肝细胞深度冷冻后的生化功能和恢复。

In Vitro Pub Date : 1984-11-01 DOI:10.1007/BF02619627
M J Gómez-Lechón, P Lopez, J V Castell
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引用次数: 20

摘要

本研究旨在确定肝细胞低温保存的最佳条件。分析了两种不同的冷冻程序:慢速冷冻(SFR)(-2℃/min降至-30℃,然后快速冷冻至-196℃)和快速冷冻(FFR)(将试管直接冷冻至-196℃:-39℃/min)。细胞在含有10%二甲亚砜(DMSO)的胎牛血清中冷冻。在37℃快速解冻后,稀释和去除冷冻保护剂,细胞被镀,并根据几个参数作为细胞冷冻保存的最佳标准。培养24 h后,FFR细胞未见明显超微结构损伤。电镀效率和铺展与对照相似。由丙酮酸和果糖产生的糖异生,由胰高血糖素和地塞米松诱导的酪氨酸氨基转移酶,尿素的产生和血浆蛋白的合成与对照培养相似。与SFR法相比,FFR法似乎可以保存最好的肝细胞。
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Biochemical functionality and recovery of hepatocytes after deep freezing storage.

The present study was undertaken to define the conditions for optimal cryopreservation of hepatocytes. Two different freezing procedures were analyzed: a slow freezing rate (SFR) (-2 degrees C/min down to -30 degrees C and then quick freezing to -196 degrees C) and a fast freezing rate (FFR) (direct freezing of tubes to -196 degrees C: -39 degrees C/min). Cells were frozen in fetal bovine serum containing 10% Dimethyl sulfoxide (DMSO). After rapid thawing at 37 degrees C, followed by dilution and removal of the cryoprotectant, cells were plated and several parameters were followed as criteria for optimal cryopreservation of cells. The FFR cells showed no apparent ultrastructural damage after 24 h of culture. Plating efficiency and spreading were similar as controls. Gluconeogenesis from pyruvate and fructose, tyrosine amino transferase induction by glucagon and dexamethasone, urea production, and plasma protein synthesis of FFR cells were similar to those found in control cultures. The FFR procedure, in comparison to the SFR method, seemed to render the best preserved hepatocytes.

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