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Influence of ageing on the fatigability of isolated mouse skeletal muscles from mature and aged mice.

机译:衰老对成熟和衰老小鼠离体骨骼肌疲劳性的影响。

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摘要

We investigated the influence of ageing on the fatiguing characteristics of the mouse extensor digitorum longus (EDL) muscle as compared to those of the soleus muscle. Fatigue was produced by an intermittent stimulation protocol. We report for mature and aged animals the effects of fatigue on force produced during stimulation patterns that in non-fatigued muscle gave maximum force (T(max), high frequency stimulation) and approximately half-maximum force (1/2T(max), low frequency stimulation). In 15-month-old (mature) mice, fatiguing stimulation decreased T(max) in EDL and soleus muscle to 10.3 +/- 1.0 % and 33.4 +/- 3.0 % of control, respectively. In 30-month-old (aged) mice, the decrease in T(max) in EDL and soleus was statistically equal to that of the younger animals. Fatiguing stimulation decreased 1/2T(max) in EDL and soleus from 15-month-old animals to 22.5 +/- 2.9 % and 45.7 +/- 0.3 % of control, respectively. In 30-month-old animals, the 1/2T(max) in EDL and soleus muscle decreased to 18.2 +/- 1.3 % and 35.0 +/- 3.6 % of control, respectively. Under all conditions, the soleus fatigued significantly less. Contractile recovery from fatiguing stimulation was complete for the soleus in both age groups after 30 min, but incomplete for the EDL. The 1/2T(max)/T(max) ratio significantly increased in EDL and soleus muscle from 15-month-old animals after fatiguing stimulation. This increase was less significant in EDL, and absent in soleus muscle, from 30-month-old animals. These results indicate that fatiguing stimulation induces a leftward shift in the force-frequency relationship in the young animals; this shift is either significantly less (EDL) or absent (soleus) in the older animals. We speculate that the leftward shift of the force-frequency relationship may reflect a protective mechanism in younger animals against some of the damaging effects of fatiguing stimulation (i.e. oxidative stress).
机译:我们调查了老化对小鼠比趾比目鱼肌腱伸长(EDL)肌肉疲劳特性的影响。疲劳是通过间歇性刺激方案产生的。我们报告了成年和成年动物疲劳对刺激模式产生的力的影响,在无疲劳的肌肉中,刺激产生最大力(T(max),高频刺激)和大约一半最大力(1 / 2T(max),低频刺激)。在15个月大(成熟)的小鼠中,疲劳刺激将EDL和比目鱼肌的T(max)分别降低至对照组的10.3 +/- 1.0%和33.4 +/- 3.0%。在30个月大(成年)的小鼠中,EDL和比目鱼的T(max)降低在统计学上与年幼动物相等。疲劳刺激使15个月大的动物的EDL和比目鱼肌的1 / 2T(max)分别降低至对照组的22.5 +/- 2.9%和45.7 +/- 0.3%。在30个月大的动物中,EDL和比目鱼肌的1 / 2T(max)分别降至对照组的18.2 +/- 1.3%和35.0 +/- 3.6%。在所有情况下,比目鱼肌的疲劳明显减轻。在30分钟后,两个年龄段的比目鱼肌都能从疲劳刺激中恢复收缩,而对于EDL,收缩恢复并不完全。在疲劳刺激后,来自15个月大动物的EDL和比目鱼肌的1 / 2T(max)/ T(max)比显着增加。从30个月大的动物来看,这种增加在EDL中不太明显,而在比目鱼肌中却没有。这些结果表明疲劳刺激在幼小动物中引起力-频率关系向左移动。在年长的动物中,这种变化明显更少(EDL)或不存在(比目鱼)。我们推测力-频率关系的向左移动可能反映了年幼动物对疲劳刺激(即氧化应激)的某些破坏作用的保护机制。

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