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:CD19.CAR T-cell-derived extracellular vesicles express CAR and kill leukemic cells, contributing to antineoplastic therapy.
我们的数据表明,CD19.CAR+EVs 可作为 CAR T 细胞活性的有前景的动态新型生物标志物,并且通过直接杀伤白血病靶细胞,代表一种具有强大治疗潜力的新产品,可独立于 CAR T 细胞进行输注。
嵌合抗原受体(CAR)T细胞来源的细胞外囊泡(EVs)可能代表一种增强CAR T细胞抗白血病效应的新治疗工具。在此,对22例接受CD19 CAR T细胞输注的患者队列进行了监测,以检测循环中CD19 CAR+ T细胞来源的EVs(CD19.CAR+EVs)的存在,随后将其分离并对其杀伤能力进行功能表征。还开发了一种符合药品生产质量管理规范(GMP)的分离方法。结果表明,CD19.CAR+EVs在输注后长达2年内可在外周血中检测到,表明其亲本细胞具有长期持续性。值得注意的是,循环CD19.CAR+EV浓度的早期下降与CAR T细胞治疗失败相关。循环CD19.CAR+EVs的中位大小(标准差)为133.1 65.5 nm,并携带促凋亡蛋白货物。这些EVs表达的CAR水平高于其亲本细胞。此外,CD19.CAR+EVs不激活异体T细胞,并对CD19+细胞系和原代细胞产生显著、特异性且剂量依赖性的细胞毒性效应。新的符合GMP的EV分离方法可实现63% 5.7%的CD19.CAR+EVs回收率。对不同CAR T细胞亚群来源的EVs所携带不同蛋白货物的深入分析,鉴定出一条与CD8+LAG-3+ EVs相关的促凋亡功能通路。总体而言,我们的数据表明,CD19.CAR+EVs可作为CAR T细胞活性的有前景的动态新生物标志物,并且通过促进对白血病靶细胞的直接杀伤,代表一种具有强大治疗潜力的新产品,可独立于CAR T细胞进行输注。
Chimeric antigen receptor (CAR) T-cell-derived extracellular vesicles (EVs) might represent a new therapeutic tool for boosting CAR T-cell antileukemic effects. Here, a cohort of 22 patients who received infusion with CD19 CAR T cells were monitored for the presence of circulating CD19 CAR+ T-cell-derived EVs (CD19.CAR+EVs), which were then separated and functionally characterized for their killing abilities. A good manufacturing practice (GMP)-compliant separation method was also developed. Results demonstrated that CD19.CAR+EVs were detectable in peripheral blood up to 2 years after infusion, indicating long-lasting persistence of their parental cells. Notably, early decreases of circulating CD19.CAR+EV concentrations correlated with failure of CAR T-cell therapy. Circulating CD19.CAR+EVs displayed a median size (standard deviation) of 133.1 65.5 nm and carried a proapoptotic protein cargo. These EVs expressed higher CAR levels than their parental cells. Furthermore, CD19.CAR+EVs did not activate heterologous T cells and produced significant, specific, and dose-dependent cytotoxic effects on CD19+ cell lines and primary cells. The new GMP-compliant EV isolation method allowed for a recovery of 63% 5.7% of CD19.CAR+EVs. A deeper analysis of the different protein cargoes carried by EVs derived from different CAR T-cell subpopulations identified a proapoptotic functional pathway linked to CD8+LAG-3+ EVs. Overall, our data indicate that CD19.CAR+EVs may be proposed as promising dynamic new biomarkers of CAR T-cell activity and, by contributing to the direct killing of leukemic targets, represent a new product with strong therapeutic potential that could be infused independently of CAR T cells.
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