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Mechanical and Failure Properties of Extracellular Matrix Sheets as a Function of Structural Protein Composition

机译:细胞外基质板的力学和失效特性随结构蛋白组成的变化

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摘要

The goal of this study was to determine how alterations in protein composition of the extracellular matrix (ECM) affect its functional properties. To achieve this, we investigated the changes in the mechanical and failure properties of ECM sheets generated by neonatal rat aortic smooth muscle cells engineered to contain varying amounts of collagen and elastin. Samples underwent static and dynamic mechanical measurements before, during, and after 30 min of elastase digestion followed by a failure test. Microscopic imaging was used to measure thickness at two strain levels to estimate the true stress and moduli in the ECM sheets. We found that adding collagen to the ECM increased the stiffness. However, further increasing collagen content altered matrix organization with a subsequent decrease in the failure strain. We also introduced collagen-related percolation in a nonlinear elastic network model to interpret these results. Additionally, linear elastic moduli correlated with failure stress which may allow the in vivo estimation of the stress tolerance of ECM. We conclude that, in engineered replacement tissues, there is a tradeoff between improved mechanical properties and decreased extensibility, which can impact their effectiveness and how well they match the mechanical properties of native tissue.
机译:这项研究的目的是确定细胞外基质(ECM)蛋白质组成的变化如何影响其功能特性。为了实现这一目标,我们研究了由新生大鼠主动脉平滑肌细胞产生的ECM床单的机械性能和失效性能的变化,这些新生大鼠主动脉平滑肌细胞经工程改造以包含不同量的胶原蛋白和弹性蛋白。在弹性蛋白酶消化之前,之中和之后30分钟对样品进行静态和动态机械测量,然后进行失效测试。显微成像用于测量两个应变水平下的厚度,以估计ECM板中的真实应力和模量。我们发现,向ECM中添加胶原蛋白可增加硬度。然而,胶原蛋白含量的进一步增加改变了基质的组织,继而降低了破坏应变。我们还在非线性弹性网络模型中引入了胶原相关的渗滤来解释这些结果。另外,线性弹性模量与破坏应力相关,这可以允许在体内估计ECM的应力耐受性。我们得出的结论是,在经过工程改造的替代组织中,机械性能的提高与延展性的降低之间存在折衷,这可能会影响其有效性以及与天然组织的机械性能匹配的程度。

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