Fraunhofer Institute for Biomedical Engineering (IBMT), Joseph-von-Fraunhofer-Weg 1, 66280 Sulzbach, Germany.
Cell Therapy R&D, Novo Nordisk A/S, Novo Nordisk Park 1, 2760 Maaloev, Denmark.
Cells. 2023 Jul 22;12(14):1914. doi: 10.3390/cells12141914.
Stem cell-based therapies are promising tools for regenerative medicine and require bulk numbers of high-quality cells. Currently, cells are produced on demand and have a limited shelf-life as conventional cryopreservation is primarily designed for stock keeping. We present a study on bulk cryopreservation of the human iPSC lines UKKi011-A and BIONi010-C-41. By increasing cell concentration and volume, compared to conventional cryopreservation routines in cryo vials, one billion cells were frozen in 50 mL cryo bags. Upon thawing, the cells were immediately seeded in scalable suspension-based bioreactors for expansion to assess the stemness maintenance and for neural differentiation to assess their differentiation potential on the gene and protein levels. Both the conventional and bulk cryo approach show comparative results regarding viability and aggregation upon thawing and bioreactor inoculation. Reduced performance compared to the non-frozen control was compensated within 3 days regarding biomass yield. Stemness was maintained upon thawing in expansion. In neural differentiation, a delay of the neural marker expression on day 4 was compensated at day 9. We conclude that cryopreservation in cryo bags, using high cell concentrations and volumes, does not alter the cells' fate and is a suitable technology to avoid pre-cultivation and enable time- and cost-efficient therapeutic approaches with bulk cell numbers.
基于干细胞的疗法是再生医学的有前途的工具,需要大量高质量的细胞。目前,细胞是按需生产的,由于传统的冷冻保存主要是为了库存而设计,因此其保质期有限。我们研究了 bulk 冷冻保存人类 iPSC 系 UKKi011-A 和 BIONi010-C-41 的方法。与传统的 cryo 管中的冷冻保存常规方法相比,通过增加细胞浓度和体积,将十亿个细胞冷冻在 50 毫升的 cryo 袋中。解冻后,立即将细胞接种到可扩展的基于悬浮的生物反应器中进行扩增,以评估干性维持情况,并进行神经分化,以评估它们在基因和蛋白水平上的分化潜力。传统的和 bulk 冷冻方法在解冻和生物反应器接种时的细胞活力和聚集方面都显示出了相似的结果。与未冷冻的对照相比,性能下降在 3 天内通过生物质产量得到了补偿。在扩增过程中解冻后保持了干性。在神经分化中,第 4 天神经标志物表达的延迟在第 9 天得到了补偿。我们得出结论,使用高细胞浓度和体积的 cryo 袋冷冻保存不会改变细胞的命运,是一种避免预培养并实现具有大量细胞的时间和成本高效治疗方法的合适技术。