首页> 外文期刊>Journal of biomaterials and tissue engineering >Influence of the Extracellular Matrix Stiffness in Tissue-Engineered Constructs on Deformed Cell Shapes Under Large Compressive Deformations
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Influence of the Extracellular Matrix Stiffness in Tissue-Engineered Constructs on Deformed Cell Shapes Under Large Compressive Deformations

机译:组织工程构造中的细胞外基质刚度对大压缩变形下变形细胞形状的影响

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Production of tissue-engineered constructs could sometimes involve delivery of compressive mechanical stimulations to the constructs in order to promote synthesis of extracellular matrix (ECM) components or cell differentiation. Here we developed a set of finite element models to determine how could the ECM/cells stiffness ratio influence the extent of shape distortions of initially round embedded cells, which has been quantified by means of the cell shape index (CSI). We found that below a 12% construct strain threshold, the ECM/cells stiffness ratio did not appear to influence the CSI and hence the extent of cellular distortion in the construct. For greater construct strains, the mean CSI of cells decreased (i.e., cells became more flattened and stretched) quadratically with the level of the global ECM-cell strain. For ECMs that were softer than the cells, the CSI decreased slightly, by no more than 0.1, even under very large construct strains (>50% strain), so a roughly round or oval cell shape was overall maintained. For stiff ECMs which were 10-times or 100-times stiffer than the embedded cells, the CSI dropped substantially with the extent of global ECM-cell strains, by up to approximately 0.4 and 0.5, respectively, so cells became considerably flattened and stretched. These data are useful for predicting cell shape distortions in construct compression experiments, where ECM/cell stiffness ratios can be empirically evaluated.
机译:组织工程化构建体的生产有时可能涉及向构建体传递压缩机械刺激,以促进细胞外基质(ECM)成分的合成或细胞分化。在这里,我们开发了一组有限元模型,以确定ECM /单元的刚度比如何影响初始圆形嵌入单元的形状变形程度,已通过单元形状指数(CSI)对其进行了量化。我们发现,低于12%的构建体应变阈值时,ECM /单元的刚度比似乎不会影响CSI,因此不会影响构建体中细胞变形的程度。对于更大的构建体菌株,细胞的平均CSI随总体ECM细胞菌株的水平呈二次方下降(即,细胞变得更加扁平和伸展)。对于比细胞软的ECM,即使在非常大的构建株(> 50%株)下,CSI也会略微下降(不超过0.1),因此总体上保持了大致圆形或椭圆形的细胞形状。对于比嵌入式细胞硬10倍或100倍的硬ECM,CSI随全球ECM细胞应变的程度而显着下降,分别下降了大约0.4和0.5,因此细胞变得相当扁平和拉伸。这些数据可用于预测构建体压缩实验中的细胞形状变形,在该实验中可以凭经验评估ECM /细胞刚度比。

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