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Rationally optimized cryopreservation of multiple mouse embryonic stem cell lines: I—Comparative Fundamental Cryobiology of Multiple Mouse Embryonic Stem Cell Lines and the Implications for Embryonic Stem Cell Cryopreservation Protocols

机译:合理优化的多个小鼠胚胎干细胞系的冷冻保存:I-多个小鼠胚胎干细胞系的比较基础冷冻生物学及其对胚胎干细胞冷冻保存协议的影响

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摘要

The post-thaw recovery of mouse embryonic stem cells (mESCs) is often assumed to be adequate with current methods. However as this publication will show, this recovery of viable cells actually varies significantly by genetic background. Therefore there is a need to improve the efficiency and reduce the variability of current mESC cryopreservation methods. To address this need, we employed the principles of fundamental cryobiology to improve the cryopreservation protocol of four mESC lines from different genetic backgrounds (BALB/c, CBA, FVB, and 129R1 mESCs) through a comparative study characterizing the membrane permeability characteristics and membrane integrity osmotic tolerance limits of each cell line. In the companion paper, these values were used to predict optimal cryoprotectants, cooling rates, warming rates, and plunge temperatures, and then these predicted optimal protocols were validated against standard freezing protocols.
机译:通常认为,采用当前方法可使小鼠胚胎干细胞(mESC)解冻后恢复。但是,正如该出版物将显示的那样,活细胞的这种回收实际上因遗传背景而有很大差异。因此,需要提高效率并减少当前mESC冷冻保存方法的可变性。为了满足这一需求,我们通过比较研究表征膜通透性特征和膜完整性的特征,采用基本的冷冻生物学原理来改进来自不同遗传背景(BALB / c,CBA,FVB和129R1 mESCs)的四种mESC系的冷冻保存方案。每个细胞系的渗透耐受极限。在随附的论文中,这些值用于预测最佳防冻剂,冷却速率,升温速率和骤降温度,然后针对标准的冷冻方案对这些预测的最佳方案进行了验证。

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