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:Overcoming multidimensional immunotherapy resistance in PDAC: from microenvironment to clinic.
Overcoming multidimensional immunotherapy resistance in PDAC: from microenvironment to clinic.
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胰腺导管腺癌(PDAC)仍然是最致命的癌症之一,由于其高度免疫抑制的肿瘤微环境(TME),免疫治疗产生的客观缓解率(ORR)低于10%。本综述整合了2018-2026年的临床前和临床证据,剖析基质促结缔组织增生、髓系细胞优势、T细胞排斥和抗原呈递受损如何汇聚形成免疫豁免生态位。讨论了关键耐药通路,包括cGAS-STING、Hedgehog和NF-κB,以及新兴策略如CAR-T 细胞、mRNA新抗原疫苗、STING激动剂、CD39/CD73阻断和基于cDC1的疫苗。尽管取得了渐进式进展,持久缓解仍然罕见,强调单靶点干预不足以解决问题。
我们提出“3D+R”框架,即去促结缔组织增生(De-desmoplasia)、去腺苷(De-adenosine)、新抗原(De-novo antigen)和合理序贯(Rational sequencing),以指导多维、生物标志物驱动的免疫治疗设计。定时cDC1疫苗接种、患者定制STING激动和代谢检查点抑制等方法, exemplify了PDAC的免疫荒漠表型如何可能被重塑为免疫反应状态。将PDAC概念化为动态免疫生态系统而非突变驱动实体,可能最终将散发性缓解转化为持久且可预测的临床获益。
Pancreatic ductal adenocarcinoma (PDAC) remains one of the deadliest cancers, with immunotherapy yielding <10% objective response rates (ORR) due to its profoundly immunosuppressive tumor microenvironment (TME). This review integrates preclinical and clinical evidence (2018-2026) to dissect how stromal desmoplasia, myeloid dominance, T-cell exclusion, and impaired antigen presentation converge to form an immune-privileged niche.
Key resistance pathways, including cGAS-STING, Hedgehog, and NF- B, are discussed alongside emerging strategies such as CAR-T cells, mRNA neoantigen vaccines, STING agonists, CD39/CD73 blockade, and cDC1-based vaccines. Despite incremental progress, durable responses remain rare, emphasizing that single-target interventions are insufficient.
We propose a "3D+R" framework, De-desmoplasia, De-adenosine, De-novo antigen, and Rational sequencing, to guide multidimensional, biomarker-driven immunotherapy design. Approaches such as timed cDC1 vaccination, patient-tuned STING agonism, and metabolic checkpoint inhibition exemplify how PDAC's immune-desert phenotype may be reshaped toward an immune-reactive state. Conceptualizing PDAC as a dynamic immune ecosystem rather than a mutation-driven entity may ultimately transform sporadic responses into durable and predictable clinical benefit.
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