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Amorphous state stability of plant vitrification solutions

机译:植物玻璃化溶液的无定形态稳定性

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摘要

Two critical factors for obtaining high viable biological samples after cryopreservation by vitrification method are cryoprotectant glass-forming ability while cooling and the stability of its amorphous state during warming. The present work is devoted to the study of the amorphous state stability of plant vitrification solutions (PVS) by differential scanning calorimetry method. The objects of the study were PVS1 modified, PVS2, PVS3 modified, PVS4 and PVSN. The thermograms of PVSs, frozen in liquid nitrogen, were recorded at a warming rate of 0.5 deg/min. The glass transition temperatures of PVS1, PVS2 and PVS3 were –109.0°C, –115.3°C, and –93.9°C, respectively. Neither exo- nor endothermic peaks have been recorded, indicating no crystallization, at the cooling and the warming stages. PVS4 and PVSN thermograms, besides glass transition (–111.5°C and –110.0°C, correspondingly), showed crystallization from the amorphous state (devitrification) and ice melting peaks. Crystallization enthalpy of PVSN was 2.8 times higher compared to PVS4. This fact testifies that the crystalline phase was larger in PVSN compared to PVS4. It should be noted that crystallization in PVS4 and PVSN may be related to the low warming rate used during the experiment. At higher warming rates, this crystallization is likely to be avoided. Thus, PVS1, PVS2 and PVS3 have a high glass-forming ability and a stabile amorphous state. The amorphous state stability of PVS4 and PVSN is significantly lower compared to PVS1, PVS2, and PVS3.
机译:玻璃化法冷冻保存后获得高活生物样品的两个关键因素是冷却时冷冻保护剂玻璃形成能力和加热时其无定形状态的稳定性。本工作致力于利用差示扫描量热法研究植物玻璃化溶液(PVS)的无定形态稳定性。研究对象为PVS1改性、PVS2、PVS3改性、PVS4和PVSN。在液氮中冷冻的PVS的热谱图以0.5 deg/min的升温速率记录。PVS1、PVS2和PVS3的玻璃化转变温度分别为-109.0°C、-115.3°C和-93.9°C。外热峰和吸热峰均未记录到,表明在冷却和升温阶段没有结晶。PVS4 和 PVSN 热谱图除了玻璃化转变(相应的 –111.5°C 和 –110.0°C)外,还显示出非晶态结晶(析晶)和融冰峰。PVSN的结晶焓是PVS4的2.8倍。这一事实证明,与PVS4相比,PVSN中的晶相更大。应该注意的是,PVS4和PVSN中的结晶可能与实验中使用的低升温速率有关。在较高的升温速率下,这种结晶可能会被避免。因此,PVS1、PVS2 和 PVS3 具有较高的玻璃成型能力和稳定的非晶态。PVS4 和 PVSN 的非晶态稳定性明显低于 PVS1、PVS2 和 PVS3。

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