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首页> 外文期刊>Journal of applied physiology >Depressed contractile performance and reduced fatigue resistance in single skinned fibers of soleus muscle after long-term disuse in rats
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Depressed contractile performance and reduced fatigue resistance in single skinned fibers of soleus muscle after long-term disuse in rats

机译:长期停用大鼠比目鱼肌单层纤维的收缩性能降低和抗疲劳性降低

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Long-term disuse results in atrophy in skeletal muscle, which is characterized by reduced functional capability, impaired locomotor condition, and reduced resistance to fatigue. Here we show how long-term disuse affects contractility and fatigue resistance in single fibers of soleus muscle taken from the hindlimb immobilization model of the rat. We found that long-term disuse results in depression of caffeine-induced transient contractions in saponin-treated single fibers. However, when normalized to maximal Ca 2+-activated force, the magnitude of the transient contractions became similar to that in control fibers. Control experiments indicated that the active force depression in disused muscle is not coupled with isoform switching of myosin heavy chain or troponin, or with disruptions of sarcomere structure or excessive internal sarcomere shortening during contraction. In contrast, our electronmicroscopic observation supported our earlier observation that interfilament lattice spacing is expanded after disuse. Then, to investigate the molecular mechanism of the reduced fatigue resistance in disused muscle, we compared the inhibitory effects of inorganic phosphate (Pi) on maximal Ca 2+-activated force in control vs. disused fibers. The effect of Pi was more pronounced in disused fibers, and it approached that observed in control fibers after osmotic compression. These results suggest that contractile depression in disuse results from the lowering of myofibrillar force-generating capacity, rather than from defective Ca 2+ mobilization, and the reduced resistance to fatigue is from an enhanced inhibitory effect of Pi coupled with a decrease in the number of attached cross bridges, presumably due to lattice spacing expansion.
机译:长期不使用会导致骨骼肌萎缩,其特征是功能能力降低,运动状况受损以及对疲劳的抵抗力降低。在这里,我们从大鼠的后肢固定模型中显示了长期停用如何影响比目鱼肌单纤维的收缩性和抗疲劳性。我们发现,长期不使用会导致咖啡因诱导的皂素处理过的单纤维收缩收缩。但是,当归一化为最大的Ca 2+激活力时,瞬时收缩的幅度变得与对照纤维相似。对照实验表明,废弃肌肉中的主动力降低与肌球蛋白重链或肌钙蛋白的同工型转换,收缩过程中肌节结构的破坏或内部肌节的过度缩短不相关。相反,我们的电子显微镜观察支持了我们先前的观察,即废用后,丝间晶格间距会扩大。然后,为了研究降低废弃肌肉中抗疲劳性的分子机理,我们比较了无机磷酸盐(Pi)对对照纤维和废弃纤维中最大Ca 2+激活力的抑制作用。在废弃的纤维中,Pi的影响更为明显,并且与渗透压后的对照纤维中的Pi接近。这些结果表明,废用性收缩性抑郁症是由于肌原纤维力生成能力的降低而不是由Ca 2+动员缺陷引起的,而对疲劳的抵抗力降低是由于Pi的抑制作用增强,同时Pi数量减少所致。可能是由于晶格间距扩展而导致的跨接桥。

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