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首页> 外文期刊>Biotechnology Letters >Evaluation of the mass transfer rate using computer simulation in a three-dimensional interwoven hollow fiber-type bioartificial liver
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Evaluation of the mass transfer rate using computer simulation in a three-dimensional interwoven hollow fiber-type bioartificial liver

机译:三维交织中空纤维型生物型肝脏计算机模拟评价传质速率

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ObjectivesTo determine the most efficient design of a hollow fiber-based bioreactor device for a bioartificial liver support system through comparative bioengineering evaluations.ResultsWe compared two types of hollow fiber-based bioreactors, the interwoven-type bioreactor (IWBAL) and the dialyzer-type bioreactor (DBAL), by evaluating the overall mass transfer coefficient (K) and the convective coefficient (X). The creatinine and albumin mass transfer coefficients and convective coefficients were calculated using our mathematical model based on the homoporous theory and the modified Powell method. Additionally, using our model, we simulated the mass transport efficiency in clinical-scale BALs. The results of this experiment demonstrate that the mass transfer coefficients for creatinine and albumin increased proportionally with velocity with the IWBAL, and were consistently greater than that found with the DBAL. These differences were further enhanced in the simulation of the large-scale model.ConclusionsOur findings indicate that the IWBAL with its unique 30 degrees cross hollow fiber design can provide greater solute removal and more efficient metabolism when compared to the conventional DBAL design.
机译:Objectivesto通过比较生物工程评估确定用于生物肝脏支持系统的中空纤维的生物反应器装置的最有效的设计。方法比较了两种类型的中空纤维基生物反应器,交织型生物反应器(IWBAL)和透析型生物反应器(dbal),通过评估整体传质系数(k)和对流系数(x)。基于仿理论和改进的鲍威尔方法,使用我们数学模型计算肌酐和白蛋白传质系数和对流系数。此外,使用我们的模型,我们模拟了临床规模BALS的质量运输效率。该实验的结果表明,肌酐和白蛋白的传质系数随着IWBAL的速度比例地增加,并且始终大于用DBAL发现的速度。在大规模模型的模拟中进一步增强了这些差异。结论调查结果表明,与传统的DBAL设计相比,IWBAL具有独特的30度交叉中空纤维设计可以提供更大的溶质去除和更有效的代谢。

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