Ultra-High Speed Vitrification of Prostate Cancer Cells Based on Thin Film Evaporation

F. Su, Yiming Fan, He Xu, N. Zhao, Yangbo Deng, Yulong Ji, Hongbin Ma
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Abstract

Thin film evaporation is an efficient phase change heat transfer style, and could achieve ultra-high cooling rate if it was applied for cells vitrification. In this paper, an experimental study for prostate cancer cells vitrification was done. The cells ultra-high speed freezing method was based on thin film evaporation of liquid nitrogen. In order to examine the feasibility of the new method, the comparison experiments, in which the other two generic approaches of cell cryopreservation were used, were done. The methods were respectively the equilibrium freezing method and the open pulled straws vitrification method. At the same time, the influences of the concentration of cryoprotectant on cooling rate and cell survival rate were analyzed. The results showed that the ultra-high speed freezing method based on thin film evaporation can obtain higher cooling rate and better cell survival rate than the other two conventional cryopreservation methods. It preliminarily proved the feasibility of this method applied to the cells vitrification process. In addition, both the cooling rate and the cell survival rate are affected by the concentration of the cryoprotectant in the cell suspension. The cooling rate decreases with the concentration of the cryoprotectant increasing, but cell survival rate increases first and decrease afterwards with the increase of the concentration of the cryoprotectant, in which an optimum value exists. This study will promote the practicality of the new ultra-fast cell freezing method.
基于薄膜蒸发的前列腺癌细胞超高速玻璃化
薄膜蒸发是一种高效的相变传热方式,应用于细胞玻璃化可以实现超高的冷却速率。本文进行了前列腺癌细胞玻璃化的实验研究。细胞超高速冷冻方法是基于液氮薄膜蒸发的方法。为了检验新方法的可行性,对其他两种细胞冷冻保存方法进行了比较实验。方法分别为平衡冷冻法和开拔吸管玻璃化法。同时分析了冷冻保护剂浓度对冷却速率和细胞存活率的影响。结果表明,基于薄膜蒸发的超高速冷冻方法比其他两种常规冷冻方法可获得更高的冷却速度和更好的细胞存活率。初步证明了该方法应用于细胞玻璃化过程的可行性。此外,细胞悬浮液中冷冻保护剂的浓度对冷却速率和细胞存活率都有影响。随着冷冻保护剂浓度的增加,冷却速率降低,但细胞存活率随冷冻保护剂浓度的增加先升高后降低,并存在一个最佳值。本研究将促进超高速细胞冷冻新方法的实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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