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:Fate induction through asymmetric T cell division is modulated by chimeric antigen receptor costimulatory domains.
Fate induction through asymmetric T cell division is modulated by chimeric antigen receptor costimulatory domains.
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嵌合抗原受体(CAR)T细胞疗法可使血液系统恶性肿瘤患者获得显著缓解,但复发仍常见,原因是只有少数输注细胞获得长寿命、类记忆状态。所有获美国食品药品监督管理局批准的CAR-T 产品均含4-1BB或CD28共刺激结构域,二者产生不同表型结局,但这些信号如何调控早期命运决定尚未充分阐明。本研究显示,共刺激结构域通过不对称细胞分裂控制记忆命运获得。首次分裂后,CD28 CAR-T 细胞表面CAR表达较高,表面蛋白组不对称性增强;但矛盾的是,子细胞之间的转录、表观遗传和代谢差异较小,并与长期持久性降低相关。相比之下,4-1BB CAR-T 细胞表面极化较弱,但转录、代谢及表观遗传差异更显著,产生近端偏向效应功能、远端偏向持久性的子细胞。整合表面蛋白组、转录组、代谢组及染色质可及性分析后,我们揭示共刺激结构域如何调节不对称细胞分裂并塑造CAR-T 细胞命运,为优化细胞免疫治疗提供了机制基础。
Chimeric antigen receptor (CAR) T cell therapy can result in impressive remissions in hematological malignancies, but relapse is common because a minority of infused cells acquire a long-lived, memory-like state. All US Food and Drug Administration-approved CAR T cell products incorporate either 4-1BB or CD28 costimulatory domains, each conferring distinct phenotypic outcomes, but how these signals control early fate decisions is incompletely understood.
Here we show that costimulatory domains control memory fate acquisition through asymmetric cell division. CD28 CAR T cells have higher CAR surface expression and enhanced surface proteome asymmetry after the first division, yet paradoxically they show muted transcriptional, epigenetic and metabolic divergence between daughter cells, correlating with reduced long-term persistence.
Conversely, 4-1BB CAR T cells have less surface polarization but more pronounced transcriptional, metabolic and epigenetic divergence, yielding proximal effector-prone and distal persistence-prone daughters. Integrating surface proteomics, transcriptomics, metabolomics and chromatin accessibility, we show how costimulatory domains tune asymmetric cell division to shape CAR T cell fate, providing a mechanistic foundation for optimizing cellular immunotherapy.
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