State Scientific Center of Russian Federation Institute of Biomedical Problems of Russian Academy of Sciences, Moscow, Russia.
J Appl Physiol (1985). 2010 Dec;109(6):1702-9. doi: 10.1152/japplphysiol.00793.2010. Epub 2010 Sep 9.
The aim of this research was the analysis of structural changes in various parts of the sarcolemma and contractile apparatus of muscle fibers by measuring their transversal stiffness by atomic force microscopy under gravitational unloading. Soleus, medial gastrocnemius, and tibialis anterior muscles of Wistar rats were the objects of the study. Gravitational unloading was carried out by antiorthostatic suspension of hindlimbs for 1, 3, 7, and 12 days. It was shown that the transversal stiffness of different parts of the contractile apparatus of soleus muscle fibers decreases during gravitational unloading in the relaxed, calcium-activated, and rigor states, the fibers of the medial gastrocnemius show no changes, whereas the transversal stiffness of tibialis anterior muscle increases. Thus the transversal stiffness of the sarcolemma in the relaxed state is reduced in all muscles, which may be due to the direct action of gravity as an external mechanical factor that can influence the tension on a membrane. The change of sarcolemma stiffness in activated fibers, which is due probably to the transfer of tension from the contractile apparatus, correlates with the dynamics of changes in the content of desmin.
本研究的目的是通过原子力显微镜在重力卸载下测量横切刚度,分析肌纤维的横切刚度,分析各种部位的肌膜和收缩装置的结构变化。研究对象为 Wistar 大鼠的比目鱼肌、内侧腓肠肌和胫骨前肌。通过后肢的反重力悬挂进行 1、3、7 和 12 天的重力卸载。结果表明,在重力卸载过程中,比目鱼肌纤维的收缩装置的不同部位在松弛、钙激活和僵硬状态下的横切刚度降低,内侧腓肠肌没有变化,而胫骨前肌的横切刚度增加。因此,所有肌肉的松弛状态下的肌膜的横切刚度降低,这可能是由于重力的直接作用作为一种外部机械因素,它可以影响膜上的张力。可能由于张力从收缩装置转移,激活纤维的肌膜硬度的变化与结蛋白含量变化的动力学相关。