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首页> 外文期刊>Experimental Gerontology >Myosin content of single muscle fibers following short-term disuse and active recovery in young and old healthy men
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Myosin content of single muscle fibers following short-term disuse and active recovery in young and old healthy men

机译:在短期废弃物后单肌纤维的肌肌肌肌肌肌肌瘤含量在年轻和古老的健康男性中积极恢复

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Short-term disuse and subsequent recovery affect whole muscle and single myofiber contractile function in young and old. While the loss and recovery of single myofiber specific force (SF) following disuse and rehabilitation has been shown to correlate with alterations in myosin concentrations in young, it is unknown whether similar relationships exist in old. Therefore, the purpose of the present study was to examine the effect of 14 days lower limb disuse followed by 28 days of active recovery on single muscle fiber myosin content in old (68 yrs) and young (24 yrs) recreationally physically active healthy men. Following disuse, myosin content decreased (p < 0.05) in MHC 1 (young -28%, old -19%) and 2a fibers (young -23%, old -32%). In old, myosin content decreased more (p < 0.05) in MHC 2a vs 1 fibers. Following recovery, myosin content increased (p < 0.05) and returned to pre-disuse levels for both young and old in both fiber types, with MHC 2a fibers demonstrating an overshooting in young (+31%, p < 0.05) but not old. Strong correlations were observed between myosin content and single fiber SF in both young and old, with greater slope steepness in MHC 2a vs 1 fibers indicating an enhanced intrinsic contractile capacity of MHC 2a fibers. In conclusion, adaptive changes in myofiber myosin content appear to occur rapidly following brief periods of disuse (2 wks) and after subsequent active recovery (4 wks) in young and old, which contribute to alterations in contractile function at the single muscle fiber level. Changes in myosin content appear to occur independently of age, while influenced by fiber type (MHC isoform) in young but not old. (C) 2016 Elsevier Inc. All rights reserved.
机译:短期废物和随后的恢复会影响年轻人和老年人的整个肌肉和单一的肌电纤维收缩功能。虽然在废物和康复后单个肌纤维特定力(SF)的丧失和恢复已被证明与年轻人中肌球蛋白浓度的变化相关,但是尚不清楚类似的关系是否存在。因此,本研究的目的是检查14天下肢废弃物的效果,然后在旧(68岁)和年轻(24 YRS)的单肌纤维肌蛋白含量对单肌纤维菌丝素含量的28天的活跃恢复。在废物下,MHC 1(杨-28%,旧-19%)和2A纤维下降(P <0.05)减少(P <0.05)(杨-23%,旧-32%)。旧的,MHC 2A VS 1纤维中肌蛋白含量较多(P <0.05)。恢复后,肌球蛋白含量增加(P <0.05)并返回两种纤维类型中的年轻人和旧的患者的预吸收水平,MHC 2A纤维在杨氏(+ 31%,P <0.05)中展示过冲,但不老。在杨氏和旧的肌菌素含量和单纤维SF之间观察到强相关性,MHC 2A对1纤维中的更大斜率陡度,表明MHC 2A纤维的内在收缩能力增强。总之,肌纤维纤维素霉素含量的适应性变化似乎在非肌肉纤维水平的短期内的缺陷(2个WKS)和后续活性回收(4个WKS)之后迅速发生,这有助于在单肌纤维水平处的收缩函数的改变。肌球蛋白含量的变化似乎是独立于年龄发生的,同时受到年轻但不老的纤维型(MHC同种型)的影响。 (c)2016年Elsevier Inc.保留所有权利。

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