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:Parallel processing of T cells and natural killer cells to enhance in vivoCAR T cell activity against blood and solid cancers.
本研究鼓励优化利用白细胞单采产物。通过将废弃的PBMC回收为NK细胞,可有效增强CAR T细胞疗法,改善肿瘤清除率和生存率。
尽管NK细胞具有抗癌特性,但在CAR T细胞制造过程中通常被丢弃。NK细胞作为细胞疗法展现出有前景的应答,在高剂量下表现出显著的安全性。此外,NK细胞具有互补的细胞因子谱和独特的抗原识别通路,可补充CAR T细胞疗法。我们展示了从CAR T细胞生产中通常被丢弃的PBMC中平行扩增NK细胞,用于针对实体和血液恶性肿瘤的下游联合疗法。
CAR-T细胞由血沉棕黄层制备,首先从PBMC中分离T细胞。与此同时,通过用膜结合型(mb)IL-21 + mbIL-15饲养层细胞刺激剩余的PBMC,使NK细胞快速扩增。通过光谱流式细胞术对扩增后的NK细胞进行评估,并将其作为CAR-T细胞输注前的预处理,应用于NOD-scid IL2Rgamma null(NSG)小鼠的异种移植肿瘤模型。
将饲养细胞应用于残留的PBMC,可使纯NK细胞扩增5000倍。扩增后的NK细胞表达多种活化受体,并表现出强烈的体外细胞毒性,在CAR T条件培养基中其细胞毒性进一步增强。对NK细胞进行预处理可增强现有的CAR T细胞疗法,改善体内肿瘤清除率,并提高对乳腺癌、急性淋巴细胞白血病和非霍奇金淋巴瘤的生存率。虽然NK细胞在体外可清除CD19 -/-变异体,但在体内无法抑制抗原逃逸性复发。
OBJECTIVES: Despite their anti-cancer properties, natural killer (NK) cells are discarded during CAR T cell manufacturing. NK cells display promising responses as a cell therapy, exhibiting remarkable safety at high doses. Moreover, NK cells have complementary cytokine profiles and distinct antigen-recognition pathways to supplement CAR T cell therapies. We demonstrate parallel expansion of NK cells from the normally discarded PBMC of CAR T cell production for downstream combination therapies against solid and blood-borne malignancies. METHODS: CAR T cells were manufactured from buffy coats with initial isolation of T cells from PBMC. NK cells were rapidly expanded in parallel by stimulating the remaining PBMC with membrane-bound (mb)IL-21 + mbIL-15 feeder cells. Expanded NK cells were assessed through spectral flow cytometry and applied as a pretreatment prior to CAR Tcell infusion against xenograft tumor models in NOD- scid IL2Rgamma null (NSG) mice. RESULTS: Applying feeder cells to residual PBMC stimulated 5000-fold expansions of pure NK cells. Expanded NK cells expressed various activation receptors and displayed strong in vitro cytotoxicity, which was further improved in CAR T-conditioned medium. A pretreatment of NK cells enhanced existing CAR T cell therapies, improving in vivo tumor clearance and survival against breast cancer, acute lymphoblastic leukaemia and non-Hodgkin's lymphoma. While NK cells eliminated CD19 -/- variants in vitro , they were unable to suppress antigen-escape relapse in vivo . CONCLUSION: This study encourages the optimal use of leukapheresis product. By recycling discarded PBMC into NK cells, CAR T cell therapies can be effectively enhanced, improving tumor clearance and survival.
MEMBER ACCOUNT
登录成功会直接打开下一页。