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Modeling and experimental studies of enhanced cooling by medical gauze for cell cryopreservation by vitrification

机译:医用纱布强化冷却用于玻璃化细胞冷冻的建模和实验研究

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摘要

Vitrification is considered as an important alternative approach to traditional slow freezing method for cryopreservation of cells. A typical cell vitrification procedure involves a non-equilibrium cooling process commonly accomplished in liquid nitrogen, while in which film boiling is believed to greatly hinder heat transfer surrounding the sample, resulting in incomplete vitrification or a much higher critical concentration. In this study, we developed a simple while effective approach, wrapping traditional French-type straw with medical gauze, to greatly enhance convective heat transfer during cooling by suppress film boiling. We further established a coupled heat transfer model for cooling and warming of cell suspensions to investigate the inherent thermodynamic mechanism in this approach. The model describes both the macroscale thermal distributions in extracellular solution and the microscale ice crystallization inside the cells. The simulation indicated that straws wrapped with medical gauze would increase cell survival subject to vitrification cryopreservation by significantly increasing the cooling rate to inhibit intracellular ice formation (IIF). Our experiments on human umbilical vein endothelial cells (HUVECs) further confirmed the predictions in that the cell survival rate was significantly increased by wrapping straws with medical gauze.
机译:玻璃化被认为是传统的慢速冷冻保存细胞的重要方法。典型的细胞玻璃化过程涉及通常在液氮中完成的非平衡冷却过程,而据信膜沸腾极大地阻碍了样品周围的热传递,导致玻璃化不完全或临界浓度高得多。在这项研究中,我们开发了一种简单而有效的方法,用医用纱布包裹传统的法式吸管,从而通过抑制薄膜沸腾来大大增强冷却过程中的对流传热。我们进一步建立了用于细胞悬浮液冷却和加热的耦合传热模型,以研究这种方法固有的热力学机理。该模型既描述了细胞外溶液中的宏观热分布,又描述了细胞内部的微观冰晶。模拟表明,用医用纱布包裹的吸管可通过显着提高冷却速率抑制细胞内冰形成(IIF)来提高玻璃化冷冻保存后的细胞存活率。我们在人脐静脉内皮细胞(HUVEC)上的实验进一步证实了以下预测:通过用医用纱布包裹吸管可以显着提高细胞存活率。

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