Noaks Elsa, Peticone Carlotta, Kotsopoulou Ekaterini, Bracewell Daniel G
Department of Biochemical Engineering, University College London, Bernard Katz Building, Gower Street, London WC1E 6BT, UK.
Autolus Therapeutics Ltd., The Mediaworks, 191 Wood Lane, White City, London W12 7FP, UK.
Mol Ther Methods Clin Dev. 2021 Feb 6;20:675-687. doi: 10.1016/j.omtm.2021.02.002. eCollection 2021 Mar 12.
The majority of CD19-directed CAR T cell products are manufactured using an autologous process. Although using a patient's leukapheresis reduces the risks of rejection, it introduces variability in starting material composition and the presence of cell populations that might negatively affect production of chimeric antigen receptor (CAR) T cells, such as myeloid cells. In this work, the effect of monocytes (CD14) on the level of activation, growth, and transduction efficiency was monitored across well plate and culture bag platforms using healthy donor leukapheresis. Removal of monocytes from leukapheresis improved the level of activation 2-fold, achieving the same level of activation as when initiating the process with a purified T cell starting material. Two activation reagents were tested in well plate cultures, revealing differing sensitivities to starting material composition. Monocyte depletion in culture bag systems had a significant effect on transduction efficiency, improving consistency and increasing the level of CAR expression by up to 64% compared to unsorted leukapheresis. Cytotoxicity assays revealed that CAR T cell products produced from donor material depleted of monocytes and isolated T cells consistently outperformed those made from unsorted leukapheresis. Analysis of memory phenotypes and gene expression indicated that CAR T cells produced using depleted starting material displayed a more rested and naive state.
大多数靶向CD19的嵌合抗原受体(CAR)T细胞产品采用自体方法生产。虽然使用患者的白细胞分离术可降低排斥风险,但它会导致起始材料成分的变异性以及可能对CAR T细胞生产产生负面影响的细胞群体(如髓样细胞)的存在。在这项研究中,使用健康供体的白细胞分离术,在微孔板和培养袋平台上监测单核细胞(CD14)对激活水平、生长和转导效率的影响。从白细胞分离物中去除单核细胞可使激活水平提高2倍,达到与使用纯化T细胞起始材料启动该过程时相同的激活水平。在微孔板培养中测试了两种激活试剂,结果显示对起始材料成分的敏感性不同。培养袋系统中的单核细胞耗竭对转导效率有显著影响,与未分选的白细胞分离物相比,提高了一致性并使CAR表达水平提高了64%。细胞毒性试验表明,由去除单核细胞的供体材料和分离的T细胞产生的CAR T细胞产品始终优于由未分选的白细胞分离物产生的产品。记忆表型和基因表达分析表明,使用耗尽的起始材料产生的CAR T细胞表现出更静止和幼稚的状态。