Xijing Hospital of Digestive Diseases, The Fourth Military Medical University, Xian, Shaanxi, Peoples Republic of China.
Cell Biol Int. 2012 Mar 1;36(3):297-303. doi: 10.1042/CBI20100462.
DCs (dendritic cells) are the strongest professional APCs (antigen-presenting cells) to initiate immune responses against pathogens, but they are usually incompetent in initiating efficient immune responses in the progress of solid tumours. We have shown that Notch signalling plays a pivotal role in DC-dependent anti-tumour immunity. Compared with the control DCs, OP9-DL1 (Delta-like1) cell co-cultured DCs gained increased tumour suppression activity when inoculated together with tumour cells. This was probably due to the activation of Notch signalling in DCs enhancing their ability to evoke anti-tumour immune responses in solid tumours. Indeed, the OP9-DL1 cell co-cultured DCs expressed higher levels of MHC I, MHC II, CXCR4 (CXC chemokine receptor 4), CCR7 (CC chemokine receptor 7), IL-6 (interleukin 6), IL-12 and TNFα (tumour necrosis factor α), and a lower level of IL-10 than control DCs, resulting in more efficient DC migration and T-cell activation in vivo and in vitro. T-cells stimulated by OP9-DL1 cells co-cultured DCs more efficiently; and were cytotoxic against tumour cells, in contrast with control DCs. These results indicated that up-regulation of Notch signalling in DCs by co-culturing with OP9-DL1 cells enhances DC-dependent anti-tumour immune reactions, making the Notch signalling pathway a target for the establishment of the DC-based anti-tumour immunotherapies.
树突状细胞(DCs)是最强的专业抗原提呈细胞(APCs),可引发针对病原体的免疫反应,但在实体瘤的进展过程中,它们通常无法引发有效的免疫反应。我们已经表明,Notch 信号在 DC 依赖性抗肿瘤免疫中发挥关键作用。与对照 DC 相比,与 OP9-DL1(Delta-like1)细胞共培养的 DC 在与肿瘤细胞一起接种时获得了增强的肿瘤抑制活性。这可能是由于 Notch 信号在 DC 中的激活增强了它们在实体瘤中引发抗肿瘤免疫反应的能力。事实上,OP9-DL1 细胞共培养的 DC 表达更高水平的 MHC I、MHC II、CXCR4(CXC 趋化因子受体 4)、CCR7(CC 趋化因子受体 7)、IL-6(白细胞介素 6)、IL-12 和 TNFα(肿瘤坏死因子α),以及更低水平的 IL-10,导致体内和体外更有效的 DC 迁移和 T 细胞激活。与对照 DC 相比,由 OP9-DL1 细胞共培养的 DC 刺激的 T 细胞更有效;并且对肿瘤细胞具有细胞毒性。这些结果表明,通过与 OP9-DL1 细胞共培养上调 DC 中的 Notch 信号增强了 DC 依赖性抗肿瘤免疫反应,使 Notch 信号通路成为建立基于 DC 的抗肿瘤免疫治疗的靶点。