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 γδ T cells for cancer immunotherapy. Is the field more yellow than green?
用于治疗对传统疗法难治的恶性肿瘤的工程化免疫细胞治疗正在推动肿瘤学的现代化。
采用工程化免疫细胞治疗常规疗法无效的恶性肿瘤,正在推动肿瘤学革新。尽管CAR设计长期以T细胞为基础,但除细胞因子毒性和抗原逃逸外,潜在移植物抗宿主病(GvHD)也限制了该策略。T细胞恶性肿瘤使治疗性T细胞的分离和扩增面临挑战。此外,肿瘤所在、对炎症敏感的重要组织也可能受到T细胞毒性影响。γδ T细胞具有不依赖HLA、多价、适应性强及全身抗肿瘤免疫等特点,因此成为CAR的替代细胞底盘。事实上,FDA快速通道资格授予了用于晚期淋巴瘤的CD19 CAR-T治疗,这是该领域的重要里程碑。但肿瘤毒性有限、归巢能力、体内持续存在能力和细胞异质性,仍限制该疗法转化。近年该领域随着基因递送方法优化以及对T细胞共信号需求机制认识加深而不断发展。研究者重新关注基于宿主免疫细胞生物学定制CAR设计。符合现行药品生产质量管理规范(cGMP)的γδ T细胞扩增和工程化方案已有进展。当常规CAR治疗因细胞因子毒性或肿瘤外靶向效应而不适用时,CAR-γδ T细胞可能找到合适的临床应用场景。随着疗法迈向临床试验,本文梳理癌症免疫治疗中工程化γδ T细胞的既有进展。
Engineered immune cell therapy to treat malignancies refractory to conventional therapies is modernizing oncology. Although T cells are time-tested chassis for CAR, potential graft versus host disease (GvHD) apart from cytokine toxicity and antigen escape pose limitations to this approach. T cell malignancy challenges isolation and expansion of therapeutic T cells. Moreover, T cells may pose toxicity risk to inflammation sensitive vital tissues bearing the tumor. The HLA independent, multivalent, versatile and systemic anti-tumor immunity increases the desirability of T cells as an alternate chassis for CAR. Indeed, CD19 CAR T cell therapy to treat advanced lymphoma reached a milestone with the fast track status by FDA. However, reduced tumor-toxicity, homing, in vivo persistence and heterogeneity limits the translation of this therapy. The field is gaining momentum in recent years with optimization of gene delivery approaches and mechanistic insights into co-signaling requirements in T cells. There is a renewed interest in customizing design of CAR guided by the biology of the host immune cells. Progress has been made in the current good manufacturing practice compatible expansion and engineering protocols for the 1 and 2 T cells. CAR T cells may find its niche in the clinical situations wherein conventional CAR therapy is less suitable due to propensity for cytokine toxicity or off-tumor effect. As the therapy is moving towards clinical trials, this review chronicles the hitherto progress in the therapeutic engineering of T cells for cancer immunotherapy.
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