Submaximal eccentric resistance training increases serial sarcomere number and improves dynamic muscle performance in old rats

bioRxiv Pub Date : 2024-07-16 DOI:10.1101/2024.07.10.602916
Avery Hinks, Ethan Vlemmix, Geoffrey A. Power
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Abstract

The age-related loss of muscle mass is partly accounted for by the loss of sarcomeres in series. Serial sarcomere number (SSN) influences muscle mechanical function including the force-length and force-velocity-power relationships, and the age-related loss of SSN contributes to declining performance. Resistance training biased to active lengthening (eccentric) contractions increases SSN in young muscle, however, we showed maximal eccentric training in old rats did not alter SSN and further worsened performance. A submaximal eccentric training stimulus may be more conducive to adaptation for aged muscle. Therefore, the purpose of this study was to assess whether submaximal eccentric training can increase SSN and improve mechanical function in old rats. Twelve 32-month-old male F344/BN rats completed 4 weeks of submaximal (60% maximum) isokinetic eccentric plantar-flexion training 3 days/week. Pre- and post-training, we assessed in-vivo maximum isometric torque at a stretched and neutral ankle angle, the passive torque-angle relationship, and the isotonic torque-angular velocity-power relationship. The soleus and MG were harvested for SSN measurements via laser diffraction, with the untrained leg as a control. SSN increased 11% and 8%, and muscle wet weight increased 14% and 13% in the soleus and MG, respectively. Maximum isometric torque and shortening velocity were unaltered, but there was a shift towards longer muscle lengths for the optimal angle of torque production, a 42% reduction of passive torque, and 23% increase in peak isotonic power. Eccentric training at 60% maximum was beneficial for aged muscle, increasing SSN and muscle mass, reducing muscle passive tension, and improving dynamic performance. New & Noteworthy Four weeks of submaximal (60% of maximum) eccentric resistance training increased serial sarcomere number and muscle mass in old rats Increased serial sarcomere number corresponded to broadening of the torque-angle relationship following training, which contributed to increased peak isotonic power Submaximal eccentric training also led to a large reduction in passive torque throughout the range of motion
最大限度以下的偏心阻力训练可增加老年大鼠的序列肌节数量并改善动态肌肉性能
与年龄有关的肌肉质量损失部分是由系列肌节的损失造成的。序列肌节数(SSN)影响肌肉的机械功能,包括力-长度和力-速度-功率关系,与年龄相关的 SSN 损失会导致肌肉性能下降。偏向于主动拉长(偏心)收缩的阻力训练可增加年轻肌肉的SSN,然而,我们发现对老年大鼠进行最大偏心训练并不会改变SSN,反而会进一步恶化其运动表现。亚最大偏心训练刺激可能更有利于老年肌肉的适应。因此,本研究旨在评估亚最大偏心训练是否能增加老年大鼠的SSN并改善其机械功能。12 只 32 个月大的雄性 F344/BN 大鼠完成了为期 4 周的亚极限(最大值的 60%)等速偏心跖屈训练,每周 3 天。在训练前和训练后,我们评估了拉伸和中立踝关节角度下的体内最大等长扭矩、被动扭矩-角度关系以及等张扭矩-角速度-功率关系。通过激光衍射测量比目鱼肌和MG的SSN,并以未经训练的腿作为对照。比目鱼肌和MG的SSN分别增加了11%和8%,肌肉湿重分别增加了14%和13%。最大等长扭矩和缩短速度没有变化,但在产生扭矩的最佳角度,肌肉长度变长,被动扭矩减少了 42%,峰值等张力量增加了 23%。最大值为 60% 的偏心训练对老年肌肉有益,可增加 SSN 和肌肉质量,降低肌肉被动张力,改善动态表现。新发现和值得注意的问题 四周的亚极限(最大值的 60%)偏心阻力训练增加了老年大鼠的序列肌节数量和肌肉质量 序列肌节数量的增加与训练后扭矩-角度关系的扩大相对应,这有助于提高等张力峰值功率 亚极限偏心训练还导致整个运动范围内被动扭矩的大幅降低
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