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Improved cryopreservation of human hepatocytes using a new xeno free cryoprotectant solution

机译:使用一种新的无异种冷冻保护剂溶液改善了人类肝细胞的冷冻保存

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摘要

AIM: To optimize a xeno-free cryopreservation protocol for primary human hepatocytes.METHODS: The demand for cryopreserved hepatocytes is increasing for both clinical and research purposes. Despite several hepatocyte cryopreservation protocols being available, improvements are urgently needed. We first compared controlled rate freezing to polystyrene box freezing and did not find any significant change between the groups. Using the polystyrene box freezing, we compared two xeno-free freezing solutions for freezing of primary human hepatocytes: a new medium (STEM-CELLBANKER, CB), which contains dimethylsulphoxide (DMSO) and anhydrous dextrose, both permeating and non-permeating cryoprotectants, and the frequently used DMSO - University of Wisconsin (DMSO-UW) medium. The viability of the hepatocytes was assessed by the trypan blue exclusion method as well as a calcein-esterase based live-dead assay before and after cryopreservation. The function of the hepatocytes was evaluated before and after cryopreservation by assessing enzymatic activity of 6 major cytochrome P450 isoforms (CYPs): CYP1A2, CYP2C9, CYP2C19, CYP2D6, CYP3A4 and CYP3A7.RESULTS: The new cryoprotectant combination preserved hepatocyte viability significantly better than the standard DMSO-UW protocol (P < 0.01). There was no significant difference in viability estimation between both the trypan blue (TB) and the Live-Dead Assay methods. There was a correlation between viability of fresh hepatocytes and the difference in cell viability between CB and DMSO protocols (r2 = 0.69) using the TB method. However, due to high within-group variability in the activities of the major CYPs, any statistical between-group differences were precluded. Cryopreservation of human hepatocytes using the cryoprotectant combination was a simple and xeno-free procedure yielding better hepatocyte viability. Thus, it may be a better alternative to the standard DMSO-UW protocol. Estimating CYP activities did not seem to be a relevant way to compare hepatocyte function between different groups due to high normal variability between different liver samples.CONCLUSION: The cryoprotectant combination may be a better alternative to the standard DMSO-UW protocol in primary human hepatocyte cryopreservation.
机译:目的:为人类原代肝细胞优化无异种冷冻保存方法。方法:出于临床和研究目的,对冷冻保存的肝细胞的需求正在增加。尽管可获得几种肝细胞冷冻保存方案,但仍迫切需要改进。我们首先将控制速率冷冻与聚苯乙烯盒式冷冻进行了比较,但两组之间没有发现任何显着变化。使用聚苯乙烯箱式冷冻,我们比较了两种用于冷冻人原代肝细胞的无异种冷冻溶液:一种新培养基(STEM-CELLBANKER,CB),其中含有二甲亚砜(DMSO)和无水右旋糖,既有渗透性的也有非渗透性的冷冻保护剂,以及常用的DMSO-威斯康星大学(DMSO-UW)介质。冷冻保存之前和之后,通过台盼蓝排除法以及基于钙黄绿素-酯酶的活死试验评估肝细胞的活力。通过评估6种主要细胞色素P450亚型(CYP)的酶活性来评估冷冻保存之前和之后的肝细胞功能。标准DMSO-UW协议(P <0.01)。锥虫蓝(TB)和活死分析方法之间的生存力估算没有显着差异。使用TB方法,新鲜肝细胞的活力与CB和DMSO方案之间的细胞活力差异之间存在相关性(r 2 = 0.69)。但是,由于主要CYP的活性在组内具有较高的变异性,因此不排除任何统计上的组间差异。使用冷冻保护剂组合冷冻保存人肝细胞是一种简单且无异种过程,可产生更好的肝细胞生存力。因此,它可能是标准DMSO-UW协议的更好替代方案。由于不同肝样本之间的正常差异很大,因此估计CYP活性似乎不是比较不同组之间肝细胞功能的相关方法。结论:在原代人肝细胞冷冻保存中,冷冻保护剂组合可能是标准DMSO-UW方案的更好替代方案。

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