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:CD22 CAR-T cells secreting CD19 T-cell engagers for improved control of B-cell acute lymphoblastic leukemia progression.
与 CD19/CD22 双 CAR 疗法相比,分泌 CD19 T 细胞衔接器的 CD22 CAR-T 细胞对 B-ALL 进展表现出更强的控制能力,支持其用于临床测试的潜力。
背景:CD19靶向癌症免疫疗法包括携带嵌合抗原受体(CAR)的工程化T细胞(CAR-T),以及全身给予双特异性T细胞衔接抗体(TCE),在复发/难治性B细胞急性淋巴细胞白血病(B-ALL)中显示出显著临床应答。然而,超过半数患者在CAR-T或TCE治疗后复发,其中三分之一复发由抗原逃逸或谱系转换导致。为减少肿瘤逃逸,研究者开发了同时靶向CD19和CD22的双靶点CAR-T疗法,并已在临床前及临床研究中验证。方法:本研究首次构建一种B细胞恶性肿瘤双靶点策略:分泌抗CD19 TCE抗体的CD22 CAR-T细胞(CAR-STAb-T)。并开展全面临床前表征,将其治疗B-ALL的潜力与已验证的CD19/CD22串联双靶点CAR-T细胞(TanCAR-T),以及共同给予两种单靶点CD19和CD22 CAR-T细胞(混合CAR-T)进行比较。结果:CAR-STAb-T细胞可有效重定向旁观者T细胞,在效应细胞/靶细胞比例受限时,对B-ALL细胞的细胞毒作用高于双靶点CAR-T。异质性B-ALL细胞模型模拟抗原丢失时,在短期及长期共培养实验中,CAR-STAb-T细胞均较双靶点CAR-T产生更强、更有效的细胞毒应答,降低CD19阳性白血病逃逸风险。在患者来源异种移植小鼠模型的T细胞受限条件下,CAR-STAb-T细胞也比双靶点CAR-T更有效控制白血病进展。结论:分泌CD19 T细胞衔接器的CD22 CAR-T细胞较CD19/CD22双CAR治疗更能控制B-ALL进展,支持进一步临床测试。
BACKGROUND: CD19-directed cancer immunotherapies, based on engineered T cells bearing chimeric antigen receptors (CARs, CAR-T cells) or the systemic administration of bispecific T cell-engaging (TCE) antibodies, have shown impressive clinical responses in relapsed/refractory B-cell acute lymphoblastic leukemia (B-ALL). However, more than half of patients relapse after CAR-T or TCE therapy, with antigen escape or lineage switching accounting for one-third of disease recurrences. To minimize tumor escape, dual-targeting CAR-T cell therapies simultaneously targeting CD19 and CD22 have been developed and validated both preclinically and clinically. METHODS: We have generated the first dual-targeting strategy for B-cell malignancies based on CD22 CAR-T cells secreting an anti-CD19 TCE antibody (CAR-STAb-T) and conducted a comprehensive preclinical characterization comparing its therapeutic potential in B-ALL with that of previously validated dual-targeting CD19/CD22 tandem CAR cells (TanCAR-T cells) and co-administration of two single-targeting CD19 and CD22 CAR-T cells (pooled CAR-T cells). RESULTS: We demonstrate that CAR-STAb-T cells efficiently redirect bystander T cells, resulting in higher cytotoxicity of B-ALL cells than dual-targeting CAR-T cells at limiting effector:target ratios. Furthermore, when antigen loss was replicated in a heterogeneous B-ALL cell model, CAR-STAb T cells induced more potent and effective cytotoxic responses than dual-targeting CAR-T cells in both short- and long-term co-culture assays, reducing the risk of CD19-positive leukemia escape. In vivo, CAR-STAb-T cells also controlled leukemia progression more efficiently than dual-targeting CAR-T cells in patient-derived xenograft mouse models under T cell-limiting conditions. CONCLUSIONS: CD22 CAR-T cells secreting CD19 T-cell engagers show an enhanced control of B-ALL progression compared with CD19/CD22 dual CAR-based therapies, supporting their potential for clinical testing.
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