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首页> 外文期刊>Cryobiology: International Journal of Low Temperature Biology and Medicine >Statistical prediction of the vitrifiability and glass stability of multi-component cryoprotective agent solutions.
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Statistical prediction of the vitrifiability and glass stability of multi-component cryoprotective agent solutions.

机译:多组分防冻剂溶液的玻璃化性和玻璃稳定性的统计预测。

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Long-term biologic storage of articular cartilage has proven elusive due to cellular degradation over time or acute damage during attempts at cryopreservation. Vitrification is one option that may result in successful cryopreservation but difficulty with cryoprotective agent (CPA) toxicity at high concentrations of a single cryoprotectant has hindered development of successful protocols. This study was designed to determine the vitrifiability and glass stability of solutions containing combinations of commonly used CPAs and to document CPA interactions that occur. One hundred and sixty-four multi-CPA combination solutions of 6-9 M were evaluated for vitrifiability and glass stability using direct visualization after immersion in liquid nitrogen for 30 min and upon warming. Binary and ordinal logistic regression analysis was used to statistically analyze each CPA for its ability to vitrify and its effect on glass stability in multi-component CPA solutions. Propylene glycol had the greatest incremental contribution to vitrification while formamide had the least contribution. A threshold was established whereby the ability of a solution to vitrify could be determined by calculation. Glass stability was not as clearly defined due to variability in the results; however, contributions of interactions between CPAs to the glass stability of solutions were determined. This study provided values that predict if a solution will vitrify. Furthermore, the glass stability of solutions containing multiple CPAs do not behave as linear additions of binary solutions and interactions between CPAs have a significant effect on the glass stability of these solutions. These variables should be considered when designing vitrification solutions.
机译:由于随着时间的过去细胞降解或冷冻保存期间的急性损伤,关节软骨的长期生物存储已被证明是难以实现的。玻璃化是可能导致成功冷冻保存的一种选择,但是在单一冷冻保护剂的高浓度下冷冻保护剂(CPA)毒性的困难阻碍了成功方案的开发。这项研究旨在确定包含常用CPA组合的溶液的玻璃化性和玻璃稳定性,并记录发生的CPA相互作用。浸入液氮中30分钟并加热后,使用直接可视化方法评估了6-9 M的164种多CPA组合溶液的玻璃化性和玻璃稳定性。二进制和序数逻辑回归分析用于统计分析每种CPA的玻璃化能力及其对多组分CPA溶液中玻璃稳定性的影响。丙二醇对玻璃化的贡献最大,而甲酰胺的贡献最小。建立阈值,从而可以通过计算确定溶液玻璃化的能力。由于结果的可变性,玻璃稳定性没有明确定义。但是,确定了CPA之间相互作用对溶液玻璃稳定性的影响。这项研究提供了预测溶液是否会玻璃化的值。此外,包含多种CPA的溶液的玻璃稳定性不能像二元溶液的线性添加一样,并且CPA之间的相互作用对这些溶液的玻璃稳定性有重要影响。设计玻璃化溶液时应考虑这些变量。

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