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Mechanical Properties of the Extracellular Matrix of the Aorta Studied by Enzymatic Treatments

机译:酶法研究主动脉细胞外基质的力学性能

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摘要

The microarchitecture of different components of the extracellular matrix (ECM) is crucial to our understanding of the properties of a tissue. In the study presented here, we used a top-down approach to understand how the interplay among different fibers determines the mechanical properties of real tissues. By selectively removing different elements of the arterial wall, we were able to measure the contribution of the different constituents of the ECM to the mechanical properties of the whole tissue. Changes in the network structure were imaged with the use of two-photon microscopy. We used an atomic force microscope to measure changes in the mechanical properties by performing nanoindentation experiments. We show that although the removal of a key element of the ECM reduced the local stiffness by up to 50 times, the remaining tissue still formed a coherent network. We also show how this method can be extended to study the effects of cells on real tissues. This new (to our knowledge) way of studying the ECM will not only help physicists gain a better understanding of biopolymers, it will be a valuable tool for biomedical researchers studying processes such as wound healing and cervix ripening.
机译:细胞外基质(ECM)的不同组成部分的微体系结构对于我们对组织特性的理解至关重要。在这里提出的研究中,我们使用了自上而下的方法来了解不同纤维之间的相互作用如何决定真实组织的机械性能。通过有选择地去除动脉壁的不同元素,我们能够测量ECM的不同成分对整个组织的机械性能的影响。网络结构的变化用双光子显微镜成像。我们使用原子力显微镜通过进行纳米压痕实验来测量机械性能的变化。我们显示,尽管去除了ECM的关键元件,其局部刚度降低了多达50倍,但其余组织仍形成了连贯的网络。我们还展示了如何扩展该方法以研究细胞对真实组织的影响。这种(据我们所知)研究ECM的新方法不仅将帮助物理学家更好地了解生物聚合物,还将成为生物医学研究人员研究伤口愈合和子宫颈成熟等过程的宝贵工具。

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