决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:Gene-based immunotherapy in osteosarcoma: from oncolytic vectors to engineered immune cells.
Gene-based immunotherapy in osteosarcoma: from oncolytic vectors to engineered immune cells.
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然而,免疫检查点阻断在未经选择的骨肉瘤患者中疗效有限:在 SARC028 研究中,22 例接受 pembrolizumab 治疗的骨肉瘤患者中仅观察到 1 例客观缓解。
骨肉瘤一旦发生转移、复发或对化疗产生耐药,便难以治愈。手术联合多药化疗可改善局限性疾病的结局,但高危患者的结局已趋于平台期,这促使人们重新关注免疫治疗。然而,免疫检查点阻断在未经选择的骨肉瘤患者中疗效有限:在 SARC028 中,22 例接受 pembrolizumab 治疗的骨肉瘤患者中仅观察到 1 例客观缓解。这种有限的缓解与抗原异质性、免疫抑制性髓系细胞群富集、细胞毒性淋巴细胞浸润不足、基质相关免疫排斥以及转移性免疫适应相一致。基于基因的免疫治疗提供了一种互补策略。当内源性免疫启动不足时,这些平台可通过促进溶瘤抗原释放、局部细胞因子或趋化因子表达、工程化免疫细胞识别或非病毒递送免疫调节载荷来启动、重塑或放大抗肿瘤免疫。本文讨论了溶瘤载体、细胞因子武装载体、CAR-T 和 CAR-NK 细胞、TCR 或新抗原导向策略以及非病毒基因递送系统作为重塑骨肉瘤免疫的潜在方法。本文还探讨了儿童和青少年患者的联合策略及转化挑战。除总结平台层面的证据外,我们区分了直接在骨肉瘤中产生的研究结果与从其他肿瘤类型外推的证据,明确了每个平台尚未解决的主要知识空白,并总结了当前骨肉瘤特异性临床试验格局,以阐明这些策略的转化成熟度。
Osteosarcoma remains difficult to cure once it metastasizes, recurs, or becomes resistant to chemotherapy. Surgery combined with multi-drug chemotherapy improves outcomes in localized disease, but outcomes for high-risk patients have plateaued, prompting renewed interest in immunotherapy. However, immune checkpoint blockade has limited efficacy in unselected osteosarcoma patients: in SARC028, one objective response was observed among 22 patients with osteosarcoma treated with pembrolizumab. This limited response is consistent with antigen heterogeneity, enrichment of immunosuppressive myeloid populations, insufficient cytotoxic lymphocyte infiltration, matrix-associated immune exclusion, and metastatic immune adaptation. Gene-based immunotherapy offers a complementary strategy. When endogenous immune priming is inadequate, these platforms may initiate, reshape, or amplify antitumor immunity by promoting oncolytic antigen release, local cytokine or chemokine expression, engineered immune-cell recognition, or non-viral delivery of immunomodulatory payloads. This article discusses oncolytic vectors, cytokine-armed vectors, CAR-T and CAR-NK cells, TCR- or neoantigen-directed strategies, and non-viral gene delivery systems as potential approaches for reshaping osteosarcoma immunity. It also examines combination strategies and translational challenges in pediatric and adolescent patients. Beyond summarizing platform-level evidence, we distinguish findings generated directly in osteosarcoma from evidence extrapolated from other tumor types, identify the principal unresolved knowledge gaps for each platform, and summarize the current osteosarcoma-specific clinical trial landscape to clarify the translational maturity of these strategies.
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