Miyazaki Takamichi, Nakatsuji Norio, Suemori Hirofumi
Department of Embryonic Stem Cell Research, Institute for Frontier Medical Sciences, Kyoto University, 53 Kawahara-cho, Shogoin, Sakyo-ku, Kyoto, 606-8507, Japan.
Genesis. 2014 Jan;52(1):49-55. doi: 10.1002/dvg.22725. Epub 2013 Dec 3.
Human pluripotent stem cells (hPSCs) have the potential for unlimited expansion and differentiation into cell types of all three germ layers. Cryopreservation is a key process for successful application of hPSCs. However, the current conventional method leads to poor recovery of hPSCs after thawing. Here, we demonstrate a highly efficient recovery method for hPSC cryopreservation by slow freezing and single-cell dissociation. After confirming hPSC survivability after freeze-thawing, we found that hPSCs that were freeze-thawed as colonies showed markedly decreased survival, whereas freeze-thawed single hPSCs retained the majority of their viability. These observations indicated that hPSCs should be cryopreserved as single cells. Freeze-thawed single hPSCs efficiently adhered and survived in the absence of a ROCK inhibitor by optimization of the seeding density. The high recovery rate enabled conventional colony passaging for subculture within 3 days post-thawing. The improved method was also adapted to a xeno-free culture system. Moreover, the cell recovery postcryopreservation was highly supported by coating culture surfaces with human laminin-521 that promotes adhesion of dissociated single hPSCs. This simplified but highly efficient cryopreservation method allows easy handling of cells and bulk storage of high-quality hPSCs.
人多能干细胞(hPSCs)具有无限增殖并分化为所有三个胚层细胞类型的潜力。冷冻保存是hPSCs成功应用的关键过程。然而,目前的传统方法导致hPSCs解冻后的复苏效果不佳。在此,我们展示了一种通过慢速冷冻和单细胞解离实现hPSC冷冻保存的高效复苏方法。在确认冻融后hPSC的存活率后,我们发现以集落形式冻融的hPSCs存活率显著降低,而冻融后的单个hPSCs保留了大部分活力。这些观察结果表明,hPSCs应作为单细胞进行冷冻保存。通过优化接种密度,冻融后的单个hPSCs在没有ROCK抑制剂的情况下能有效贴壁并存活。高复苏率使得在解冻后3天内能够进行常规的集落传代用于亚培养。改进后的方法也适用于无血清培养系统。此外,通过用人层粘连蛋白-521包被培养表面来促进解离后的单个hPSCs的黏附,极大地支持了冷冻保存后的细胞复苏。这种简化但高效的冷冻保存方法便于细胞操作和高质量hPSCs的大量储存。