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:High-dimensional temporal mapping of CAR T cells reveals phenotypic and functional remodeling during manufacturing.
High-dimensional temporal mapping of CAR T cells reveals phenotypic and functional remodeling during manufacturing.
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尽管嵌合抗原受体(CAR)T细胞疗法在血液系统恶性肿瘤中取得显著成功,其临床结局仍存在差异,因此亟需了解生产过程如何影响产品组成和功能。我们开发了一套包含36种标志物的光谱流式细胞术检测面板,用于综合分析CAR-T 细胞生产过程中的表型、代谢和功能特征。扩增中期(第5天)的产品保留了具有高增殖能力、呈干细胞样且代谢活跃的CD4+ Th1亚群;延长培养至第10天则富集了终末分化的CD8+ Tc1细胞和类NK T细胞群。CAR+与CAR− T细胞表现出相似的分化轨迹,提示培养条件对表型重塑的影响可能大于CAR整合。遇到抗原并再次刺激后,第5天和第10天产品的细胞毒性相近,但活化及免疫检查点特征有所不同。冷冻保存对干细胞记忆、活化和代谢标志物有轻微影响,但总体表型和细胞毒功能得以保留。这些发现建立了用于描绘CAR-T 细胞动态变化的高维分析框架,可支持生产流程优化和下一代细胞治疗设计。
Despite the notable success of chimeric antigen receptor (CAR) T cell therapies in hematological malignancies, clinical outcomes remain variable, making it critical to understand how manufacturing influences product composition and function.
We developed a 36-marker spectral flow cytometry panel enabling integrated profiling of phenotypic, metabolic, and functional attributes across CAR T cell production. Mid-expansion products (day 5) retained stem-like, metabolically active CD4 + Th1 subsets with high proliferative capacity, whereas prolonged culture (day 10) enriched terminally differentiated CD8 + Tc1 cells and NK-like T cell populations.
CAR + and CAR - T cells showed similar differentiation trajectories, suggesting that culture conditions may have a larger impact on phenotypic remodeling than CAR integration. Upon antigen encounter and restimulation, day 5 and day 10 products showed comparable cytotoxicity, while differing in their activation and checkpoint profiles. Cryopreservation modestly affected stem cell memory, activation, and metabolic markers but preserved overall phenotype and cytotoxic function.
These findings establish a high-dimensional framework for mapping CAR T cell dynamics to support manufacturing optimization and next-generation cell therapy design.
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