Kohn Stephan, Leichsenring Kay, Kuravi Ramachandra, Ehret Alexander E, Böl Markus
Institute of Mechanics and Adaptronics, Technische Universität Braunschweig, Braunschweig D-38106, Germany.
Empa, Swiss Federal Laboratories for Materials Science and Technology, Dübendorf CH-8600, Switzerland; Institute for Mechanical Systems, ETH Zurich, Zürich CH-8092, Switzerland.
Acta Biomater. 2021 Mar 1;122:249-262. doi: 10.1016/j.actbio.2020.12.050. Epub 2021 Jan 12.
This paper reports the first comprehensive data set on the anisotropic mechanical properties of isolated endo- and perimysial extracellular matrix of skeletal muscle, and presents the corresponding protocols for preparing and testing the samples. In particular, decellularisation of porcine skeletal muscle is achieved with caustic soda solution, and mechanical parameters are defined based on compressive and tensile testing in order to identify the optimal treatment time such that muscle fibres are dissolved whereas the extracellular matrix remains largely intact and mechanically functional. At around 18 h, a time window was found and confirmed by histology, in which axial tensile experiments were performed to characterise the direction-dependent mechanical response of the extracellular matrix samples, and the effect of lateral pre-compression was studied. The typical, large variability in the experimental stress response could be largely reduced by varying a single scalar factor, which was attributed to the variation of the fraction of extracellular matrix within the tissue. While experimental results on the mechanical properties of intact muscle tissue and single muscle fibres are increasingly available in literature, there is a lack of information on the properties of the collagenous components of skeletal muscle. The present work aims at closing this gap and thus contributes to an improved understanding of the mechanics of skeletal muscle tissue and provides a missing piece of information for the development of corresponding constitutive and computational models.
本文报告了关于分离的骨骼肌肌内膜和肌束膜细胞外基质各向异性力学性能的首个综合数据集,并介绍了制备和测试样品的相应方案。具体而言,用氢氧化钠溶液实现猪骨骼肌的脱细胞处理,并基于压缩和拉伸测试定义力学参数,以确定最佳处理时间,使肌纤维溶解而细胞外基质在很大程度上保持完整且具有机械功能。在大约18小时时,通过组织学发现并确认了一个时间窗口,在此窗口内进行轴向拉伸实验以表征细胞外基质样品的方向依赖性力学响应,并研究横向预压缩的影响。通过改变单个标量因子可大幅降低实验应力响应中典型的较大变异性,这归因于组织内细胞外基质比例的变化。虽然完整肌肉组织和单根肌纤维力学性能的实验结果在文献中越来越多,但关于骨骼肌胶原成分性能的信息却很缺乏。本研究旨在填补这一空白,从而有助于更好地理解骨骼肌组织的力学原理,并为相应本构模型和计算模型的开发提供缺失的信息。