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:CAR T-cell therapy in pediatric brain tumors: a narrative review with comparative analysis of clinical trial eligibility criteria.
符合纳入标准的研究共18项,包括临床前模型、早期临床试验和转化研究。
儿童脑肿瘤是儿童癌症相关死亡的主要原因,当前的标准治疗如手术、放疗和化疗提供的生存获益有限,且长期发病率显著。嵌合抗原受体(CAR)T细胞疗法是血液系统恶性肿瘤的变革性治疗手段,目前正在探索用于儿童脑肿瘤。本综述总结了儿童神经肿瘤学中CAR T细胞疗法的最新进展、临床前和临床发现、挑战及未来方向。共筛选出18项符合纳入标准的研究,包括临床前模型、早期临床试验和转化研究。对Clinicaltrials.gov、ISRCTN和ANZCTR中中枢神经系统(CNS)肿瘤试验的注册检索确定了12项正在进行的或已完成的CAR T细胞疗法治疗CNS肿瘤患者的干预性试验,并比较了其纳入标准和参数。临床前研究一致表明,靶向B7-H3、GD2、HER2、IL13R 2和EphA2等抗原的CAR T细胞可在髓母细胞瘤、弥漫性内生性桥脑胶质瘤(DIPG)、室管膜瘤和高级别胶质瘤模型中诱导强效且特异性的肿瘤消退。另一方面,B7-H3因其在多种CNS肿瘤(包括髓母细胞瘤、室管膜瘤和胶质瘤)中高表达而成为泛儿童靶点,而GD2与H3K27M突变型弥漫性中线胶质瘤高度相关。早期临床试验证实,CAR T细胞可迁移至CNS肿瘤、浸润肿瘤组织并介导肿瘤消退。ICV B7-H3在DIPG中的1期试验取得了值得关注的结果,21例患者的中位生存期为19.8个月,3例患者生存超过40个月。GD2-CAR T细胞疗法在H3K27M突变型胶质瘤中显示出部分临床缓解,同时观察到神经毒性和脑病,而HER2靶向的局部区域治疗未显示剂量限制性毒性。未来的干预措施如多抗原靶向、组合CAR设计和增强细胞因子信号传导正在开发中,以提高疗效和安全性。对12项注册的儿童CAR T细胞试验的比较显示,入组标准存在异质性,包括年龄范围、体能状态阈值、H3K27M突变要求和地理集中偏倚。CAR T细胞疗法在改善儿童脑肿瘤预后方面具有重大前景,但其临床转化面临肿瘤异质性、抗原逃逸、神经毒性和免疫抑制性肿瘤微环境的挑战。
Pediatric brain tumors are the leading cause of cancer-related mortality in children, and current standard therapies like surgery, radiotherapy, and chemotherapy offer limited survival benefits and significant long-term morbidity. Chimeric antigen receptor (CAR) T-cell therapy is a transformative treatment for hematologic malignancies and is now being explored for pediatric brain tumors. This review summarizes the latest advances, preclinical and clinical findings, challenges of CAR T-cell therapy, and future directions in pediatric neuro-oncology. 18 studies that met the eligibility criteria were selected, consisting of preclinical models, early-phase clinical trials, and translational studies. A registry search of central nervous system (CNS) tumor trials from Clinicaltrials.gov, ISRCTN, and ANZCTR identified 12 active or completed interventional trials of CAR T-cell therapy in patients with CNS tumors, their eligibility criteria and parameters were compared. Preclinical studies consistently demonstrate that CAR T-cells targeting antigens such as B7-H3, GD2, HER2, IL13R 2, and EphA2 can induce robust and specific tumor regression in models of medulloblastoma, diffuse intrinsic pontine glioma (DIPG), ependymoma, and high-grade gliomas. On the other hand, B7-H3 is a pan-pediatric target due to its high expression in multiple CNS tumors, including medulloblastoma, ependymoma, and glioma, whereas GD2 is highly relevant for H3K27M-mutant diffuse midline gliomas. Early-phase clinical trials confirm that CAR T-cells can traffic to CNS tumors, infiltrate tumor tissue, and mediate tumor regression. The ICV B7-H3 phase 1 trial in DIPG achieved noteworthy results, with a median survival of 19.8 months across 21 patients and 3 patients surviving more than 40 months. GD2-CAR T-cell therapy in H3K27 M-mutant gliomas showed partial clinical responses, with neurotoxicity and encephalopathy observed, whereas the HER2-targeted locoregional therapy showed no dose-limiting toxicities. Future interventions such as multi-antigen targeting, combinatorial CAR designs, and enhanced cytokine signaling are being developed to improve efficacy and safety. A comparison of 12 registered pediatric CAR T-cell trials showed heterogeneity in eligibility criteria, including age ranges, performance status thresholds, H3K27M mutation requirements, and geographic concentration bias. CAR T-cell therapy holds significant promise for improving outcomes in pediatric brain tumors, but its clinical translation is challenged by tumor heterogeneity, antigen escape, neurotoxicity, and the immunosuppressive tumor microenvironment.
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