Transilvania University of Brasov, Faculty of Civil Engineering, Department of Buil ding Services, Brasov, Romania.
University Politehnica of Bucharest, Faculty of Mechanical Engineering and Mechatronics, Thermotechnics, Engines, Thermal and Refrigeration Equipment Department, Bucharest, Romania.
Biochem Biophys Res Commun. 2021 Jun 25;559:42-47. doi: 10.1016/j.bbrc.2021.04.084. Epub 2021 Apr 29.
There is growing interest in the use of isochoric (constant volume) freezing for cryopreservation of biological matter. The goal of this study is to generate fundamental experimental data on the pressure temperature relation during the freezing of an isochoric system of aqueous solutions of two compounds, glucose and glycerol. Glucose and glycerol are commonly used as cryoprotectants in conventional isobaric (constant pressure) cryopreservation protocols. Earlier studies have shown that the increase in pressure during isochoric freezing is detrimental to biological matter and limits the range of temperatures in which isochoric freezing can be used for preservation to temperatures corresponding to pressures below 40 MPa. In physiological saline solution this pressure corresponds to a temperature of - 4 °C. Our new experimental data shows that the addition of 2 M glycerol to the saline solution lowers the temperature at which the isochoric freezing pressure is 40 MPa to -11 °C, 3 M glycerol to - 16.5 °C, and 4 M glycerol to - 24.5 °C, thereby substantially expending the range of temperatures in which cryopreservation by isochoric freezing can be practiced.
人们对等容(等体积)冷冻在生物物质冷冻保存中的应用越来越感兴趣。本研究的目的是为两种化合物(葡萄糖和甘油)的水溶液等容系统冷冻过程中的压力-温度关系生成基本的实验数据。葡萄糖和甘油通常用作传统等压(恒压)冷冻保存方案中的冷冻保护剂。早期的研究表明,等容冷冻过程中压力的增加对生物物质有害,并限制了等容冷冻可用于保存的温度范围,使其只能在对应于低于 40 MPa 压力的温度下使用。在生理盐水溶液中,这种压力对应于-4°C 的温度。我们的新实验数据表明,向生理盐水溶液中添加 2 M 甘油将等容冷冻压力为 40 MPa 的温度降低至-11°C,添加 3 M 甘油至-16.5°C,添加 4 M 甘油至-24.5°C,从而大大扩展了可以通过等容冷冻进行冷冻保存的温度范围。