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Cellular Nutrition in Complex Three-Dimensional Scaffolds: A Comparison between Experiments and Computer Simulations

机译:复杂三维支架中的细胞营养:实验与计算机模拟之间的比较。

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摘要

Studies on bone cell ingrowth into synthetic, porous three-dimensional (3D) implants showed difficulties arising from impaired cellular proliferation and differentiation in the core region of these scaffolds with increasing scaffold volume in vitro. Therefore, we developed an in vitro perfusion cell culture module, which allows the analysis of cells in the interior of scaffolds under different medium flow rates. For each flow rate the cell viability was measured and compared with results from computer simulations that predict the local oxygen supply and shear stress inside the scaffold based on the finite element method. We found that the local cell viability correlates with the local oxygen concentration and the local shear stress. On the one hand the oxygen supply of the cells in the core becomes optimal with a higher perfusion flow. On the other hand shear stress caused by high flow rates impedes cell vitality, especially at the surface of the scaffold. Our results demonstrate that both parameters must be considered to derive an optimal nutrient flow rate.
机译:骨细胞向合成的多孔三维(3D)植入物中的向内生长研究表明,随着体外支架体积的增加,这些支架的核心区域的细胞增殖和分化受损将导致困难。因此,我们开发了一种体外灌注细胞培养模块,该模块可以分析不同培养基流速下支架内部的细胞。对于每种流速,测量细胞活力并与计算机模拟的结果进行比较,该计算机模拟基于有限元方法预测支架内部的局部氧气供应和剪切应力。我们发现,局部细胞活力与局部氧浓度和局部切应力相关。一方面,随着更高的灌注流量,核心中细胞的氧气供应变得最佳。另一方面,由高流速引起的剪切应力阻碍了细胞活力,特别是在支架表面。我们的结果表明,必须考虑两个参数才能得出最佳的养分流速。

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