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:Impact of Serum/Xeno-Free Medium and Cytokine Supplementation on CAR-T Cell Therapy Manufacturing in Stirred Tank Bioreactors.
Impact of Serum/Xeno-Free Medium and Cytokine Supplementation on CAR-T Cell Therapy Manufacturing in Stirred Tank Bioreactors.
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CAR-T 细胞疗法已在血液系统恶性肿瘤治疗中显示临床疗效,并获得多个监管批准。然而,为满足临床和商业需求,仍需稳健的生产平台及符合药品生产质量管理规范(GMP)的试剂。
本研究使用24孔板G-Rex培养器和500 mL搅拌罐生物反应器(STR),考察无血清/无异种成分培养基(SXFM)及细胞因子补充对静态和搅拌培养系统中CAR-T 细胞生产的影响。在静态条件下,无论补充IL-2还是IL-7与IL-15组合,SXFM支持CAR-T 细胞扩增,其生长动力学与胎牛血清(FBS)配制的RPMI培养基相当。相比之下,使用STR扩增时,SXFM条件下观察到若干差异。特别是补充IL-2的SXFM可提高转导效率,与含FBS的RPMI相比支持细胞更快增殖。
此外,SXFM收获时维持较高的CD4:CD8比值,而这一特征与较好临床结局相关。不同条件下CAR-T 细胞群体的分化状态、活化和耗竭特征均无显著差异。结果提示,与含FBS的培养基相比,SXFM可用于STR中的CAR-T 细胞生产,并改善转导效率、生长动力学和CD4:CD8比值等关键质量属性。
Chimeric antigen receptor T-cell (CAR-T) therapies have demonstrated clinical efficacy in treating haematological malignancies, resulting in multiple regulatory approvals.
However, there is a need for robust manufacturing platforms and the use of GMP-aligned reagents to meet the clinical and commercial demands.
This study investigates the impact of serum/xeno-free medium (SXFM) and cytokine supplementation on CAR-T cell production in static and agitated culture systems, using 24-well plate G-Rex vessels and 500 mL stirred tank bioreactors (STRs), respectively. Under static conditions, SXFM media supported CAR-T cell expansion with growth kinetics comparable to foetal bovine serum, FBS-based RPMI, irrespective of the cytokine supplementation (IL-2 or the combination of IL-7 and IL-15).
In contrast, when the expansion was conducted using STRs, several differences were observed with SXFM. Particularly, when supplemented with IL-2 SXFM, it increased transduction efficiency, supporting accelerated proliferation relative to FBS-containing RPMI.
Additionally, SXFM maintained a higher CD4:CD8 ratio at harvest, a feature associated with improved clinical outcomes. No significant differences were observed in the CAR-T cell populations' differentiation status or activation and exhaustion profiles across the conditions. These results suggest that SXFM enables CAR-T cell manufacturing in STRs, improving key quality attributes such as transduction efficiency, growth kinetics, and CD4:CD8 ratio compared to FBS-supplemented medium.
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