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A Steady-State Mass Transfer Model of Removing CPAs from Cryopreserved Blood with Hollow Fiber Modules

机译:空心纤维模块从低温保存的血液中去除CPA的稳态传质模型

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摘要

Hollow fiber modules are commonly used to conveniently and efficiently remove cryoprotective agents (CPAs) from cryopreserved cell suspensions. In this paper, a steady-state model coupling mass transfers across cell and hollow fiber membranes is theoretically developed to evaluate the removal of CPAs from cryopreserved blood using hollow fiber modules. This steady-state model complements the unsteady-state model which was presented in our previous study. As the steady-state model, unlike the unsteady-state model, can be used to evaluate the effect of ultrafiltration flow rates on the clearance of CPAs. The steady-state model is validated by experimental results and then is compared with the unsteady-state model. Using the steady-state model, the effects of ultrafiltration flow rates, NaCl concentrations in dialysate, blood flow rates and dialysate flow rates on CPA concentration variation and cell volume response are investigated in detail. According to the simulative results, the osmotic damage of red blood cells (RBCs) can easily be reduced by increasing ultrafiltration flow rates, increasing NaCl concentrations in dialysate, increasing blood flow rates or decreasing dialysate flow rates.
机译:中空纤维模块通常用于方便,有效地从冷冻保存的细胞悬液中除去冷冻保护剂(CPA)。在本文中,理论上建立了耦合质量跨细胞膜和中空纤维膜传递的稳态模型,以评估使用中空纤维模块从冷冻保存的血液中去除CPA的情况。该稳态模型是对我们先前研究中提出的非稳态模型的补充。与非稳态模型不同,作为稳态模型,可用于评估超滤流速对CPA清除率的影响。通过实验结果验证了稳态模型,然后将其与非稳态模型进行了比较。使用稳态模型,详细研究了超滤流速,透析液中的NaCl浓度,血液流速和透析液流速对CPA浓度变化和细胞体积反应的影响。根据模拟结果,可以通过增加超滤流速,增加透析液中的NaCl浓度,增加血液流速或降低透析液流速来轻松减少红细胞(RBC)的渗透损伤。

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