RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:IFN-β activates cytotoxic function of human natural killer cells toward IL-27 and poly(I:C) stimulated PC3 and DU145 cells.
IFN-β activates cytotoxic function of human natural killer cells toward IL-27 and poly(I:C) stimulated PC3 and DU145 cells.
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前列腺癌患者NK细胞表型和功能发生改变,疾病中NK活性较高与预后较好相关。晚期前列腺癌标准治疗耗尽后,免疫疗法是有前景的选择。随着NK细胞疗法快速发展,需了解如何触发NK细胞杀伤已建立免疫逃逸策略的癌细胞。调节晚期前列腺癌细胞的细胞因子谱,可能是改变NK活化的方向。研究团队此前发现,IL-27联合TLR3激动剂poly(I:C)可改变PC3和DU145晚期前列腺癌模型的细胞因子分泌。
本研究进一步在体外共培养模型中评估原代人NK细胞对前列腺癌细胞死亡的作用。IL-27和poly(I:C)刺激PC3、DU145细胞后诱导IFN-γ分泌;该因子是活化原代人NK细胞杀伤刺激后肿瘤细胞所必需的。PC3较DU145更易被NK杀伤,可能因对刺激产生的IFN-γ水平不同。IFN-γ使共培养NK细胞颗粒酶B分泌及膜结合TRAIL表达上升。研究还显示NK细胞对PC3的杀伤部分依赖TRAIL。该研究阐释了增强NK细胞细胞毒功能以靶向癌细胞的机制。
Natural killer (NK) cell phenotype and function are altered in patients with prostate cancer, and increased NK cell activity is associated with a better prognosis in patients with disease. For patients with advanced stage prostate cancer, immunotherapies are a promising approach when standard treatment options have been exhausted.
With the rapid emergence of NK cell-based therapies, it is important to understand the mechanisms by which NK cells can be triggered to kill cancer cells that have developed immune-evasive strategies. Altering the cytokine profiles of advanced prostate cancer cells may be an area to explore when considering ways in which NK cell activation can be modulated.
We have previously demonstrated that combining the cytokine, IL-27, with TLR3 agonist, poly(I:C), changes cytokine secretion in the advanced prostate cancer models, PC3 and DU145 cells.
Herein, we extend our previous work to study the effect of primary human NK cells on prostate cancer cell death in an in vitro co-culture model. Stimulating PC3 and DU145 cells with IL-27 and poly(I:C) induced IFN- secretion, which was required for activation of primary human NK cells to kill these stimulated prostate cancer cells.
PC3 cells were more sensitized to NK cell-mediated killing when compared to DU145 cells, which was attributed to differential levels of IFN- produced in response to stimulation with IL-27 and poly(I:C). IFN- increased granzyme B secretion and membrane-bound TRAIL expression by co-cultured NK cells.
We further demonstrated that these NK cells killed PC3 cells in a partially TRAIL-dependent manner. This work provides mechanistic insight into how the cytotoxic function of NK cells can be improved to target cancer cells.
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