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:Iron Chelation Therapy Elicits Innate Immune Control of Metastatic Ovarian Cancer.
Iron Chelation Therapy Elicits Innate Immune Control of Metastatic Ovarian Cancer.
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肿瘤中的铁积累促进疾病进展和化疗耐药。尽管靶向这一过程可影响癌症的多种标志性特征,但铁螯合在肿瘤微环境中的免疫调节作用尚不清楚。在此,我们报道,使用去铁酮——一种FDA批准的铁螯合剂——治疗可释放限制卵巢癌的固有免疫应答。去铁酮将卵巢癌细胞重编程为以产生I型IFN和过表达激活NK细胞的分子为特征的免疫刺激状态。在机制上,这些效应由胞质中线粒体DNA的固有感知以及铁螯合触发的核DNA损伤应答的同步激活所驱动。去铁酮与化疗协同作用,通过增强I型IFN应答驱动NK细胞依赖性的转移性疾病控制,延长了卵巢癌小鼠的生存期。因此,铁螯合可能代表一种针对当前以T细胞为中心的模式难以治疗的恶性肿瘤的替代免疫治疗策略。意义:本研究揭示,靶向卵巢肿瘤中失调的铁积累代表一个重大治疗机会。使用FDA批准药物的铁螯合治疗在卵巢癌细胞中引起免疫原性应激反应,延缓转移性疾病进展并增强一线化疗的效果。参见Bell和Zou的相关评论,第1771页。
Iron accumulation in tumors contributes to disease progression and chemoresistance. Although targeting this process can influence various hallmarks of cancer, the immunomodulatory effects of iron chelation in the tumor microenvironment are unknown.
Here, we report that treatment with deferiprone, an FDA-approved iron chelator, unleashes innate immune responses that restrain ovarian cancer. Deferiprone reprogrammed ovarian cancer cells toward an immunostimulatory state characterized by the production of type-I IFN and overexpression of molecules that activate NK cells.
Mechanistically, these effects were driven by innate sensing of mitochondrial DNA in the cytosol and concomitant activation of nuclear DNA damage responses triggered upon iron chelation. Deferiprone synergized with chemotherapy and prolonged the survival of mice with ovarian cancer by bolstering type-I IFN responses that drove NK cell-dependent control of metastatic disease. Hence, iron chelation may represent an alternative immunotherapeutic strategy for malignancies that are refractory to current T-cell-centric modalities.
Significance: This study uncovers that targeting dysregulated iron accumulation in ovarian tumors represents a major therapeutic opportunity. Iron chelation therapy using an FDA-approved agent causes immunogenic stress responses in ovarian cancer cells that delay metastatic disease progression and enhance the effects of first-line chemotherapy. See related commentary by Bell and Zou, p. 1771.
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