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Hemoglobin-based oxygen carrier and convection enhanced oxygen transport in a hollow fiber bioreactor

机译:基于血红蛋白的氧气载体和对流增强了中空纤维生物反应器中的氧气传输

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A mathematical model was developed to study O_ 2 transport in a convection enhanced hepatic hollow fiber (HF) bioreactor, with hemoglobin-based O_ 2 carriers (HBOCs) present in the flowing cell culture media stream of the HF lumen. In this study, four HBOCs were evaluated: PEG-conjugated human hemoglobin (MP4), human hemoglobin (hHb), bovine hemoglobin (BvHb) and polymerized bovine hemoglobin (PolyBvHb). In addition, two types of convective flow in the HF extra capillary space (ECS) were considered in this study. Starling flow naturally occurs when both of the ECS ports are closed. If one of the ECS ports is open, forced convective flow through the ECS will occur due to the imposed pressure difference between the lumen and ECS. This type of flow is referred to as cross-flow in this work, since some of the fluid entering the HF lumen will pass across the HF membrane and exit via the open ECS port. In this work, we can predict the dissolved O_ 2 concentration profile as well as the O_ 2 transport flux in an individual HF of the bioreactor by solving the coupled momentum and mass transport equations. Our results show that supplementation of the cell culture media with HBOCs can dramatically enhance O_ 2 transport to the ECS (containing hepatocytes) and lead to the formation of an in vivo-like O_ 2 spectrum for the optimal culture of hepatocytes. However, both Starling flow and cross-flow have a very limited effect on O_ 2 transport in the ECS. Taken together, this work represents a novel predictive tool that can be used to design or analyze HF bioreactors that expose cultured cells to defined overall concentrations and gradients of O_ 2.
机译:建立了数学模型以研究对流增强型肝中空纤维(HF)生物反应器中的O_2转运,并在HF管腔的流动细胞培养基流中存在基于血红蛋白的O_2载体(HBOC)。在这项研究中,评估了四种HBOC:PEG缀合的人血红蛋白(MP4),人血红蛋白(hHb),牛血红蛋白(BvHb)和聚合牛血红蛋白(PolyBvHb)。此外,在这项研究中考虑了HF额外毛细管空间(ECS)中的两种对流流动。当两个ECS端口都关闭时,自然会出现Starling流。如果ECS端口之一打开,由于管腔和ECS之间的压力差,将发生通过ECS的强制对流。由于某些进入HF管腔的流体将穿过HF膜并通过开放的ECS端口流出,因此在这种工作中将这种类型的流称为错流。在这项工作中,我们可以通过求解耦合的动量和质量传输方程来预测生物反应器单个HF中溶解的O_2浓度分布以及O_2传输通量。我们的结果表明,用HBOCs补充细胞培养基可以显着增强O_2向ECS(包含肝细胞)的转运,并导致形成体内样的O_2光谱以进行肝细胞的最佳培养。但是,Starling流和错流对ECS中O_2的传输影响非常有限。综上所述,这项工作代表了一种新颖的预测工具,可用于设计或分析HF生物反应器,从而使培养的细胞暴露于确定的总体浓度和O_2梯度。

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