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:Optimization and validation of in vivo flow cytometry chimeric antigen receptor T cell detection method using CD19his indirect staining.
Optimization and validation of in vivo flow cytometry chimeric antigen receptor T cell detection method using CD19his indirect staining.
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靶向CD19的CAR-T 细胞疗法在复发/难治性B细胞急性淋巴细胞白血病和B细胞非霍奇金淋巴瘤患者中取得前所未有的疗效,而这些患者此前缺乏其他治愈性治疗选择。体内监测CAR-T 细胞动力学,有助于理解细胞扩增和持续性与治疗应答及毒性之间的关系。
本研究旨在建立稳健、灵敏且通用的流式细胞术CAR-T 检测方法。研究采用市售试剂建立并比较了三种CD19 CAR-T 检测方法,均利用可被CAR构建体单链可变片段识别的重组人CD19蛋白片段。两种间接染色法(CD19his联合APC标记抗组氨酸抗体,以及CD19bio联合APC标记抗生物素抗体)的灵敏度和特异性均优于CD19-FITC直接染色;其中CD19his法成本效益更佳。将CD19his检测结果与实时定量PCR数据对照验证,二者呈强正相关。该染色方法还可轻松纳入多色流式面板,以进一步分析CAR-T 阳性亚群的细胞表型。此方法适用于不同抗CD19 CAR-T 产品和不同类型样本。
结果表明,CD19his流式染色是体内监测CAR-T 细胞可靠、稳健且适用范围广的工具。
CD19-targeted chimeric antigen receptor T (CAR-T) cell therapy has shown unprecedented results in patients with B cell relapsed/refractory acute lymphoblastic leukemia (R/R-ALL) and B cell non-Hodgkin lymphomas where no other curative options are available.
In vivo monitoring of CAR-T cell kinetics is fundamental to understand the correlation between CAR-T cells expansion and persistence with treatment response and toxicity development. The aim of this study was to define a robust, sensitive, and universal method for CAR-T cell detection using flow cytometry.
We set up and compared with each other three assays for CD19 CAR-T cell detection, all based on commercially available reagents. All methods used a recombinant human CD19 protein fragment recognized by the single-chain variable fragment of the CAR construct. The two indirect staining assays (CD19his + APC-conjugated antihistidine antibody and CD19bio + APC-conjugated antibiotin antibody) showed better sensitivity and specificity compared with the direct staining with CD19-FITC, and CD19his had a better cost-effective profile.
We validated CAR detection with CD19his with parallel quantitative real-time polymerase chain reaction data and we could demonstrate a strong positive correlation.
We also showed that CD19his staining can be easily included in a multicolor flow cytometry panel to achieve additional information about the cell phenotype of CAR-T cell positive subpopulations.
Finally, this method can be used for different anti-CD19 CAR-T cell products and for different sample sources. These data demonstrate that detection of CAR-T cells by CD19his flow cytometry staining is a reliable, robust, and broadly applicable tool for in vivo monitoring of CAR-T cells.
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