帕博利珠单抗联合二甲双胍治疗转移性头颈部癌的 II 期可行性研究
A Phase II Feasibility Study Combining Pembrolizumab and Metformin in Patients with Metastatic Head and Neck Cancer.
二甲双胍联合帕博利珠单抗耐受性良好,仅出现轻度胃肠道不良事件,并展现出有前景的活性,值得在随机试验中进一步研究。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Inhibition of DDR1 potentiates carbon ion radiotherapy by promoting ferroptosis and immunogenic death in head and neck squamous cell carcinoma.
Inhibition of DDR1 potentiates carbon ion radiotherapy by promoting ferroptosis and immunogenic death in head and neck squamous cell carcinoma.
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我们的发现将 DDR1 靶向定位为一种通过诱导免疫原性铁死亡来增强 CIR 的治疗策略,适用于 HNSCC。
碳离子放疗(CIR)因其独特的物理深度剂量分布和增强的放射生物学效应,已成为治疗抗拒光子的恶性肿瘤的一种有前景的治疗方式。然而,在某些复发性或难治性头颈部鳞状细胞癌(HNSCC)病例中,治疗抵抗仍然存在,这凸显了对新型联合策略的需求。在此,我们证明了靶向盘状结构域受体1(DDR1)对HNSCC的CIR具有增敏效应。
MOC1和Cal27细胞系以及荷瘤C57BL/6小鼠用于体外和体内研究。通过慢病毒敲低DDR1。通过CCK-8和集落形成实验评估细胞活力和增殖。通过流式细胞术和免疫荧光检测免疫原性和TIL(肿瘤浸润淋巴细胞)。使用RNA测序和生物信息学探究肿瘤抑制机制。使用MDA、BODIPY 581/591 C11、FerroOrange和DCFH-DA探针检测铁死亡标志物(脂质过氧化、铁、ROS)。通过Western blot、共免疫沉淀、关键分子调节剂给药和SCD1过表达分析上游铁死亡机制。
我们证明,靶向DDR1可通过触发铁死亡介导的免疫原性细胞死亡来增强CIR,进而增强抗肿瘤免疫。在机制上,DDR1通过形成14-3-3介导的DDR1/14-3-3/Akt三元复合物组装来维持肿瘤细胞存活,从而激活Akt/mTORC1/SREBP1/SCD1轴,促进单不饱和脂肪酸(MUFA)生物合成并抑制铁死亡。沉默DDR1会破坏该复合物,减轻MUFA介导的铁死亡抑制,随后增加肿瘤免疫原性。这种免疫原性转变促进了CD8 + T细胞浸润和细胞毒性,放大了CIR诱导的肿瘤抑制。此外,使用小分子抑制剂7rh对DDR1进行药理学抑制可重现这些效应,表现出强效的抗增殖和诱导铁死亡能力,增强CIR敏感性以更好地控制肿瘤进展。
Carbon ion radiotherapy (CIR) has emerged as a promising therapeutic modality for photon-resistant malignancies due to its unique physical depth-dose distribution and enhanced radiobiological effectiveness. Nevertheless, treatment resistance persists in certain recurrent or refractory head and neck squamous cell carcinoma (HNSCC) cases, underscoring the need for novel combinatorial strategies. Here, we demonstrated the sensitizing effect of targeting discoidin domain receptor 1 (DDR1) in HNSCC for CIR.
MOC1 and and Cal27 cell lines along with tumor-bearing C57BL/6 mice were used for in vitro and in vivo studies. DDR1 was knocked down via lentivirus. Cell viability and proliferation were assessed by CCK-8 and colony formation assays. Immunogenicity and tumor-infiltrating lymphocytes were measured via flow cytometry and immunofluorescence. Tumor suppression mechanisms were investigated using RNA sequencing and bioinformatics. Ferroptosis markers (lipid peroxidation, iron, ROS) were detected using MDA, BODIPY 581/591 C11, FerroOrange, and DCFH-DA probes. Upstream ferroptosis mechanisms were analyzed by Western blot, co-immunoprecipitation, key molecule modulator administration, and SCD1 overexpression.
We demonstrated that targeting DDR1 potentiated CIR by triggering ferroptosis-mediated immunogenic cell death, which in turn enhanced antitumor immunity. Mechanistically, DDR1 sustained tumor cell survival by forming 14-3-3-mediated assembly of a DDR1/14-3-3/Akt ternary complex, thereby activating the Akt/mTORC1/SREBP1/SCD1 axis to promote monounsaturated fatty acid (MUFA) biosynthesis and suppress ferroptosis. Silencing DDR1 disrupted this complex, alleviating MUFA-mediated ferroptosis inhibition and subsequently increasing tumor immunogenicity. This immunogenic shift facilitated CD8 + T cell infiltration and cytotoxicity, amplifying CIR-induced tumor suppression. Furthermore, pharmacological inhibition of DDR1 using the small-molecule inhibitor 7rh recapitulated these effects, demonstrating potent anti-proliferative and ferroptosis-inducing capabilities, enhancing CIR sensitivity to better control tumor progression.
Our findings positioned DDR1 targeting as a therapeutic strategy to potentiate CIR through immunogenic ferroptosis induction in HNSCC.
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