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Effect of water content on the glass transition temperature of mixtures of sugars polymers and penetrating cryoprotectants in physiological buffer

机译:水分对生理缓冲液中糖聚合物和渗透性防冻剂混合物的玻璃化转变温度的影响

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摘要

Long-term storage of viable mammalian cells is important for applications ranging from in vitro fertilization to cell therapy. Cryopreservation is currently the most common approach, but storage in liquid nitrogen is relatively costly and the requirement for low temperatures during shipping is inconvenient. Desiccation is an alternative strategy with the potential to enable viable cell preservation at more convenient storage temperatures without the need for liquid nitrogen. To achieve stability during storage in the dried state it is necessary to remove enough water that the remaining matrix forms a non-crystalline glassy solid. Thus, the glass transition temperature is a key parameter for design of cell desiccation procedures. In this study, we have investigated the effects of moisture content on the glass transition temperature (Tg) of mixtures of sugars (trehalose or raffinose), polymers (polyvinylpyrrolidone or Ficoll), penetrating cryoprotectants (ethylene glycol, propylene glycol, or dimethyl sulfoxide), and phosphate buffered saline (PBS) solutes. Aqueous solutions were dried to different moisture contents by equilibration with saturated salt solutions, or by baking at 95°C. The glass transition temperatures of the dehydrated samples were then measured by differential scanning calorimetry. As expected, Tg increased with decreasing moisture content. For example, in a desiccation medium containing 0.1 M trehalose in PBS, Tg ranged from about 360 K for a completely dry sample to about 220 K at a water mass fraction of 0.4. Addition of polymers to the solutions increased Tg, while addition of penetrating cryoprotectants decreased Tg. Our results provide insight into the relationship between relative humidity, moisture content and glass transition temperature for cell desiccation solutions containing sugars, polymers and penetrating cryoprotectants.
机译:活哺乳动物细胞的长期保存对于从体外受精到细胞治疗的各种应用都很重要。冷冻保存是目前最常用的方法,但是在液氮中的保存相对昂贵,并且在运输过程中对低温的要求也不方便。干燥是一种替代策略,它有潜力在更方便的存储温度下实现可行的细胞保存,而无需使用液氮。为了在干燥状态下的储存过程中获得稳定性,必须除去足够的水以使剩余的基质形成非晶态玻璃状固体。因此,玻璃化转变温度是设计电池干燥程序的关键参数。在这项研究中,我们研究了水分含量对糖(海藻糖或棉子糖),聚合物(聚乙烯吡咯烷酮或Ficoll),渗透性防冻剂(乙二醇,丙二醇或二甲基亚砜)混合物的玻璃化转变温度(Tg)的影响。 ,以及磷酸盐缓冲盐水(PBS)溶质。通过用饱和盐溶液平衡或在95°C下烘烤,将水溶液干燥至不同的水分含量。然后通过差示扫描量热法测量脱水样品的玻璃化转变温度。正如预期的那样,Tg随着水分含量的降低而增加。例如,在PBS中含有0.1 M海藻糖的干燥介质中,Tg范围从完全干燥样品的约360 K到水质量分数为0.4的约220K。向溶液中添加聚合物会增加Tg,而向渗透性防冻剂中添加会降低Tg。我们的结果为含糖,聚合物和渗透性防冻剂的细胞干燥溶液的相对湿度,水分含量和玻璃化转变温度之间的关系提供了见解。

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