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Transversal Stiffness and Youngs Modulus of Single Fibers from Rat Soleus Muscle Probed by Atomic Force Microscopy

机译:原子力显微镜探测大鼠比目鱼肌单纤维的横向刚度和杨氏模量

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摘要

The structural integrity of striated muscle is determined by extra-sarcomere cytoskeleton that includes structures that connect the Z-disks and M-bands of a sarcomere to sarcomeres of neighbor myofibrils or to sarcolemma. Mechanical properties of these structures are not well characterized. The surface structure and transversal stiffness of single fibers from soleus muscle of the rat were studied with atomic force microscopy in liquid. We identified surface regions that correspond to projections of the Z-disks, M-bands, and structures between them. Transversal stiffness of the fibers was measured in each of these three regions. The stiffness was higher in the Z-disk regions, minimal between the Z-disks and the M-bands, and intermediate in the M-band regions. The stiffness increased twofold when relaxed fibers were maximally activated with calcium and threefold when they were transferred to rigor (ATP-free) solution. Transversal stiffness of fibers heavily treated with Triton X-100 was about twice higher than that of the permeabilized ones, however, its regional difference and the dependence on physiological state of the fiber remained the same. The data may be useful for understanding mechanics of muscle fibers when it is subjected to both axial and transversal strain and stress.
机译:横纹肌的结构完整性由肌节外细胞骨架决定,肌节细胞骨架包括将肌节的Z盘和M带连接到邻近的肌原纤维的肉瘤或肌膜的结构。这些结构的机械性能不能很好地表征。用原子力显微镜在液体中研究了大鼠比目鱼肌单纤维的表面结构和横向刚度。我们确定了与Z盘,M带以及它们之间的结构的投影相对应的表面区域。在这三个区域的每一个中测量纤维的横向刚度。 Z盘区域的刚度较高,Z盘和M波段之间的刚度最小,M波段区域的刚度中等。当松弛纤维被钙最大程度地激活时,刚度增加了两倍;而当将其转移到严格的(无ATP)溶液中时,刚度增加了三倍。经Triton X-100大量处理的纤维的横向刚度是渗透纤维的横向刚度的两倍,但是,其区域差异和对纤维生理状态的依赖性保持不变。当数据同时受到轴向和横向应变和应力时,这些数据可能有助于理解其力学。

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