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Concentration of Glycerol in Aqueous Microdroplets by Selective Removal of Water

机译:通过选择性去除水在微滴水溶液中甘油的浓度

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A major roadblock to the vitrification of cells is the requirement of high concentrations of cryoprotectant (CPA) chemicals and the damage caused by prolonged exposure of cells to these high concentrations above the glass transition temperature. These effects are minimized with controlled CPA loading. Certain organic oils, such as soybean oil, are made of triacylglycerols and are capable of dissolving small amounts of water, a property which is enhanced significantly as temperature is increased. This phenomenon was exploited here to accomplish temperature-controlled concentration of glycerol in single water droplets dispersed in the organic phase. Emulsions of aqueous solutions of glycerol in soybean oil were made and subjected to a temperature increase of 10 deg C from room temperature. Upon increasing temperature, water dissolved into the oil, rendering the 15-20 (mu)m droplets concentrated an average of 3.6 times and 2.6 times for 1 and 2 M starting concentrations, respectively, with the oil-insoluble glycerol in 90-110 s. This phenomenon could be used to dynamically concentrate CPAs within cell-containing droplets which may then be vitrified before being exposed to high temperatures for fatally long times.
机译:细胞玻璃化的主要障碍是需要高浓度的防冻剂(CPA)化学药品,以及细胞长期暴露于玻璃化转变温度以上的高浓度下所造成的损害。通过控制CPA加载,可以将这些影响降到最低。某些有机油,例如大豆油,是由三酰基甘油制成的,并且能够溶解少量的水,该性质随着温度的升高而显着增强。在这里利用该现象来实现温度控制下甘油在分散于有机相中的单个水滴中的浓度。制备甘油在大豆油中的水溶液的乳液,并使其从室温升至10℃。随着温度的升高,水溶解在油中,使15-20μm的液滴分别在90-110 s内以1和2 M的起始浓度分别平均浓缩3.6倍和2.6倍的油不溶性甘油。 。此现象可用于将CPA动态浓缩在含细胞的小滴中,然后在暴露于高温下致命的长时间后将其玻璃化。

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