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:Chimeric Antigen Receptor-T Cell Therapy for Pediatric and Young Adult Primary Central Nervous System Tumors: A Systematic Review of Early Phase Clinical Trials with a Focus on Diffuse Midline Glioma.
初步临床经验表明,针对儿童和年轻成人 CNS 肿瘤的 CAR-T 细胞疗法具有生物学活性且临床可行,其毒性特征独特但可控。
背景:CAR-T 细胞疗法治疗血液系统恶性肿瘤疗效显著,但其用于儿童及青年原发性中枢神经系统(CNS)肿瘤,尤其儿童弥漫性中线胶质瘤(DMG),仍处于研究阶段。近期多项早期试验报告了CNS靶向CAR-T疗法的临床经验,因此有必要系统梳理以了解该领域现状。 目的:系统综述评估CAR-T细胞疗法治疗儿童及青年原发性CNS肿瘤的安全性、可行性和初步疗效的早期临床证据。 患者与方法:系统综述评估儿童及青年原发性脑肿瘤患者接受CAR-T疗法的早期临床研究。收集数据包括靶抗原、给药途径、剂量策略、患者特征、既往治疗、毒性谱、抗炎管理、影像学和临床结局、生物学相关指标及生存。 结果:检索到8项早期试验,共纳入74例儿童及青年患者,其中63例接受CAR-T细胞输注,靶点包括B7-H3、GD2、HER2、EGFR806和PSMA-GD2,给药途径为脑室内、静脉或联合途径。所有患者均接受过多线治疗,疾病复发或难治;所有DMG队列此前均接受放疗。CAR-T治疗可行,未发生治疗相关死亡。细胞因子释放综合征及CNS神经毒性等免疫毒性较常见,但通过糖皮质激素和细胞因子治疗可逆转。在可评估应答患者中,65%实现疾病控制(疾病稳定或部分缓解),35%出现疾病进展。客观应答罕见,但许多患者病情稳定,DMG队列尤其如此。输注后可见免疫活化,包括CAR-T细胞向CNS迁移以及脑脊液和血浆细胞因子升高。中位生存期为13至30个月以上,部分患者生存超过预期。 结论:初步临床经验表明,CAR-T细胞治疗儿童及青年CNS肿瘤具有生物学活性且临床可行,毒性谱不同于其他疗法但可管理。尽管持久客观缓解仍有限,疾病稳定较常见且部分患者生存延长,支持继续研究并优化CAR-T治疗CNS恶性肿瘤的策略。
BACKGROUND: Chimeric antigen receptor (CAR)-T cell therapy has demonstrated substantial efficacy in hematologic malignancies; however, its application in pediatric and young adult primary central nervous system (CNS) tumors, particularly pediatric diffuse midline glioma (DMG), remains investigational. Several early phase trials have recently reported clinical experiences with CNS-directed CAR-T cell therapies, necessitating a systematic distillation to better understand the state of the field. OBJECTIVE: The aim of the study was to systematically review early phase clinical evidence evaluating the safety, feasibility, and preliminary efficacy of CAR-T cell therapy in pediatric and young adult patients with primary CNS tumors. PATIENTS AND METHODS: A systematic review was conducted on early phase clinical studies assessing CAR-T cell therapies in pediatric and young adult patients diagnosed with primary brain tumors. Data collected included information on antigen targets, route of administration, dosing strategies, patient characteristics, prior therapies, toxicity profiles, anti-inflammatory management, radiographic and clinical outcomes, biologic correlates, and survival. RESULTS: The search identified eight early phase trials involving 74 pediatric and young adult patients. Of the cohort, 63 received CAR-T cell infusion, targeting B7-H3, GD2, HER2, EGFR806, and PSMA-GD2 via intraventricular, intravenous, or combined routes. All patients had heavily pretreated, recurrent, or refractory disease, with all DMG cohorts receiving prior radiation. CAR-T cell therapy was feasible, with no treatment-related mortality. Immune toxicities, including cytokine release syndrome and CNS neurotoxicity, were common but reversible with corticosteroids and cytokine therapies. Among response-evaluable patients, 65% achieved disease control (stable disease or partial response), while 35% had progressive disease. Objective responses were rare, but many had disease stabilization, especially in DMG cohorts. Post-infusion, immune activation was evident, with CAR-T cell trafficking to CNS and increased cytokines in cerebrospinal fluid and plasma. Median survival ranged from 13 to over 30 months, with some patients exceeding expectations. CONCLUSIONS: Preliminary clinical experience indicates that CAR-T cell therapy for pediatric and young adult CNS tumors is biologically active and clinically feasible, exhibiting a distinct yet manageable toxicity profile. Although durable objective responses are currently limited, the frequent occurrence of disease stabilization and extended survival in certain patients substantiate ongoing research and the refinement of CAR-T cell strategies for CNS malignancies.
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