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纳米晶体二氧化减少了冷保存溶液中的再结晶
Olena Bobrova1, Oksana Falko2, Anna Polyakova2
1Institute for Problems of Cryobiology and Cryomedicine of the National Academy of Sciences of Ukraine, 23 Pereyaslavska str., 61016, Kharkiv, Ukraine; Crop Research Institute, Drnovska 507, 16106, Prague 6, Czech Republic.
Cryobiology
|November 18, 2024
概括
二氧化纳米粒子 (CeO2 NPs) 改变了冰的结晶和融化在冷保护溶液中. 优化的度增强了玻璃化,减少了再结晶,提高了冷保存的效率.
科学领域:
- 材料科学 材料科学 材料科学
- 生物物理学的生物物理.
- 纳米技术 纳米技术
背景情况:
- 纳米晶体二氧化 (CeO2 NPs) 提供对氧化应激和低温的保护.
- 了解CeO2 NP溶液中的相结构转换是冷保存的关键.
- 冷保存旨在在低温下保存生物材料,通常使用冷保护剂.
研究的目的:
- 研究CeO2纳米颗粒对水溶液中的相结构转换的影响.
- 分析CeO2NP对冷保护介质结晶和融化行为的影响.
- 评估各种冷保存溶液中CeO2NP的潜在冷保护作用.
主要方法:
- 不同扫描热量计 (DSC) 分析相位过渡.
- 热力学分析 (TMA) 用于研究热性质.
- 在水溶液和冷保护剂中测试CeO2NP的不同度.
主要成果:
- CeO2 NPs显著改变了水中的化和结晶温度和度.
- 低CeO2 NP度促进了结晶;高度抑制了它,减少了超冷却.
- 在二甲基硫氧化物 (Me2SO) 溶液中,CeO2NP增加了玻璃过渡温度,减少了再结晶,增强了玻璃化.
结论:
- CeO2 NPs调节了冷保护溶液的热物理特性,增强了玻璃化和减少了再结晶.
- 这些效应表明了冷保存效率的潜在改进.
- 优化CeO2 NP度对于在冷保存协议中的有效应用至关重要.
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