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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Droplet based vitrification for cell aggregates: Numerical analysis
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Droplet based vitrification for cell aggregates: Numerical analysis

机译:基于液滴的细胞聚集体玻璃化:数值分析

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Cell aggregates represent the main format of cells existing in vivo and have been widely used as tissue and disease models in vitro. Nevertheless, the preservation of cell aggregates while maintaining their functionalities for off the -shelf applications is still challenging. Among various preservation methods, droplet-based vitrification exhibits superior advantages for the cryopreservation of cell aggregates; however, the physical mechanisms underlying droplet-based vitrification of cell aggregate using this method remain elusive. To address this issue, we proposed a voronoi model to construct two-dimensional geometric morphologies of cell aggregates and established a coupled physical model to describe the diffusion, heat transfer and crystallization processes during vitrification. Based on these models, we performed a numerical study on the variation and distribution of cryoprotectant (CPA) concentration, temperature and crystallization in cell aggregates during droplet-based vitrification. The results show that although cell membrane is not an obvious barrier in heat transfer, it affects the diffusion of CPA remarkably as a biologic film and thus the following crystallization in cell aggregates. The effective protection of CPA during vitrification occurs during the initial stage of CPA diffusion, thus a longer CPA loading time does not necessarily lead to significant decrease in crystallization, but rather may induce more toxicity to cells.
机译:细胞聚集体代表体内存在的细胞的主要形式,并且已被广泛用作体外组织和疾病模型。尽管如此,在保持其脱离的施工的情况下保存细胞聚集体仍然具有挑战性。在各种保存方法中,基于液滴的玻璃化对细胞聚集体的冷冻保存表现出优异的优点;然而,使用该方法的基于液滴基玻璃化的物理机制仍然难以实现。为了解决这个问题,我们提出了一种Voronoi模型,用于构建细胞聚集体的二维几何形态,并建立偶联物理模型以描述玻璃化期间的扩散,传热和结晶过程。基于这些模型,我们对液滴基玻璃化液体聚集体中冷冻保护剂(CPA)浓度,温度和结晶的变化和分布进行了数值研究。结果表明,尽管细胞膜不是传热中的明显屏障,但它会影响CPA的扩散,作为生物膜,因此在细胞聚集体中结晶后结晶。在CPA扩散的初始阶段期间,在玻璃化期间的有效保护在CPA扩散的初始阶段发生,因此更长的CPA加载时间不一定导致结晶的显着降低,而是可能引起对细胞的更多毒性。

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