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:Stem-cell based, machine learning approach for optimizing natural killer cell-based personalized immunotherapy for high-grade ovarian cancer.
Stem-cell based, machine learning approach for optimizing natural killer cell-based personalized immunotherapy for high-grade ovarian cancer.
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晚期高级别浆液性卵巢癌在现有治疗手段下仍是治疗难题。利用活化自然杀伤(NK)细胞的个体化癌症免疫治疗日益受到关注。NK细胞约占循环白细胞的15%,也是肿瘤微环境(TME)及机体对肿瘤免疫应答的重要组成部分。
在本研究中,首先使用机器学习平台DeepNEU-C2Rx构建经过验证的人工诱导多能干细胞模拟模型。随后利用这些模拟模型生成野生型人工诱导NK细胞(aiNK-WT)及TME模拟模型。经验证后,将aiNK-WT模拟模型暴露于以aiOVCAR3为代表的人工诱导高级别浆液性卵巢癌。在存在和不存在aiOVCAR3的情况下评估aiNK的细胞溶解活性,并将数据与文献比较以进行验证。TME模拟提示26个可评估的因子,依据其在aiOVCAR3存在下增强aiNK-WT细胞溶解活性的能力进行评价。加入程序性细胞死亡-1抑制剂可显著恢复aiNK的细胞溶解活性。程序性细胞死亡-1抑制剂与糖原合成酶激酶3抑制剂联合显示出进一步改善。再加入腹水因子抑制剂可使aiNK达到最佳活化。
我们的数据表明,NK细胞模拟模型不仅可用于确定新的免疫治疗靶点以恢复NK细胞抗肿瘤活性,还可预测针对具有特定基因表达和突变谱的肿瘤的治疗结局。
Advanced high-grade serous ovarian cancer continues to be a therapeutic challenge for those affected using the current therapeutic interventions. There is an increasing interest in personalized cancer immunotherapy using activated natural killer (NK) cells. NK cells account for approximately 15% of circulating white blood cells. They are also an important element of the tumor microenvironment (TME) and the body's immune response to cancers. In the present study, DeepNEU-C2Rx, a machine learning platform, was first used to create validated artificially induced pluripotent stem cell simulations. These simulations were then used to generate wild-type artificially induced NK cells (aiNK-WT) and TME simulations.
Once validated, the aiNK-WT simulations were exposed to artificially induced high-grade serous ovarian cancer represented by aiOVCAR3. Cytolytic activity of aiNK was evaluated in presence and absence of aiOVCAR3 and data were compared with the literature for validation.
The TME simulations suggested 26 factors that could be evaluated based on their ability to enhance aiNK-WT cytolytic activity in the presence of aiOVCAR3. The addition of programmed cell death-1 inhibitor leads to significant reinvigoration of aiNK cytolytic activity. The combination of programmed cell death-1 and glycogen synthase kinase 3 inhibitors showed further improvement.
Further addition of ascitic fluid factor inhibitors leads to optimal aiNK activation.
Our data showed that NK cell simulations could be used not only to pinpoint novel immunotherapeutic targets to reinvigorate the activity of NK cells against cancers, but also to predict the outcome of targeting tumors with specific genetic expression and mutation profiles.
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