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Designing a bioreactor for regenerating high aspect ratio tissues.

机译:设计用于再生高长宽比组织的生物反应器。

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Scope and Method of Study. Many tissues have a high aspect ratio (large surface area relative to the thickness of the matrix) and contain multiple cell types. Effect of flow-through configuration within these systems has not been studied. In these scale-up systems, non-ideal fluid distribution conditions could arise from two possible factors: channeling, and dead zones. This study utilized a circular parallel plate reactor that allows large tissue scaffolds. The objective of this study was to understand the flow distribution in a reactor for growing large tissues (10 cm diameter and 2 mm thick) in vitro and to evaluate the nutrient distribution with consumption for three different cell types (namely hepatocytes, smooth muscle cells and chondrocytes). Simulations were performed using CFD packages CFX 11 for flow distribution without porous structure and Comsol Multiphysics 3.4 for flow distribution with nutrient consumption in the porous structure. The flow distribution simulations were validated by doing residence time distribution experiments.;Findings and Conclusions. (1) The inlet and outlet locations affect the fluid distribution. (2) Presence of porous structure increased the non ideal flow patterns in the system. (3) Location of inlet and outlet over the porous region resulted in high shear stresses. (4) High shear stress regions were eliminated and better nutrient distribution was observed when the inlet and outlet were moved away from the porous region (5) Nutrients flow rate requirements for the cells to grow varied for different cell types.
机译:研究范围和方法。许多组织具有高的纵横比(相对于基质的厚度而言较大的表面积)并包含多种细胞类型。尚未研究这些系统中流通配置的影响。在这些放大系统中,不理想的流体分配条件可能由两个可能的因素引起:窜流和死区。这项研究利用了圆形平行板反应器,该反应器可用于大型组织支架。这项研究的目的是了解反应器中体外生长大组织(直径为10 cm直径和2 mm厚)的流量分布,并评估三种不同细胞类型(即肝细胞,平滑肌细胞和软骨细胞)。使用CFD软件包CFX 11进行模拟,以进行无孔结构的流量分配,并使用Comsol Multiphysics 3.4进行有孔结构中养分消耗的流量分配。通过进行停留时间分布实验验证了流动分布模拟。结论与结论。 (1)入口和出口位置会影响流体分布。 (2)多孔结构的存在增加了系统中的非理想流型。 (3)在多孔区域上的入口和出口的位置导致高剪切应力。 (4)当入口和出口移离多孔区域时,消除了高剪切应力区域,并观察到更好的养分分布。(5)细胞生长所需的营养物流速因不同细胞类型而异。

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