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Assessment of liquid-cell membrane mass transfer resistance on growth kinetics in cell culture analog bioreactors

机译:液体细胞膜传质阻力对细胞培养类似物生物反应器中生长动力学的评估

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Characterization of the mass transfer limitations in bioreactors used in cell culture analog (CCA) systems is essential when designing and evaluating their performance. The majority of material transfer studies for gaseous substrates are based on the assumption that the primary resistance is at the gas/liquid interface. This study examines the use of hollow fiber membranes to enhance gas/liquid transport. The liquid/cell interfacial resistance is thus uncoupled from that of the gas/liquid and they can be examined separately to evaluate their potential impacts. A reduction in the mean velocity gradient while maintaining a constant substrate flux into the liquid resulted in a shift in the limiting resistance from the gas/liquid to liquid/cellular interface. This shift manifested itself as an increase in the Monad apparent half saturation constant for the chemo-autotrophic methanogenic microbial system selected as a convenient analog. The result of this work significantly influences the design and/or evaluation of reactors used in the BME research area related to animal surrogate or CCA systems. Although a reactor can be considered as well mixed, based on spatial invariance in cell density, we demonstrated that significant mass transfer resistance may remain at the liquid/cellular boundary layer.
机译:在设计和评估其性能时,表征细胞培养类似物(CCA)系统中使用的生物反应器中传质限制的特性至关重要。气态底物的大多数材料转移研究都是基于这样的假设,即主要阻力位于气/液界面。这项研究研究了使用中空纤维膜来增强气体/液体的传输。因此,液体/电池的界面电阻与气体/液体的界面电阻是不相关的,可以对其进行单独检查以评估其潜在影响。平均速度梯度的减小,同时保持恒定的基质通入液体的通量,导致极限阻力从气/液界面转移到液/细胞界面。对于作为自选营养的自养甲烷化微生物系统,该位移表现为Monad表观半饱和常数的增加。这项工作的结果极大地影响了BME研究领域中与动物替代或CCA系统有关的反应堆的设计和/或评估。尽管可以认为反应器混合良好,但基于细胞密度的空间不变性,我们证明了在液体/细胞边界层可能仍存在大量的传质阻力。

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