CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Overcoming CAR-Mediated CD19 Downmodulation and Leukemia Relapse with T Lymphocytes Secreting Anti-CD19 T-cell Engagers.
Overcoming CAR-Mediated CD19 Downmodulation and Leukemia Relapse with T Lymphocytes Secreting Anti-CD19 T-cell Engagers.
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嵌合抗原受体(CAR)修饰的T细胞已经彻底改变了CD19阳性血液系统恶性肿瘤的治疗。尽管抗CD19 CAR工程化的自体T细胞可以在B细胞急性淋巴细胞白血病患者中诱导缓解,但很大一部分患者会复发,其中大多数为CD19阳性疾病。
因此,显然需要新的治疗策略。在此,我们报告了一项综合性研究,比较了表达第二代抗CD19 CAR(CAR-T19)或分泌靶向CD19/CD3的双特异性T细胞衔接抗体(STAb-T19)的工程化T细胞。
我们发现,STAb-T19细胞在诱导细胞毒性、体外避免白血病逃逸以及体内预防复发方面比CAR-T19细胞更有效。我们观察到,体外白血病逃逸与CAR诱导的CD19快速且剧烈的内化有关,这种内化伴随溶酶体介导的降解,导致出现短暂性CD19阴性白血病细胞,从而逃避工程化CAR-T19细胞的免疫应答。相比之下,工程化STAb-T19细胞诱导经典免疫突触的形成,并阻止在抗CD19 CAR介导的相互作用中观察到的CD19下调。尽管两种策略在短期小鼠模型中显示出相似疗效,但在长期患者来源异种移植小鼠模型中存在显著差异,其中STAb-T19细胞有效根除白血病细胞,而CAR-T19治疗后白血病复发。
我们的研究结果表明,STAb-T19策略中CD19未下调,加之抗体持续分泌,使得内源性T细胞库能够有效募集,从而快速有效地清除癌细胞,这可能预防常与CAR-T19疗法相关的CD19阳性复发。
Chimeric antigen receptor (CAR)-modified T cells have revolutionized the treatment of CD19-positive hematologic malignancies. Although anti-CD19 CAR-engineered autologous T cells can induce remission in patients with B-cell acute lymphoblastic leukemia, a large subset relapse, most of them with CD19-positive disease.
Therefore, new therapeutic strategies are clearly needed. Here, we report a comprehensive study comparing engineered T cells either expressing a second-generation anti-CD19 CAR (CAR-T19) or secreting a CD19/CD3-targeting bispecific T-cell engager antibody (STAb-T19).
We found that STAb-T19 cells are more effective than CAR-T19 cells at inducing cytotoxicity, avoiding leukemia escape in vitro, and preventing relapse in vivo.
We observed that leukemia escape in vitro is associated with rapid and drastic CAR-induced internalization of CD19 that is coupled with lysosome-mediated degradation, leading to the emergence of transiently CD19-negative leukemic cells that evade the immune response of engineered CAR-T19 cells.
In contrast, engineered STAb-T19 cells induce the formation of canonical immunologic synapses and prevent the CD19 downmodulation observed in anti-CD19 CAR-mediated interactions. Although both strategies show similar efficacy in short-term mouse models, there is a significant difference in a long-term patient-derived xenograft mouse model, where STAb-T19 cells efficiently eradicated leukemia cells, but leukemia relapsed after CAR-T19 therapy.
Our findings suggest that the absence of CD19 downmodulation in the STAb-T19 strategy, coupled with the continued antibody secretion, allows an efficient recruitment of the endogenous T-cell pool, resulting in fast and effective elimination of cancer cells that may prevent CD19-positive relapses frequently associated with CAR-T19 therapies.
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