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:Three-Dimensional Model Analysis Revealed Differential Cytotoxic Effects of the NK-92 Cell Line and Primary NK Cells on Breast and Ovarian Carcinoma Cell Lines Mediated by Variations in Receptor-Ligand Interactions and Soluble Factor Profiles.
Three-Dimensional Model Analysis Revealed Differential Cytotoxic Effects of the NK-92 Cell Line and Primary NK Cells on Breast and Ovarian Carcinoma Cell Lines Mediated by Variations in Receptor-Ligand Interactions and Soluble Factor Profiles.
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将由琼脂糖模具制备、尺寸和形状相近的肿瘤细胞球与NK-92或pNK细胞共同培养24小时。采用流式细胞术或共聚焦显微镜检测肿瘤细胞死亡;同时分析细胞因子产生、颗粒酶B水平及NK细胞脱颗粒,并对pNK细胞和靶细胞进行表型分析。
NK-92细胞和pNK细胞对BT-474细胞球的裂解效率均较低且相近;相比之下,pNK细胞清除MCF7和SKOV-3细胞球的能力强于NK-92细胞。功能和表型分析有力支持:对SKOV-3细胞球进行细胞毒性攻击时,pNK细胞的活化涉及NKG2D-NKG2DL通路;而pNK细胞对MCF7细胞球的反应似乎涉及CX3CR1-CX3CL1轴。
我们提出了一种新方法,可初步鉴定能够根据具体肿瘤类型改变癌症治疗效果的候选NK细胞受体。利用这一方法,可选择NK-92细胞或pNK细胞亚群进行后续扩增和/或基因改造,以改善靶向特异性和反应能力。
Background/objectives: The functional activity of a certain tumor determines the effectiveness of primary NK cells and NK-92 cell line-based cancer therapy; their therapeutic effectiveness against different tumors can vary. This work provides a direct simultaneous comparison of the cytotoxic effects of in vitro-activated peripheral NK (pNK) cells and NK-92 cells in spheroid models of BT-474, MCF7 and SKOV-3 carcinomas and uncovers the reasons for the differential effectiveness of NK cells against tumors. Methods: Tumor spheroids of similar size and shape, obtained from agarose molds, were incubated with NK-92 or pNK cells for 24 h. Tumor cell death was detected using flow cytometry or confocal microscopy. Cytokine production, granzyme B levels and NK cell degranulation analyses were performed, along with pNK and target-cell phenotypic characterization.
Results: While NK-92 and pNK cells lysed BT-474 spheroids with comparably low efficiency, pNK cells were more capable of eliminating MCF7 and SKOV-3 spheroids than NK-92 cells were. The results of the functional and phenotypic analyses strongly support the participation of the NKG2D-NKG2DL pathway in pNK cell activation induced by the most sensitive cytotoxic attack on SKOV-3 spheroids, whereas the CX3CR1-CX3CL1 axis appears to be involved in the pNK reaction against MCF-7 spheroids.
Conclusions: We provide a new approach for the preliminary identification of the most promising NK cell receptors that can alter the effectiveness of cancer therapy depending on the specific tumor type. Using this approach, NK-92 cells or pNK subsets can be selected for further accumulation and/or genetic modification to improve specificity and reactivity.
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