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:DMSO and Serum-free cryopreservation of T-cells enabled by glycerol/betaine formulation and controlled-rate freezing with geometry-matched thermal contacts.
DMSO and Serum-free cryopreservation of T-cells enabled by glycerol/betaine formulation and controlled-rate freezing with geometry-matched thermal contacts.
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T细胞是适应性免疫系统的关键组成部分,工程化(如 CAR-T)T细胞被应用于免疫治疗,尤其针对血液系统恶性肿瘤。在T细胞冷冻保存期间替代DMSO和血清的方法,对于疗法和基础研究提高回收率和功能均至关重要。甘油和渗透质是有前景的替代物,因为它们比DMSO细胞毒性更低,但往往无法提供稳健的解冻后回收率。
在此,我们探索甘油和甜菜碱的组合用于Jurkat细胞冷冻保存,并证明了一种显著改进的冷冻保存流程,该流程适用于低体积多孔板和基于冻存管的冷冻,且无需添加血清。优化配方为10%甘油和2%甜菜碱,解冻后回收率>90%,但关键的是,这一结果是在与3 C/min冷冻速率联用时实现的;并且观察到,更快的冷冻总体上优于较慢的冷冻(1 C/min),这与依赖被动冷却装置的标准方案相反。冷却速率的增加似乎减轻了延迟成核损伤,这通常与多孔板冷冻相关;并且这些溶液在液滴冷冻测定中显示不影响成核。这些结果证明了一种易于使用的配方,适用于常规细胞库保存,尤其是在多孔板中,这对于即用型检测/高通量筛选方法至关重要,也适用于更大体积应用的冻存管。去除血清还可能便于运输,因为各国针对动物源血清的特定指南会阻止进出口,同时也可降低成本。
T-Cells are key components of the adaptive immune system and engineered (e. g CAR-T) T-cells are deployed in immunotherapy, particular for haematologic malignancies. Methods to replace DMSO and serum during T-cell cryopreservation are crucial for both therapies and basic research to improve recovery and function. Glycerol and osmolytes are promising alternatives owing to their lower cytotoxicity than DMSO but often fail to give robust post-thaw recovery.
Here we explore the combination of glycerol and betaine for the cryopreservation of Jurkat cells and demonstrate a significantly improved cryopreservation process that is suitable for both low-volume multi-well plate and vial-based freezing with no added serum. The optimised formulation of 10% glycerol and 2% betaine gave >90% post-thaw recovery, but crucially this was achieved when linked with a 3 C/min freezing rate, and it was observed that faster freezing in general outperformed slower (1 C/min) which is in contrast to standard protocols which rely on passive cooling devices.
The increased rate of cooling appeared to mitigate delayed nucleation damage, which is typically associated with multi-well plate freezing, and the solutions were shown to not impact nucleation in droplet freezing assays.
These results demonstrate an easily useable formulation for routine banking, particularly in multiwell-plates which is essential for assay-ready/high-throughput screening approaches as well as vials for larger-volume applications. The removal of serum may also facilitate shipping, where country-specific guidelines for animal-based serum prevent import/export as well as reducing costs.
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