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大鼠和兔可移植源的过冷保存:初步报告。

Supercooling Storage for the Transplantable Sources From the Rat and the Rabbit: A Preliminary Report.

作者信息

Sultana T, Lee J I, Park J H, Lee S

机构信息

Regenerative Medicine Laboratory, Center for Stem Cell Research, Department of Biomedical Science and Technology, Institute of Biomedical Science and Technology, Seoul, Republic of Korea.

Regenerative Medicine Laboratory, Center for Stem Cell Research, Department of Biomedical Science and Technology, Institute of Biomedical Science and Technology, Seoul, Republic of Korea; Department of Veterinary Obstetrics and Theriogenology, College of Veterinary Medicine, Konkuk University, Seoul, Republic of Korea.

出版信息

Transplant Proc. 2018 May;50(4):1178-1182. doi: 10.1016/j.transproceed.2018.01.046.

Abstract

BACKGROUND

It is necessary to store the transplantable sources for a certain period during the variety of manipulation processing steps. The method used to preserve (depending on conditions of solvent, temperature, periods, density, and physical impulse, etc.) can affect the safety and efficacy of the samples. Supercooling refers to a phenomenon of lowering the temperature below its freezing point without freezing. We investigated the possibility of supercooling for the preservation of cells and organs according to the limited conditions.

METHOD

The viability of mesenchymal stem cells (MSCs) derived from the intra-abdominal fat of the New Zealand white rabbit were observed, and the neonatal rat kidneys were maintained in histidine-tryptophan-ketoglutarate solution and stored at various temperatures for 48 hours. The supercooling refrigerator was used for -2 °C and -5 °C in controlled preservation conditions. We observed and compared histopathological changes of samples at each temperature condition.

RESULTS

As time passed, the number of rabbit MSCs decreased in each group with storage temperature. At room temperature, the number of viable MSCs decreased rapidly, but the number of MSCs tended to decrease slowly in the cooling and supercooling groups. The rat kidneys preserved on supercooling temperature at -2 °C tended to have the least damage on the cortex and medulla parenchyma.

CONCLUSIONS

The difference in damage of transplantable sources by storage temperature conditions is the evidence that effectiveness may depend on the storage method. It is necessary to determine further optimal supercooling temperature of the preservation methods with various cells, tissues, and organs in the future.

摘要

背景

在各种操作处理步骤中,有必要将可移植源保存一定时间。所采用的保存方法(取决于溶剂条件、温度、时间、密度和物理冲击等)会影响样本的安全性和有效性。过冷是指温度降至冰点以下而不结冰的现象。我们根据有限的条件研究了过冷保存细胞和器官的可能性。

方法

观察源自新西兰白兔腹部脂肪的间充质干细胞(MSC)的活力,并将新生大鼠肾脏置于组氨酸 - 色氨酸 - 酮戊二酸溶液中,在不同温度下保存48小时。在可控的保存条件下,使用过冷冰箱在 -2°C和 -5°C下保存。我们观察并比较了各温度条件下样本的组织病理学变化。

结果

随着时间推移,每组中兔MSC的数量随保存温度下降。在室温下,存活的MSC数量迅速减少,但在冷却和过冷组中,MSC数量下降趋势较慢。在 -2°C过冷温度下保存的大鼠肾脏,其皮质和髓质实质的损伤往往最小。

结论

保存温度条件对可移植源损伤的差异证明有效性可能取决于保存方法。未来有必要进一步确定针对各种细胞、组织和器官的保存方法的最佳过冷温度。

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