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Dual scale biomechanics of extracellular matrix proteins probed by Brillouin scattering and quasistatic tensile testing

机译:布里渊散射和准静态拉伸测试探测细胞外基质蛋白的双尺度生物力学

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The biomechanics of living tissues are critical to normal tissue function and disturbances in these properties are widely implicated in aging and disease. Protein fibres of the extracellular matrix (collagen and elastin) are the fundamental mechanical structures in connective tissues such as bone, cartilage and vasculature. We applied Brillouin light scattering (BLS) spectroscopy and quasistatic stress-strain testing to the study of the mechanics and structure of collagen and elastin fibres purified from connective tissues. BLS probes mechanical properties on a microscopic scale in biological tissues and thereby providing insights into structure-function relationships under normal and pathological conditions. The sensitivity of BLS measurements to fibre structure and hydration was investigated using samples mounted onto reflective substrates. We obtained a complete characterization of the mechanical tensor and elastic moduli which could be compared with complementary data from quasistatic stress-strain measurements at different hydration levels, hence giving the full description of fibre viscoelasticity.
机译:活组织的生物力学对正常的组织功能至关重要,而这些特性的紊乱与衰老和疾病密切相关。细胞外基质(胶原蛋白和弹性蛋白)的蛋白质纤维是结缔组织(如骨骼,软骨和脉管系统)中的基本机械结构。我们应用布里渊光散射(BLS)光谱和准静态应力应变测试来研究结缔组织中纯化的胶原蛋白和弹性蛋白纤维的力学和结构。 BLS在微观尺度上探测生物组织的机械性能,从而洞察正常和病理条件下的结构功能关系。使用安装在反射基材上的样品研究了BLS测量对纤维结构和水合的敏感性。我们获得了机械张量和弹性模量的完整表征,可以与在不同水化水平下的准静态应力应变测量得到的补充数据进行比较,从而全面描述了纤维的粘弹性。

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