Department of Mechanical and Aerospace Engineering, University of Missouri, Columbia, MO, USA.
Cryobiology. 2010 Aug;61(1):161-5. doi: 10.1016/j.cryobiol.2010.06.004. Epub 2010 Jun 17.
Phase diagrams of solutions consisting of cryoprotective agents (CPA) are very useful in cryobiology research. Those diagrams depict the points of solution concentrations at corresponding temperatures: one of essential inputs that can be utilized to compute the volume response of cell under freezing process. However, generating such plots is costly and time-consuming. A direct method is proposed in this study to determine the solution concentration of unfrozen parts at multiple sub-zero temperatures. Measurements of binary solutions, composed of water and sodium chloride, were performed and compared with published data. Ternary solutions, consisting of water, sodium chloride and dimethyl sulfoxide, were also measured. The uniqueness and advantage achieved through the usage of this method are demonstrated when phase diagrams of complex cryopreservation solutions (CryoStor solutions including CryoStor Base and CryoStor 10) are generated. The temperature range where the method is utilized is either limited by the osmometry (0-3200 mmol/kg) or by the availability of liquid samples at sub-freezing temperatures. Modified methods will be required to address the limitation of osmolality measurements and the availability of sub-freezing liquid samples at lower temperatures.
包含抗冻保护剂(CPA)的溶液的相图在低温生物学研究中非常有用。这些图描绘了对应温度下溶液浓度的点:这是可以用来计算细胞在冷冻过程中体积响应的基本输入之一。然而,生成这样的图谱既昂贵又耗时。本研究提出了一种直接的方法来确定多个亚零温度下未冻结部分的溶液浓度。对由水和氯化钠组成的二元溶液进行了测量,并与已发表的数据进行了比较。还测量了由水、氯化钠和二甲基亚砜组成的三元溶液。当生成复杂的冷冻保存溶液(包括 CryoStor Base 和 CryoStor 10 的 CryoStor 溶液)的相图时,证明了通过使用该方法获得的独特性和优势。该方法的使用温度范围要么受到渗透压计的限制(0-3200mmol/kg),要么受到亚冷冻温度下液态样品可用性的限制。需要修改方法来解决渗透压测量的限制以及在较低温度下获得亚冷冻液态样品的可用性。