Division of Biomedical Sciences, Warwick Medical School, University of Warwick, Gibbet Hill Road, Coventry CV4 7AL, U.K.
Cryologyx Ltd., 71-75 Shelton Street, London WC2H 9JQ, U.K.
Biomacromolecules. 2022 Sep 12;23(9):3948-3959. doi: 10.1021/acs.biomac.2c00791. Epub 2022 Aug 16.
Cell monolayers underpin the discovery and screening of new drugs and allow for fundamental studies of cell biology and disease. However, current cryopreservation technologies do not allow cells to be stored frozen while attached to tissue culture plastic. Hence, cells must be thawed from suspension, cultured for several days or weeks, and finally transferred into multiwell plates for the desired application. This inefficient process consumes significant time handling cells, rather than conducting biomedical research or other value-adding activities. Here, we demonstrate that a synthetic macromolecular cryoprotectant enables the routine, reproducible, and robust cryopreservation of biomedically important cell monolayers, within industry-standard tissue culture multiwell plates. The cells are simply thawed with media and placed in an incubator ready to use within 24 h. Post-thaw cell recovery values were >80% across three cell lines with low well-to-well variance. The cryopreserved cells retained healthy morphology, membrane integrity, proliferative capacity, and metabolic activity; showed marginal increases in apoptotic cells; and responded well to a toxicological challenge using doxorubicin. These discoveries confirm that the cells are "assay-ready" 24 h after thaw. Overall, we show that macromolecular cryoprotectants can address a long-standing cryobiological challenge and offers the potential to transform routine cell culture for biomedical discovery.
细胞单层是新药发现和筛选的基础,同时也允许对细胞生物学和疾病进行基础研究。然而,目前的冷冻保存技术不允许细胞在附着于组织培养塑料的情况下被冷冻保存。因此,细胞必须从悬浮液中解冻,培养数天或数周,最后转移到多孔板中进行所需的应用。这个低效的过程在处理细胞上消耗了大量的时间,而不是进行生物医学研究或其他增值活动。在这里,我们证明了一种合成的大分子冷冻保护剂可以在行业标准的组织培养多孔板中常规、可重复且稳健地冷冻保存重要的生物医学细胞单层。只需用培养基解冻细胞,并将其置于培养箱中,24 小时内即可使用。经过解冻后,三种细胞系的细胞恢复值均超过 80%,且孔间差异较小。冷冻保存的细胞保持健康的形态、膜完整性、增殖能力和代谢活性;凋亡细胞略有增加;对多柔比星的毒性挑战反应良好。这些发现证实,解冻后 24 小时细胞即可“准备进行检测”。总的来说,我们表明大分子冷冻保护剂可以解决长期存在的冷冻生物学挑战,并有可能改变生物医学发现中的常规细胞培养。