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人类多能干细胞慢速冷却冷冻保存的优化

Optimization of slow cooling cryopreservation for human pluripotent stem cells.

作者信息

Miyazaki Takamichi, Nakatsuji Norio, Suemori Hirofumi

机构信息

Department of Embryonic Stem Cell Research, Institute for Frontier Medical Sciences, Kyoto University, 53 Kawahara-cho, Shogoin, Sakyo-ku, Kyoto, 606-8507, Japan.

出版信息

Genesis. 2014 Jan;52(1):49-55. doi: 10.1002/dvg.22725. Epub 2013 Dec 3.

Abstract

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.

摘要

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。

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