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Integrated white-box models for designing freezing processes of human induced pluripotent stem cells considering diversity within a container

机译:用于设计人类诱导多能干细胞的冻结过程的集成白盒式模型,考虑到容器内的多样性

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This work presents a novel combination of white-box models that describes heat transfer, mass transfer, and intracellular ice formation during freezing of human induced pluripotent stem (hiPS) cells.The models can be applied to the design of freezing processes for MPS cells considering the diversity in cell quality within a container.In the case study, two design variables were defined, i.e., the cooling rate of a programmed freezer as an element of {1.0, 1.2, ..., 3.8, 4.0 K/min} and the diameter of a vial as an element of {5, 50, 150 mm}.The objective functions were defined as the maxima of cell volume change and intracellular ice crystal volume as the proxy for the cell survival rate.The Pareto optimal solutions were obtained as 5 mm as the vial diameter with all considered cooling rates; given a threshold of the ice crystal volume, the feasible range of the cooling rate was strongly influenced by the diameter of the vial.
机译:这项工作提出了一种新颖的白盒式模型组合,所述白色盒式模型结合,所述白色盒式模型在冻结人诱导的多能干(臀部)细胞期间的热传递,传质和细胞内冰形成。考虑到MPS细胞的冻结过程的设计可以应用于考虑到的冻结过程容器内的细胞质量的多样性。在案例研究中,定义了两个设计变量,即编程冷冻剂的冷却速率作为{1.0,1.2,...,3.8,4.0 k / min}的元素和作为{5,50,150mm}的元素的小瓶的直径定义为细胞体积变化和细胞内冰晶体积的最大值作为细胞存活率的代理。获得了帕累托最佳解决方案作为五毫米的小瓶直径,全部考虑冷却速率;鉴于冰晶体积的阈值,冷却速率的可行范围受小瓶的直径强烈影响。

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