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:Antigen-Specific Stimulation and Expansion of CAR-T Cells Using Membrane Vesicles as Target Cell Surrogates.
Antigen-Specific Stimulation and Expansion of CAR-T Cells Using Membrane Vesicles as Target Cell Surrogates.
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CAR-T 疗法的发展使得B细胞白血病的治疗立即取得了成功。制备具有治疗功能活性的CAR-T 细胞需要稳健的方案,用于修饰后T细胞的离体/体外扩增。这一步骤具有挑战性,尤其是在使用非病毒低效率递送方案来生成CAR-T 细胞时。现代CAR-T 细胞扩增方案并不完善,因为非特异性刺激会导致CAR阴性T细胞快速过度生长,而从混合培养物中去除饲养层细胞则需要额外的纯化步骤。为了开发一种特异性且改进的CAR-T 细胞扩增方案,利用了细胞来源的膜囊泡以及CAR-抗原相互作用的简单结构需求。这种新方法是从稳定表达表面结合CAR抗原的常见细胞系制备抗原性微细胞球,然后将其用于CAR-T 细胞的刺激和扩增。本文所呈现的数据清楚地表明,该方案产生了抗原特异性囊泡,其诱导CAR-T 细胞更强刺激、增殖和功能活性的能力优于现有方案。据预测,这种新方法将显著提升获得改进的功能性CAR-T 细胞群体用于治疗的能力。
Development of CAR-T therapy led to immediate success in the treatment of B cell leukemia. Manufacturing of therapy-competent functional CAR-T cells needs robust protocols for ex vivo/in vitro expansion of modified T-cells. This step is challenging, especially if non-viral low-efficiency delivery protocols are used to generate CAR-T cells. Modern protocols for CAR-T cell expansion are imperfect since non-specific stimulation results in rapid outgrowth of CAR-negative T cells, and removal of feeder cells from mixed cultures necessitates additional purification steps. To develop a specific and improved protocol for CAR-T cell expansion, cell-derived membrane vesicles are taken advantage of, and the simple structural demands of the CAR-antigen interaction.
This novel approach is to make antigenic microcytospheres from common cell lines stably expressing surface-bound CAR antigens, and then use them for stimulation and expansion of CAR-T cells.
The data presented in this article clearly demonstrate that this protocol produced antigen-specific vesicles with the capacity to induce stronger stimulation, proliferation, and functional activity of CAR-T cells than is possible with existing protocols. It is predicted that this new methodology will significantly advance the ability to obtain improved populations of functional CAR-T cells for therapy.
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