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:Comparative analysis and process optimization for manufacturing CAR-T using the PiggyBac system derived from cryopreserved versus fresh PBMCs.
Comparative analysis and process optimization for manufacturing CAR-T using the PiggyBac system derived from cryopreserved versus fresh PBMCs.
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CAR-T(CAR-T)疗法在癌症治疗中具有前景,但使用新鲜患者细胞面临挑战,包括生产失败和物流障碍。冷冻保存的外周血单个核细胞(PBMCs)提供了一种潜在解决方案,虽然已有报道使用慢病毒工艺从这些细胞中生成CAR-T,但很少有研究证明成功的PiggyBac电转方法。
因此,我们的研究目标有两个:首先,对冷冻保存的PBMCs、新鲜PBMCs及其各自的CAR-T 制备进行对比研究。其次,通过工艺优化,建立使用冷冻保存PBMCs的PiggyBac电转CAR-T 制备工艺。
结果显示,长期冷冻的PBMCs活力以相对稳定的方式保持。从冷冻保存的PBMCs生成的CAR-T 在扩增潜力、细胞表型、分化谱、耗竭标志物以及对人类卵巢癌细胞系(SKOV-3)细胞的细胞毒性方面,与来自新鲜PBMCs的CAR-T 相当。
此外,通过工艺优化,我们进一步增强了CAR-T 的增殖和毒性。这种方法有潜力通过利用健康供体细胞而非患者细胞来革新CAR-T 生产模式。这种转变可以减轻影响治疗效果的问题,例如疾病后细胞状态不佳或细胞制备延迟。
Chimeric antigen receptor T (CAR-T) therapy holds promise for cancer treatment but faces challenges with using fresh patient cells, including manufacturing failures and logistical hurdles. Cryopreserved peripheral blood mononuclear cells (PBMCs) offer a potential solution, and while lentiviral processes have been reported for generating CAR-T from these cells, few studies have demonstrated successful PiggyBac electroporation methods.
Therefore, the objectives of our study were twofold: Firstly, to conduct a comparative study on cryopreserved PBMCs, fresh PBMCs, and their respective preparations of CAR-T. Secondly, to establish a PiggyBac electroporation CAR-T preparation process using cryopreserved PBMCs through process optimization.
The results revealed that long-term frozen PBMCs viability in a relatively stable manner. CAR-T generated from cryopreserved PBMCs exhibited comparable expansion potential, cell phenotype, differentiation profiles, exhaustion markers, and cytotoxicity against human ovarian cancer cell line (SKOV-3) cells to those derived from fresh PBMCs.
Moreover, through process optimization, we further enhanced the proliferation and toxicity of CAR-T. This approach has the potential to revolutionize the CAR-T production model by utilizing healthy donor cells instead of patient cells. This shift could mitigate issues affecting treatment efficacy, such as suboptimal cell condition following illness or delays in cell preparation.
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