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:Murine CAR19 Tregs suppress acute graft-versus-host disease and maintain graft-versus-tumor responses.
hCAR19 Tregs是一种潜在的新型有效策略,可在不丧失GVT反应的情况下抑制GVHD。
异基因造血干细胞移植(allo-HSCT)的疗效因移植物抗宿主病(GVHD)而复杂化,GVHD是发病和死亡的主要原因。调节性T细胞(Tregs)已显示出预防GVHD的疗效。然而,通常需要高剂量的Tregs,这需要进行大量的体外或体内扩增,可能会削弱抑制功能。为了增强体内抑制功能,将小鼠Tregs转导以表达抗人CD19嵌合抗原受体(hCAR19),并输注到致死性照射的hCD19转基因受者中进行allo-HSCT。与接受对照转导Tregs的受者相比,接受hCAR19 Tregs的受者急性GVHD致死率显著降低。受者的hCD19 B细胞和小鼠hCD19 TBL12-荧光素酶(TBL12luc)淋巴瘤细胞均被异基因hCAR19 Tregs清除,这表明移植物抗肿瘤(GVT)效应得以维持和增强。在机制上,hCAR19 Tregs在体外以穿孔素依赖性、颗粒酶B非依赖性的方式杀伤同基因hCD19+而非hCD19-小鼠TBL12luc细胞。重要的是,经环磷酰胺处理的hCD19转基因小鼠在接受hCAR19细胞毒性T淋巴细胞而未进行allo-HSCT时,因与促炎细胞因子释放相关的全身毒性而出现快速致死;相比之下,hCAR19 Treg的抑制功能使得这种严重并发症得以避免。总之,hCAR19 Tregs是一种潜在的新型有效策略,可在不丧失GVT反应的情况下抑制GVHD。
Allogeneic hematopoietic stem cell transplantation (allo-HSCT) efficacy is complicated by graft-versus-host disease (GVHD), a leading cause of morbidity and mortality. Regulatory T cells (Tregs) have shown efficacy in preventing GVHD. However, high Treg doses are often required, necessitating substantial ex vivo or in vivo expansion that may diminish suppressor function. To enhance in vivo suppressor function, murine Tregs were transduced to express an anti-human CD19 chimeric antigen receptor (hCAR19) and infused into lethally irradiated, hCD19-transgenic recipients for allo-HSCT. Compared with recipients receiving control transduced Tregs, those receiving hCAR19 Tregs had a marked decrease in acute GVHD lethality. Recipient hCD19 B cells and murine hCD19 TBL12-luciferase (TBL12luc) lymphoma cells were both cleared by allogeneic hCAR19 Tregs, which was indicative of graft-versus-tumor (GVT) maintenance and potentiation. Mechanistically, hCAR19 Tregs killed syngeneic hCD19+ but not hCD19- murine TBL12luc cells in vitro in a perforin-dependent, granzyme B-independent manner. Importantly, cyclophosphamide-treated, hCD19-transgenic mice given hCAR19 cytotoxic T lymphocytes without allo-HSCT experienced rapid lethality due to systemic toxicity that has been associated with proinflammatory cytokine release; in contrast, hCAR19 Treg suppressor function enabled avoidance of this severe complication. In conclusion, hCAR19 Tregs are a potentially novel and effective strategy to suppress GVHD without loss of GVT responses.
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