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:Electrolyte imbalance causes suppression of NK and T cell effector function in malignant ascites.
Electrolyte imbalance causes suppression of NK and T cell effector function in malignant ascites.
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我们的数据提示,腹膜癌患者恶性腹水中存在一种基于电解质的新型免疫抑制机制。我们首次表明,共培养实验中 NK 细胞毒性的免疫抑制与患者较差的生存相关。钠通道抑制剂的治疗应用可能为恢复腹水或类似电解质失衡环境中的免疫细胞活性提供新手段。
恶性腹水通常发生在上皮性卵巢癌晚期或复发阶段的腹膜癌病过程中,并与不良预后相关。由于恶性腹水由细胞和非细胞成分复杂构成,形成了独特的肿瘤微环境,介导免疫抑制并促进疾病进展。然而,其免疫抑制机制仍知之甚少。
在本研究中,我们探讨了在晚期或复发性腹膜癌患者来源的恶性腹水存在下,健康供者NK细胞和T细胞对卵巢癌细胞的抗肿瘤活性。我们采用了多种方法研究腹水对NK细胞和T细胞的影响(FACS、ELISA、EliSpot、qPCR、活细胞和共聚焦显微镜、Western blot和电解质流检测)。通过定量分析(比浊法、电位法和临床化学)和分离方法(透析、超速离心过滤和脂质去除)对腹水成分进行了评估。
腹水迅速抑制NK细胞脱颗粒、肿瘤裂解、细胞因子分泌和钙信号传导。同样,在腹水环境中,非靶标依赖性的NK和T细胞活化也受到损害。我们确定腹水中电解质失衡是导致NK和T细胞广泛免疫抑制的关键因素。具体而言,高钠、低氯和低钾含量显著抑制了NK介导的细胞毒性。电解质失衡导致电解质通道的转录和蛋白表达发生变化,并损害了NK和T细胞活化。选择性钠电解质通道抑制剂恢复了细胞内钙流、连接、脱颗粒和信号分子的转录表达。腹水介导的免疫抑制水平和钠/氯/钾失衡与患者不良预后相关,并且所选分子改变在卵巢癌患者的免疫细胞中得到证实。
Malignant ascites commonly occurs in advanced or recurrent stages of epithelial ovarian cancer during peritoneal carcinomatosis and is correlated with poor prognosis. Due to its complex composition of cellular and acellular components malignant ascites creates a unique tumor microenvironment, which mediates immunosuppression and promotes progression of disease. However, the immunosuppressive mechanisms remain poorly understood.
In the present study, we explored the antitumor activity of healthy donor NK and T cells directed against ovarian cancer cells in presence of malignant ascites derived from patients with advanced or recurrent peritoneal carcinomatosis. A wide range of methods was used to study the effect of ascites on NK and T cells (FACS, ELISA, EliSpot, qPCR, Live-cell and confocal microscopy, Western blot and electrolyte flux assays). The ascites components were assessed using quantitative analysis (nephelometry, potentiometry and clinical chemistry) and separation methods (dialysis, ultracentrifugal filtration and lipid depletion).
Ascites rapidly inhibited NK cell degranulation, tumor lysis, cytokine secretion and calcium signaling. Similarly, target independent NK and T cell activation was impaired in ascites environment. We identified imbalanced electrolytes in ascites as crucial factors causing extensive immunosuppression of NK and T cells. Specifically, high sodium, low chloride and low potassium content significantly suppressed NK-mediated cytotoxicity. Electrolyte imbalance led to changes in transcription and protein expression of electrolyte channels and impaired NK and T cell activation. Selected inhibitors of sodium electrolyte channels restored intracellular calcium flux, conjugation, degranulation and transcript expression of signaling molecules. The levels of ascites-mediated immunosuppression and sodium/chloride/potassium imbalance correlated with poor patient outcome and selected molecular alterations were confirmed in immune cells from ovarian cancer patients.
Our data suggest a novel electrolyte-based mechanism of immunosuppression in malignant ascites of patients with peritoneal carcinomatosis. We show for the first time that the immunosuppression of NK cytotoxicity in coculture assays is correlated to patient poor survival. Therapeutic application of sodium channel inhibitors may provide new means for restoring immune cell activity in ascites or similar electrolyte imbalanced environments.
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