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:Metabolic priming of GD2 TRAC -CAR T cells during manufacturing promotes memory phenotypes while enhancing persistence.
Metabolic priming of GD2 TRAC -CAR T cells during manufacturing promotes memory phenotypes while enhancing persistence.
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嵌合抗原受体(CAR)T细胞疗法的生产流程复杂,目前对培养基组成如何影响T细胞表型的认识有限。CRISPR/Cas9核糖核蛋白可在插入CAR序列的同时精准破坏内源性T细胞受体α恒定区(TRAC)基因,从而生成富集干细胞记忆T细胞群的TRAC-CAR-T 细胞;调整培养基组成可能进一步优化这一流程。
本研究采用“代谢预激”(MP)制备抗GD2 TRAC-CAR-T 细胞:先在低葡萄糖/谷氨酰胺培养基中活化细胞,再转入高葡萄糖/谷氨酰胺培养基扩增。研究通过光谱流式细胞术、代谢实验、细胞因子生成、体外细胞毒实验以及对体内人GD2⁺异种移植神经母细胞瘤模型的效能评估T细胞产品。与标准TRAC-CAR-T 细胞相比,MP TRAC-CAR-T 细胞糖酵解较低、CCR7/CD62L表达较高,结合态NAD(P)H活性更高;在体外生产结束时,IFN-γ、IL-2、IP-10、IL-1β、IL-17和TGF生成减少。体内观察到中央记忆CAR-T 细胞增加且持久性更好。在CAR-T 细胞生物制造过程中通过培养基进行代谢预激,可降低体外糖酵解并富集记忆表型,进而有望改善其体内抗实体瘤应答。
Manufacturing Chimeric Antigen Receptor (CAR) T cell therapies is complex, with limited understanding of how media composition impact T-cell phenotypes. CRISPR/Cas9 ribonucleoproteins can precisely insert a CAR sequence while disrupting the endogenous T cell receptor alpha constant ( TRAC ) gene resulting in TRAC -CAR T cells with an enriched stem cell memory T-cell population, a process that could be further optimized through modifications to the media composition. In this study we generated anti-GD2 TRAC -CAR T cells using "metabolic priming" (MP), where the cells were activated in glucose/glutamine low media and then expanded in glucose/glutamine high media.
T cell products were evaluated using spectral flow cytometry, metabolic assays, cytokine production, cytotoxicity assays in vitro and potency against human GD2+ xenograft neuroblastoma models in vivo .
Compared to standard TRAC -CAR T cells, MP TRAC -CAR T cells showed less glycolysis, higher CCR7/CD62L expression, more bound NAD(P)H activity and reduced IFN- , IL-2, IP-10, IL-1 , IL-17, and TGF production at the end of manufacturing ex vivo , with increased central memory CAR T cells and better persistence observed in vivo . Metabolic priming with media during CAR T cell biomanufacturing can minimize glycolysis and enrich memory phenotypes ex vivo , which could lead to better responses against solid tumors in vivo .
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