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:Targeting HLA-DR loss in hematologic malignancies with an inhibitory chimeric antigen receptor.
嵌合抗原受体自然杀伤(CAR-NK)细胞对血液系统恶性肿瘤具有显著的细胞毒性;然而,它们也可能攻击共享靶抗原的正常细胞。
嵌合抗原受体自然杀伤(CAR-NK)细胞对血液系统恶性肿瘤具有显著的细胞毒性;然而,它们也可能攻击共享靶抗原的正常细胞。由于据报道人类白细胞抗原DR(HLA-DR)在相当比例的血液系统恶性肿瘤中缺失或下调,推测这是一种逃避免疫监视的机制,我们假设CAR-NK细胞的抗癌特异性可以通过激活其针对肿瘤抗原的同时抑制其针对HLA-DR来增强。在此,我们报道了一种抗HLA-DR抑制性CAR(iCAR)的开发,该iCAR能够有效抑制NK细胞针对表达HLA-DR的细胞的激活。我们展示,共表达抗CD19或CD33激活型CAR和抗HLA-DR iCAR的双重CAR-NK细胞在体外能够优先靶向HLA-DR阴性细胞而非HLA-DR阳性细胞。我们发现HLA-DR介导的抑制与iCAR和HLA-DR的密度均呈正相关。我们还发现表达HLA-DR的周围细胞不影响双重CAR-NK细胞的靶标选择性。最后,我们在异种移植小鼠模型中证实HLA-DR阳性细胞对双重CAR-NK细胞介导的杀伤具有抗性。我们的方法对于增强CAR-NK和CAR-T细胞针对HLA-DR缺失的恶性肿瘤的特异性具有巨大前景。
Chimeric antigen receptor natural killer (CAR-NK) cells have remarkable cytotoxicity against hematologic malignancies; however, they may also attack normal cells sharing the target antigen. Since human leukocyte antigen DR (HLA-DR) is reportedly lost or downregulated in a substantial proportion of hematologic malignancies, presumably a mechanism to escape immune surveillance, we hypothesize that the anti-cancer specificity of CAR-NK cells can be enhanced by activating them against cancer antigens while inhibiting them against HLA-DR. Here, we report the development of an anti-HLA-DR inhibitory CAR (iCAR) that can effectively suppress NK cell activation against HLA-DR-expressing cells. We show that dual CAR-NK cells, which co-express the anti-CD19 or CD33 activating CAR and the anti-HLA-DR iCAR, can preferentially target HLA-DR-negative cells over HLA-DR-positive cells in vitro. We find that the HLA-DR-mediated inhibition is positively correlated with both iCAR and HLA-DR densities. We also find that HLA-DR-expressing surrounding cells do not affect the target selectivity of dual CAR-NK cells. Finally, we confirm that HLA-DR-positive cells are resistant to dual CAR-NK cell-mediated killing in a xenograft mouse model. Our approach holds great promise for enhancing CAR-NK and CAR-T cell specificity against malignancies with HLA-DR loss.
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