CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Blocking NRF2 Translation by Inhibition of Cap-Dependent Initiation Sensitizes Lymphoma Cells to Ferroptosis and CAR T-cell Immunotherapy.
Blocking NRF2 Translation by Inhibition of Cap-Dependent Initiation Sensitizes Lymphoma Cells to Ferroptosis and CAR T-cell Immunotherapy.
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癌症利用应激反应通路来驱动肿瘤发生、逃避免疫监视并抵抗细胞毒性治疗。其中若干通路还可提供对铁死亡的防护,铁死亡是一种铁依赖性氧化性细胞死亡通路,可由临床可用药物触发,包括化疗药物、风湿病药物以及正在临床试验中评估的新型铁死亡诱导剂。在本研究中,我们发现破坏弥漫性大B细胞淋巴瘤(DLBCL)中帽依赖性翻译起始可使细胞对铁死亡敏感。具体而言,eIF4A1抑制剂zotatifin与药理学铁死亡诱导剂协同作用,主要通过抑制谷胱甘肽生成,谷胱甘肽可保护多不饱和脂肪酸免受铁死亡性氧化。核因子红细胞2相关因子2(NRF2)翻译的丧失——NRF2是抗氧化基因的主调控因子——是rocaglate类化合物(包括zotatifin)及其他帽依赖性起始破坏剂的关键后果。尽管单独NRF2丧失不足以触发铁死亡,但它降低了抗氧化阈值,使细胞在额外氧化应激下对脂质过氧化和铁死亡性死亡敏感。在体内,将zotatifin与优化铁死亡诱导剂imidazole ketone erastin联合使用,显著降低了DLBCL患者来源异种移植瘤的肿瘤负荷。将zotatifin与嵌合抗原受体(CAR)T细胞联合治疗——CAR-T 细胞是DLBCL患者的重要治疗方式——显示zotatifin预暴露在体外使DLBCL肿瘤对CD19靶向CAR-T 细胞敏感,并在体内延长了接受CAR-T 细胞治疗、荷有同基因DLBCL肿瘤的免疫 competent小鼠的生存期。总体而言,eIF4A1抑制诱导的翻译破坏为利用铁死亡诱导剂(包括细胞毒性免疫疗法)的治疗效果提供了机会。意义:翻译破坏导致NRF2缺失,使淋巴瘤对铁死亡敏感,并增强CAR-T 细胞和药物疗效,突显了靶向eIF4A1作为治疗癌症的有前景的治疗策略。
UNLABELLED: Cancers co-opt stress response pathways to drive oncogenesis, dodge immune surveillance, and resist cytotoxic therapies. Several of these pathways also provide protection from ferroptosis, an iron-dependent oxidative cell death pathway triggered by clinically available drugs, including chemotherapies, rheumatologic agents, and novel ferroptosis inducers under evaluation in clinical trials. In this study, we found that disrupting cap-dependent translation initiation in diffuse large B-cell lymphoma (DLBCL) sensitizes cells to ferroptosis. Specifically, the eIF4A1 inhibitor zotatifin synergized with pharmacologic ferroptosis inducers primarily through suppression of glutathione production, which protects polyunsaturated fatty acids from ferroptotic oxidation.
Loss of nuclear factor erythroid 2-related factor 2 (NRF2) translation, a master regulator of antioxidant genes, was a key consequence of rocaglates, including zotatifin, and other disruptors of cap-dependent initiation. Although NRF2 loss alone was insufficient to trigger ferroptosis, it lowered the antioxidant threshold, sensitizing cells to lipid peroxidation and ferroptotic death under additional oxidative stress.
In vivo, combining zotatifin with the optimized ferroptosis inducer imidazole ketone erastin significantly reduced tumor burden in DLBCL patient-derived xenografts. Treatment with zotatifin in combination with chimeric antigen receptor (CAR) T cells, a vital treatment modality for patients with DLBCL, revealed that zotatifin preexposure sensitized DLBCL tumors to CD19-directed CAR T cells in vitro and extended survival of CAR T-cell-treated immunocompetent mice bearing syngeneic DLBCL tumors in vivo.
Overall, eIF4A1 inhibition-induced translational disruption provides opportunities to leverage the therapeutic impacts of ferroptosis inducers, including cytotoxic immunotherapies. SIGNIFICANCE: Translational disruption causes NRF2 loss that sensitizes lymphomas to ferroptosis and enhances CAR T-cell and drug efficacy, highlighting eIF4A1 targeting as a promising therapeutic strategy for treating cancer.
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