CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:The costimulatory domain influences CD19 CAR-T cell resistance development in B-cell malignancies.
The costimulatory domain influences CD19 CAR-T cell resistance development in B-cell malignancies.
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CD19 靶向 CAR-T 细胞已成为复发/难治性 B 细胞来源恶性肿瘤的重要治疗选择,但约半数患者最终仍会复发。为识别驱动耐药的因素,研究者在体外反复使用基于 4-1BB 或 CD28 共刺激结构域的 CD19 CAR-T 细胞处理 B 细胞淋巴瘤及 B 急性淋巴细胞白血病。建立的模型显示,CD19 丢失存在依赖共刺激结构域的差异。CD19-4-1BB-CAR-T 细胞会诱导组合表位及总 CD19 蛋白丢失,而 CD19-CD28-CAR-T 细胞未导致抗原逃逸。与接受 CD19-4-1BB-CAR-T 后复发患者中的观察一致,研究发现影响 FMC63 表位识别关键残基的 CD19 移码或错义突变。数学模拟显示,CD19-4-1BB-CAR-T 与 CD19-CD28-CAR-T 对低抗原表达肿瘤细胞的活性差异,会造成治疗应答异质性。综合体外和计算机模拟数据,研究者提出一种生物学情景:CD19-4-1BB-CAR-T 不能清除低抗原肿瘤细胞,从而促成 CAR 耐药。这些发现为临床上 CD28 型 axi-cel 与 4-1BB 型 tisa-cel 治疗 B 细胞淋巴瘤所见差异提供了机制解释,并加深了对 CAR-T 耐药的认识。
此外,研究强调需要特异性检测 FMC63 表位,以判断 CAR-T 可接触到的 CD19 抗原水平。
CD19-CAR-T-cells emerge as a major therapeutic option for relapsed/refractory B-cell-derived malignancies, however approximately half of patients eventually relapse. To identify resistance-driving factors, we repeatedly exposed B-cell lymphoma/B-cell acute lymphoblastic leukemia to 4-1BB/CD28-based CD19-CAR-T-cells in vitro . Generated models revealed costimulatory domain-dependent differences in CD19 loss. While CD19-4-1BB-CAR-T-cells induced combination epitope/total CD19 protein loss, CD19-CD28-CAR-T-cells did not drive antigen-escape.
Consistent with observations in patients relapsing after CD19-4-1BB-CAR-T-cells, we identified CD19 frameshift/missense mutations affecting residues critical for FMC63 epitope recognition. Mathematical simulations revealed that differences between CD19-4-1BB- and CD19-CD28-CAR-T-cells activity against low-antigen-expressing tumor contribute to heterogeneous therapeutic responses. By integrating in vitro and in silico data, we propose a biological scenario where CD19-4-1BB-CAR-T-cells fail to eliminate low-antigen tumor cells, fostering CAR-resistance.
These findings offer mechanistic insight into the observed clinical differences between axi-cel (CD28-based) and tisa-cel (4-1BB-based)-treated B-cell lymphoma patients and advance our understanding on CAR-T resistance.
Furthermore, we underscore the need for specific FMC63 epitope detection to deliver information on antigen levels accessible for CD19-CAR-T-cells.
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