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用于在基质上对贴壁哺乳动物细胞进行冷冻保存的定向冷冻法。

Directional freezing for the cryopreservation of adherent mammalian cells on a substrate.

作者信息

Bahari Liat, Bein Amir, Yashunsky Victor, Braslavsky Ido

机构信息

The Hebrew University of Jerusalem, Institute of Biochemistry, Food Science and Nutrition, The Robert H. Smith Faculty of Agriculture, Food and Environment, Rehovot, Israel.

出版信息

PLoS One. 2018 Feb 15;13(2):e0192265. doi: 10.1371/journal.pone.0192265. eCollection 2018.

Abstract

Successfully cryopreserving cells adhered to a substrate would facilitate the growth of a vital confluent cell culture after thawing while dramatically shortening the post-thaw culturing time. Herein we propose a controlled slow cooling method combining initial directional freezing followed by gradual cooling down to -80°C for robust preservation of cell monolayers adherent to a substrate. Using computer controlled cryostages we examined the effect of cooling rates and dimethylsulfoxide (DMSO) concentration on cell survival and established an optimal cryopreservation protocol. Experimental results show the highest post-thawing viability for directional ice growth at a speed of 30 μm/sec (equivalent to freezing rate of 3.8°C/min), followed by gradual cooling of the sample with decreasing rate of 0.5°C/min. Efficient cryopreservation of three widely used epithelial cell lines: IEC-18, HeLa, and Caco-2, provides proof-of-concept support for this new freezing protocol applied to adherent cells. This method is highly reproducible, significantly increases the post-thaw cell viability and can be readily applied for cryopreservation of cellular cultures in microfluidic devices.

摘要

成功冷冻保存附着在基质上的细胞,将有助于解冻后重要的汇合细胞培养物的生长,同时显著缩短解冻后的培养时间。在此,我们提出一种可控的慢速冷却方法,该方法结合了初始定向冷冻,然后逐渐冷却至-80°C,以稳健保存附着在基质上的细胞单层。使用计算机控制的低温载物台,我们研究了冷却速率和二甲基亚砜(DMSO)浓度对细胞存活的影响,并建立了最佳冷冻保存方案。实验结果表明,以30μm/秒的速度进行定向冰生长(相当于3.8°C/分钟的冷冻速率),然后以0.5°C/分钟的递减速率对样品进行逐步冷却,解冻后的活力最高。对三种广泛使用的上皮细胞系:IEC-18、HeLa和Caco-2进行高效冷冻保存,为这种应用于贴壁细胞的新冷冻方案提供了概念验证支持。该方法具有高度可重复性,显著提高了解冻后的细胞活力,并且可以很容易地应用于微流控设备中细胞培养物的冷冻保存。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f07d/5813933/0bdb816d2f41/pone.0192265.g001.jpg

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