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首页> 外文期刊>Cryobiology: International Journal of Low Temperature Biology and Medicine >An improved cryopreservation method for a mouse embryonic stem cell line.
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An improved cryopreservation method for a mouse embryonic stem cell line.

机译:一种改进的小鼠胚胎干细胞系的冷冻保存方法。

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Embryonic stem (ES) cell lines including the C57BL/6 genetic background are central to projects such as the Knock-Out Mouse Project, North American Conditional Mouse Mutagenesis Program, and European Conditional Mouse Mutagenesis Program, which seek to create thousands of mutant mouse strains using ES cells for the production of human disease models in biomedical research. Crucial to the success of these programs is the ability to efficiently cryopreserve these mutant cell lines for storage and transport. Although the ability to successfully cryopreserve mouse ES cells is often assumed to be adequate, the percent post-thaw recovery of viable cells varies greatly among genetic backgrounds and individual cell lines within a genetic background. Therefore, there is a need to improve the efficiency and reduce the variability of current mouse ES cell cryopreservation methods. To address this need, we employed the principles of fundamental cryobiology to improve the cryopreservation protocol of a C57BL/6 mouse ES cell line by characterizing the membrane permeability characteristics and osmotic tolerance limits. These values were used to predict optimal cooling rates, warming rates, and type of cryoprotectant, which were then verified experimentally. The resulting protocol, generated through this hypothesis-driven approach, resulted in a 2-fold increase in percent post-thaw recovery of membrane-intact ES cells as compared to the standard freezing protocol, as measured by propidium iodide exclusion. Additionally, our fundamental cryobiological approach to improving cryopreservation protocols provides a model system by which additional cryopreservation protocols may be improved in future research for both mouse and human ES cell lines.
机译:包括C57BL / 6遗传背景在内的胚胎干(ES)细胞系对于诸如敲除小鼠项目,北美条件小鼠诱变计划和欧洲条件小鼠诱变计划等项目至关重要,这些项目旨在创建数千种突变小鼠品系在生物医学研究中使用ES细胞产生人类疾病模型。这些程序成功的关键在于有效冷冻保存这些突变细胞系以进行存储和运输的能力。尽管通常认为成功冻存小鼠ES细胞的能力是足够的,但是在遗传背景和遗传背景内的单个细胞系之间,活细胞的融化后恢复百分率差异很大。因此,需要提高效率并降低当前小鼠ES细胞冷冻保存方法的可变性。为了满足这一需求,我们采用了基本的冷冻生物学原理,通过表征膜的通透性和渗透容限来改善C57BL / 6小鼠ES细胞系的冷冻保存方案。这些值用于预测最佳冷却速率,升温速率和防冻剂类型,然后通过实验进行验证。通过这种假设驱动的方法生成的方案,与标准冷冻方案相比,通过碘化丙锭排除法测得的结果是,膜完整ES细胞的融化后恢复百分比提高了2倍。此外,我们用于改善冷冻保存协议的基本冷冻生物学方法提供了一个模型系统,通过该模型系统,可以在将来对小鼠和人类ES细胞系的研究中改善其他冷冻保存协议。

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