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:Intratumoral pan-ErbB targeted CAR-T for head and neck squamous cell carcinoma: interim analysis of the T4 immunotherapy study.
这些数据表明,在晚期HNSCC中瘤内注射T4免疫疗法是安全的。
局部晚期/复发性头颈部鳞状细胞癌(HNSCC)与显著的发病率和死亡率相关。为了靶向该癌症中上调的ErbB二聚体表达,我们开发了一种基于CD28的自体CAR-T 细胞方法,命名为T4免疫治疗。患者来源的T细胞通过逆转录病毒转导进行工程化改造,以共表达一种称为T1E28的panErbB特异性CAR和一种IL-4响应性嵌合细胞因子受体4,后者允许在制造过程中通过IL-4介导对转导细胞的富集。这些细胞在临床前对HNSCC和其他癌表现出抗肿瘤活性。在本试验中,我们采用瘤内递送以减轻由于健康组织中低水平ErbB表达而导致的靶向非肿瘤毒性的显著临床风险。
我们在HNSCC中开展了一项瘤内T4免疫治疗的1期剂量递增3+3试验(NCT01818323)。CAR T细胞批次使用2周半封闭工艺从40至130 mL全血中制备。单次CAR T细胞治疗,以新鲜产品形式配制于1-4 mL培养基中,注射到一个或多个靶病灶。CAR T细胞剂量在5个队列中从1 10 7 -1 10 9 T4 + T细胞递增,未进行预先淋巴细胞清除。
尽管大多数入组受试者存在基线淋巴细胞减少,但所有病例均成功制造出目标细胞剂量,最高可达75亿个T细胞(67.5±11.8%转导),且无任何批次失败。治疗相关不良事件均为2级或以下,未出现剂量限制性毒性(不良事件通用术语标准V.4.0)。常见的治疗相关不良事件为肿瘤肿胀、疼痛、发热、寒战和乏力。未发现瘤内给药后T4+ T细胞渗漏至循环中,注射放射性标记细胞显示瘤内持续存在。尽管入组时疾病快速进展,但在CAR T细胞给药后6周,15名受试者中有9名(60%)观察到疾病稳定(实体瘤疗效评价标准V.1.1)。随后一名受试者接受pembrolizumab和T-VEC溶瘤病毒治疗,获得了快速的临床完全缓解,并持续超过3年。中位总生存期优于历史对照。疾病稳定与输注免疫表型更健康、耗竭更少的T4 CAR T细胞产品相关。
BACKGROUND: Locally advanced/recurrent head and neck squamous cell carcinoma (HNSCC) is associated with significant morbidity and mortality. To target upregulated ErbB dimer expression in this cancer, we developed an autologous CD28-based chimeric antigen receptor T-cell (CAR-T) approach named T4 immunotherapy. Patient-derived T-cells are engineered by retroviral transduction to coexpress a panErbB-specific CAR called T1E28 and an IL-4-responsive chimeric cytokine receptor, 4 , which allows IL-4-mediated enrichment of transduced cells during manufacture. These cells elicit preclinical antitumor activity against HNSCC and other carcinomas. In this trial, we used intratumoral delivery to mitigate significant clinical risk of on-target off-tumor toxicity owing to low-level ErbB expression in healthy tissues. METHODS: We undertook a phase 1 dose-escalation 3+3 trial of intratumoral T4 immunotherapy in HNSCC (NCT01818323). CAR T-cell batches were manufactured from 40 to 130 mL of whole blood using a 2-week semiclosed process. A single CAR T-cell treatment, formulated as a fresh product in 1-4 mL of medium, was injected into one or more target lesions. Dose of CAR T-cells was escalated in 5 cohorts from 1 10 7 -1 10 9 T4 + T-cells, administered without prior lymphodepletion. RESULTS: Despite baseline lymphopenia in most enrolled subjects, the target cell dose was successfully manufactured in all cases, yielding up to 7.5 billion T-cells (67.5 11.8% transduced), without any batch failures. Treatment-related adverse events were all grade 2 or less, with no dose-limiting toxicities (Common Terminology Criteria for Adverse Events V.4.0). Frequent treatment-related adverse events were tumor swelling, pain, pyrexias, chills, and fatigue. There was no evidence of leakage of T4 + T-cells into the circulation following intratumoral delivery, and injection of radiolabeled cells demonstrated intratumoral persistence. Despite rapid progression at trial entry, stabilization of disease (Response Evaluation Criteria in Solid Tumors V.1.1) was observed in 9 of 15 subjects (60%) at 6 weeks post-CAR T-cell administration. Subsequent treatment with pembrolizumab and T-VEC oncolytic virus achieved a rapid complete clinical response in one subject, which was durable for over 3 years. Median overall survival was greater than for historical controls. Disease stabilization was associated with the administration of an immunophenotypically fitter, less exhausted, T4 CAR T-cell product. CONCLUSIONS: These data demonstrate the safe intratumoral administration of T4 immunotherapy in advanced HNSCC.
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