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.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Monitoring of kinetics and exhaustion markers of circulating CAR-T cells as early predictive factors in patients with B-cell malignancies.
Monitoring of kinetics and exhaustion markers of circulating CAR-T cells as early predictive factors in patients with B-cell malignancies.
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这些数据表明 CAR-T 细胞体内监测的重要性,并确定 PD1LAG3 和 CD107a 的表达是 CAR-T 细胞治疗后长期疾病控制的早期生物标志物。
CAR-T 细胞疗法已被证明是血液学领域的一种颠覆性治疗方法,然而,不到50%的患者能够维持长期缓解,且结局的早期预测因素仍缺乏统一定义。在此,我们旨在优化血液中CD19 CAR-T 细胞的检测,并识别作为与毒性和结局相关的早期生物标志物的表型特征。
在本研究中,通过流式细胞术和数字PCR(dPCR)对48例接受Tisa-cel或Axi-cel治疗的患者进行了监测,并对其循环CAR-T 细胞进行了免疫表型特征分析。
用于检测血液中CAR-T 细胞的流式细胞术试剂验证显示,CD19蛋白与链霉亲和素偶联是最佳检测方法。血液中CAR-T 细胞扩增动力学通过流式细胞术和数字PCR均证实,扩增峰值中位时间为输注后七天。循环CAR-T 细胞在扩增峰值时表现出活化、增殖和耗竭表型。扩增增加的患者表现出更严重的CRS和ICANs。在扩增峰值时对CAR-T 细胞进行免疫表型分析发现,共抑制分子PD1和LAG3表达增加以及细胞毒性标志物CD107a水平降低,可作为更好长期疾病控制的预测因子。
CAR-T cell therapy has proven to be a disruptive treatment in the hematology field, however, less than 50% of patients maintain long-term response and early predictors of outcome are still inconsistently defined. Here, we aimed to optimize the detection of CD19 CAR-T cells in blood and to identify phenotypic features as early biomarkers associated with toxicity and outcomes. EXPERIMENTAL DESIGN: In this study, monitoring by flow cytometry and digital PCR (dPCR), and immunophenotypic characterization of circulating CAR-T cells from 48 patients treated with Tisa-cel or Axi-cel was performed.
Validation of the flow cytometry reagent for the detection of CAR-T cells in blood revealed CD19 protein conjugated with streptavidin as the optimal detection method. Kinetics of CAR-T cell expansion in blood confirmed median day of peak expansion at seven days post-infusion by both flow cytometry and digital PCR. Circulating CAR-T cells showed an activated, proliferative, and exhausted phenotype at the time of peak expansion. Patients with increased expansion showed more severe CRS and ICANs. Immunophenotypic characterization of CAR-T cells at the peak expansion identified the increased expression of co-inhibitory molecules PD1 and LAG3 and reduced levels of the cytotoxicity marker CD107a as predictors of a better long-term disease control.
These data show the importance of CAR-T cells in vivo monitoring and identify the expression of PD1LAG3 and CD107a as early biomarkers of long-term disease control after CAR-T cell therapy.
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