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Age-related changes in the mechanical properties of the epimysium in skeletal muscles of rats

机译:与年龄相关的大鼠骨骼肌上肌上皮机械特性的变化

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摘要

Skeletal muscle is composed of muscle fibers and an extracellular matrix (ECM). The collagen fiber network of the ECM is a major contributor to the passive force of skeletal muscles at high strain. We investigated the effect of aging on the biomechanical and structural properties of epimysium of the tibialis anterior muscles (TBA) of rats to understand the mechanisms responsible for the age-related changes. The biomechanical properties were tested directly in vitro by uniaxial extension of epimysium. The presence of age-related changes in the arrangement and size of the collagen fibrils in the epimysium was examined by scanning electron microscopy (SEM). A mathematical model was subsequently developed based on the structure-function relationships that predicted the compliance of the epimysium. Biomechanically the epimysium from old rats was much stiffer than that of the young rats. No differences were found in the ultrastructure and thickness of the epimysium or size of the collagen fibrils between young and old rats. The changes in the arrangement and size of the collagen fibrils do not appear to be the principal cause of the increased stiffness of the epimysium from the old rats. Other changes in the structural composition of the epimysium from old rats likely has a strong effect on the increased stiffness. The age-related increase in the stiffness of the epimysium could play an important role in the impaired lateral force transmission in the muscles of the elderly.
机译:骨骼肌由肌纤维和细胞外基质(ECM)组成。 ECM的胶原纤维网络是高应变时骨骼肌被动力的主要贡献者。我们研究了衰老对大鼠胫前肌(TBA)上皮的生物力学和结构特性的影响,以了解与年龄有关的变化的机制。通过表皮的单轴延伸直接在体外测试了生物力学性能。通过扫描电子显微镜(SEM)检查了表皮中胶原纤维的排列和大小与年龄有关的变化。随后基于预测附睾的顺应性的结构-功能关系开发了数学模型。从生物力学上讲,老年大鼠的上皮比年轻大鼠的上皮硬得多。在幼鼠和老鼠之间,上皮的超微结构和厚度或胶原纤维的大小没有发现差异。胶原蛋白原纤维的排列和大小的变化似乎不是老大鼠的附睾的刚度增加的主要原因。老年大鼠上皮的结构组成的其他变化可能对增加的刚度有很强的影响。随年龄增长而引起的上皮僵硬度的增加可能在老年人肌肉的侧向力传递受损中起重要作用。

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