γδ T 细胞调节小细胞肺癌中的抗肿瘤免疫
γδ T cells modulate anti-tumor immunity in small cell lung cancer.
我们的发现表明,活化的γδ T细胞可能是SCLC治疗的有价值靶点。
英文原题:TIL therapy in relapsed/refractory neuroblastoma: A translational roadmap from immunobiology to early-phase trials.
TIL therapy in relapsed/refractory neuroblastoma: A translational roadmap from immunobiology to early-phase trials.
复发或难治性神经母细胞瘤(R/R NB)是最具挑战性的儿科癌症之一,长期生存率低于 20%。
复发或难治性神经母细胞瘤(R/R NB)是最具挑战性的儿童癌症之一,长期生存率低于 20%。标准化疗和单靶点免疫细胞治疗均存在显著局限性。化疗在大多数情况下无法清除微小残留病,而工程化细胞治疗在肿瘤因瘤内异质性丢失靶抗原时会失去疗效。因此,TIL(肿瘤浸润淋巴细胞)治疗提供了一种替代方法。TIL 是多克隆的,且既往已与肿瘤接触,因此能够识别广泛的患者特异性抗原,并且不太可能因单一抗原丢失而失效。尽管如此,早期评估 TIL 治疗 R/R NB 的努力仍遇到了重大挑战。主要障碍包括 TIL 制备失败、免疫抑制性肿瘤微环境(TME),以及由 MYCN 驱动的 MHC I 类缺失和干扰素信号受损导致的抗原呈递缺陷。这些挑战需要新的方法,例如抗原富集或非 MHC 依赖性工程化。本综述总结了过去三十年的临床前研究结果,将研究分为三个主要时期,这些时期具有不同的 NB 中 TIL 治疗疗效决定因素。还总结了关键临床研究,以为儿科 NB 患者中 TIL 治疗的开发、安全性和可行性提供信息。最后,提出了一条转化路线图,整合 γδ TIL 富集、细胞工程化、TME 改造和生物标志物驱动的患者选择,以指导 R/R NB 的早期临床试验。
Relapsed or refractory neuroblastoma (R/R NB) is one of the most challenging pediatric cancers, with long-term survival rates below 20%. Both standard chemotherapy and single-target immune cell therapies are associated with significant limitations. Chemotherapy is unable to clear minimal residual disease in the majority of cases, and engineered cell therapies lose efficacy when tumors drop the target antigen because of intratumoral heterogeneity. Thus, tumor-infiltrating lymphocyte (TIL) therapy offers an alternative approach. TILs are polyclonal and have previously engaged with the tumor, so they can recognize a broad spectrum of patient-specific antigens and are less likely to be compromised by the loss of a single antigen. Nevertheless, early efforts to evaluate TIL therapy in R/R NB have encountered important challenges. The primary obstacles include unsuccessful TIL manufacturing, immunosuppressive tumor microenvironment (TME), and defective antigen presentation due to MYCN-driven loss of MHC class I and impaired interferon signaling. These challenges necessitate novel approaches, such as antigen enrichment or MHC-independent engineering. This review summarizes the results of preclinical research over three decades, categorizing studies into three major periods with distinctive determinants of TIL therapy efficacy in NB. Key clinical studies are also summarized to inform the development, safety, and feasibility of TIL therapy in pediatric NB patients. Finally, a translational roadmap is proposed that integrates γδ TIL enrichment, cell engineering, TME modification, and biomarker-driven patient selection to guide early-phase clinical trials in R/R NB.
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