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Freeze-drying of mammalian cells using trehalose: Preservation of DNA integrity

机译:使用海藻糖冷冻干燥哺乳动物细胞:保持DNA完整性

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摘要

The aim of this study was to investigate preservation of biomolecular structures, particularly DNA, in freeze-dried fibroblasts, after loading with trehalose via freezing-induced uptake. Cells were freeze-dried with trehalose alone or in a mixture of albumin and trehalose. Albumin was added to increase the glass transition temperature and storage stability. No viable cells were recovered after freeze-drying and rehydration. FTIR studies showed that membrane phase behavior of freeze-dried cells resembles that of fresh cells. However, one day after rehydration membrane phase separation was observed, irrespective of the presence or absence of trehalose during freeze-drying. Freeze-drying did not affect the overall protein secondary structure. Analysis of DNA damage via single cell gel electrophoresis ('comet assay') showed that DNA damage progressively increased with storage duration and temperature. DNA damage was prevented during storage at 4 °C. It is shown that trehalose reduces DNA damage during storage, whereas addition of albumin did not seem to have an additional protective effect on storage stability (i.e. DNA integrity) despite the fact that albumin increased the glass transition temperature. Taken together, DNA in freeze-dried somatic cells can be preserved using trehalose as protectant and storage at or below 4 °C.
机译:这项研究的目的是研究通过冷冻诱导摄取海藻糖后冷冻干燥的成纤维细胞中生物分子结构,特别是DNA的保存。用单独的海藻糖或在白蛋白和海藻糖的混合物中将细胞冷冻干燥。添加白蛋白以增加玻璃化转变温度和储存稳定性。冷冻干燥和复水后没有回收活细胞。 FTIR研究表明,冻干细胞的膜相行为类似于新鲜细胞。然而,在复水后的一天观察到膜相分离,而与冷冻干燥过程中是否存在海藻糖无关。冷冻干燥不影响整体蛋白质二级结构。通过单细胞凝胶电泳(“彗星分析”)分析DNA损伤表明,DNA损伤随储存时间和温度的升高而逐渐增加。在4°C下储存期间,可防止DNA损坏。已经表明,海藻糖减少了储存过程中的DNA损伤,而添加白蛋白似乎对储存稳定性(即DNA完整性)没有附加的保护作用,尽管白蛋白增加了玻璃化转变温度。结合在一起,可以使用海藻糖作为保护剂保存冻干的体细胞中的DNA,并在4°C或以下存储。

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