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The effect of glass-forming sugars on vesicle morphology and water distribution during drying

机译:玻璃糖在干燥过程中对囊泡形态和水分分布的影响

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摘要

Cryopreservation requires that stored materials be kept at extremely low temperatures and uses cryoprotectants that are toxic to cells at high concentrations. Lyopreservation is a potential alternative where stored materials can remain at room temperatures. That storage process involves desiccating cells filled with special glass-forming sugars. However, current desiccation techniques fail to produce viable cells, and researchers suspect that incomplete vitrification of the cells is to blame. To explore this hypothesis, a cell is modelled as a lipid vesicle to monitor the water content and membrane deformation during desiccation. The vesicle is represented as a moving, bending-resistant, inextensible interface and is tracked by a level set method. The vesicle is placed in a fluid containing a spatially varying sugar concentration field. The glass-forming nature is modelled through a concentration-dependent diffusivity and viscosity. It is found that there are optimal regimes for the values of the osmotic flow parameter and of the concentration dependence of the diffusivity to limit water trapping in the vesicle. Furthermore, it is found that the concentration dependencies of the diffusivity and viscosity can have profound effects on membrane deformations, which may have significant implications for vesicle damage during the desiccation process.
机译:冷冻保存要求将保存的材料保持在极低的温度下,并使用对细胞有高浓度毒性的冷冻保护剂。冷冻保存是一种潜在的替代方法,其中存储的材料可以保留在室温下。该存储过程涉及将充满特殊玻璃糖的细胞干燥。然而,目前的干燥技术无法产生活细胞,研究人员怀疑应归咎于细胞的不完全玻璃化。为了探索这一假设,将细胞建模为脂质囊泡,以监测干燥过程中的水含量和膜变形。囊泡被表示为可移动的,抗弯曲的,不可延伸的界面,并通过水平设定方法进行跟踪。将囊泡置于包含空间变化的糖浓度场的流体中。玻璃形成的性质是通过浓度相关的扩散率和粘度建模的。发现对于渗透流参数的值和扩散率的浓度依赖性存在最佳方案,以限制水在囊泡中的捕集。此外,发现扩散率和粘度的浓度依赖性可对膜变形产生深远影响,这可能对干燥过程中的囊泡损伤具有重要意义。

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