对肿瘤和病毒抗原的免疫力更有力。直到现在,确切的机制仍然难以捉摸。 LC合成了最高量的IL-15R-αmRNA和蛋白质,该蛋白质与IL-15结合后可呈递至应答淋巴细胞,从而发出信号转导子和转录激活子5(pSTAT5)的磷酸化信号。用Wilms肿瘤1(WT1)mRNA电穿孔的LC实现了足够持久的抗原肽呈递,该抗原肽与IL-15R-α/ IL-15一起通过刺激强大的WT1特异性溶细胞性T淋巴细胞(CTL)破坏了对WT1的耐受性。这些CTL是在健康人受到刺激后仅7天就产生的,没有外源细胞因子和MHC限制的肿瘤靶标,其中包括原代WT1 +白血病母细胞。相反,moDC需要外源性rhuIL-15磷酸化STAT5并获得与LC相当的刺激能力。因此,LCs比moDCs为T细胞活化提供了更有效的共刺激细胞因子环境,从而说明了它们对MHC限制性Ag特异CTL的出色刺激,而无需外源细胞因子。这些数据支持使用mRNA电穿孔的LC或补充有外源性rhuIL-15的moDC作为疫苗进行癌症免疫治疗,以打破对肿瘤共有的自分化抗原的耐受性。

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