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Influence of neighboring adherent cells on laminar flow induced shear stress in vitro—A systematic study

机译:邻近贴壁细胞对层流诱导的体外切应力的影响—系统研究

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摘要

Cells experience forces if subjected to laminar flow. These forces, mostly of shear force character, are strongly dependent not only on the applied flow field itself but also on hydrodynamic effects originating from neighboring cells. This particularly becomes important for the interpretation of data from in vitro experiments in flow chambers without confluent cell layers. By employing numerical Finite Element Method simulations of such assemblies of deformable objects under shear flow, we investigate the occurring stress within elastic adherent cells and the influence of neighboring cells on these quantities. For this, we simulate single and multiple adherent cells of different shapes fixed on a solid substrate under laminar flow parallel to the substrate for different velocities. We determine the local stress within the cells close to the cell-substrate-interface and the overall stress of the cells by surface integration over the cell surface. Comparing each measurand in the case of a multiple cell situation with the corresponding one of single cells under identical conditions, we introduce a dimensionless influence factor. The systematic variation of the distance and angle between cells, where the latter is with respect to the flow direction, flow velocity, Young's modulus, cell shape, and cell number, enables us to describe the actual influence on a cell. Overall, we here demonstrate that the cell density is a crucial parameter for all studies on flow induced experiments on adherent cells in vitro.
机译:如果经受层流,细胞会经受力。这些力,大部分具有剪切力特性,不仅强烈地取决于所施加的流场本身,而且还极大地取决于源自相邻单元的流体动力效应。这对于解释没有融合细胞层的流动室中的体外实验数据特别重要。通过使用数值有限元方法对此类可变形物体在剪切流作用下的组装进行数值模拟,我们研究了弹性粘附细胞内发生的应力以及相邻细胞对这些量的影响。为此,我们模拟了在平行于不同速度的层流下,固定在固体基质上的不同形状的单个和多个贴壁细胞。我们通过细胞表面上的表面整合来确定细胞内靠近细胞-底物-界面的局部应力和细胞的整体应力。在相同条件下,将多单元情况下的每个被测量对象与单个单元中的对应一个进行比较,我们引入了无量纲的影响因子。细胞之间的距离和角度的系统变化(后者相对于流动方向,流速,杨氏模量,细胞形状和细胞数量)使我们能够描述对细胞的实际影响。总的来说,我们在这里证明细胞密度是所有体外贴壁细胞流诱导实验研究的关键参数。

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