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:Engineering tandem CD33xCD146 CAR CIK (cytokine-induced killer) cells to target the acute myeloid leukemia niche.
Engineering tandem CD33xCD146 CAR CIK (cytokine-induced killer) cells to target the acute myeloid leukemia niche.
这些数据共同证明,针对表达于两种不同靶细胞上的两个分子的双靶向模型具有可行性,同时也凸显了基质细胞对 CAR CIK 细胞的免疫调节作用,证实微环境可能成为 CAR T 细胞疗效的障碍。
在急性髓系白血病(AML)中,恶性干细胞会劫持正常骨髓生态位,并因此大多受到现有治疗方法保护。清除这些祖细胞是治疗AML的终极挑战。针对恶性骨髓微环境中维持白血病干细胞的不同间充质基质细胞亚群开发嵌合抗原受体(CAR),可能成为提高CAR-T疗效的新策略;CAR-T目前治疗AML仍未成功。作为概念验证,研究人员构建了一种串联CAR原型,一端靶向白血病细胞标志物CD33,另一端靶向间充质基质细胞标志物CD146;在二维共培养系统中,该CAR可同时靶向两种不同细胞。值得注意的是,体外还观察到基质细胞会抑制CAR-T功能,尤其影响后期效应功能,例如减少干扰素-γ和白介素-2释放,并损害CAR阳性细胞因子诱导杀伤(CIK)效应细胞的增殖。总体而言,研究证明可同时靶向两种不同细胞上的两种分子的双靶点模式具有可行性,也凸显基质细胞对CAR-CIK细胞的免疫调节作用,进一步证实骨髓生态位可能阻碍CAR-T疗效。开发靶向AML骨髓生态位的新型CAR-T方案时应考虑这一因素。
In acute myeloid leukemia (AML), malignant stem cells hijack the normal bone marrow niche where they are largely protected from the current therapeutic approaches. Thus, eradicating these progenitors is the ultimate challenge in the treatment of this disease. Specifically, the development of chimeric antigen receptors (CARs) against distinct mesenchymal stromal cell subpopulations involved in the maintenance of leukemic stem cells within the malignant bone marrow microenvironment could represent a new strategy to improve CAR T-cell therapy efficacy, which is still unsuccessful in AML. As a proof of concept, we generated a novel prototype of Tandem CAR, with one specificity directed against the leukemic cell marker CD33 and the other against the mesenchymal stromal cell marker CD146, demonstrating its capability of simultaneously targeting two different cell types in a 2D co-culture system. Interestingly, we could also observe an in vitro inhibition of CAR T cell functionality mediated by stromal cells, particularly in later effector functions, such as reduction of interferon-gamma and interleukin-2 release and impaired proliferation of the CAR + effector Cytokine-Induced Killer (CIK) cells. Taken together, these data demonstrate the feasibility of a dual targeting model against two molecules, which are expressed on two different target cells, but also highlight the immunomodulatory effect on CAR CIK cells exerted by stromal cells, confirming that the niche could be an obstacle to the efficacy of CAR T cells. This aspect should be considered in the development of novel CAR T cell approaches directed against the AML bone marrow niche.
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