Prisby Rhonda D, Nelson Arnold G, Latsch Elizabeth
Texas A&M University, Department of Health and Kinesiology, HLKN 4243 TAMU, College Station, TX 77843, USA.
Aviat Space Environ Med. 2004 Nov;75(11):941-6.
Antigravity muscles that are reloaded subsequent to hindlimb unloading (HU) are prone to injury. Similarities exist between muscle damage elicited from HU and subsequent reloading and damage induced by eccentric exercise (EE). Conditioning bouts of EE reduce muscle damage following a repeat bout of EE. Since damage to reloaded skeletal muscle is comparable to damage observed after EE, the mechanisms of damage are presumably similar. Therefore, EE prior to HU may attenuate reloading muscle damage. This study evaluated the effects of prior EE on rat soleus muscles (SOL) subsequent to 7 d of HU and 16-19 h of reloading.
Sprague Dawley rats were randomly assigned to the following groups: eccentric exercise + hindlimb unloading + reloading (EEHUR; n = 9); hindlimb unloading + reloading (HUR; n = 10); eccentric exercise (EE; n = 12), or control (CON; n = 12). The exercise protocol was performed 5 d x wk(-1) for 2 wks followed by HU and reloading.
Fiber areas were lower in both suspended groups vs. the EE and CON groups. There was no difference in percent interstitial area among groups. However, percent myofibrillar damage was higher in the HUR group vs. all other groups. Further, glucose-6-phospate dehydrogenase activity, an indicator of muscle damage, was higher in the HUR group compared with the EE and CON groups.
These results provide some evidence that prior EE reduced muscle damage subsequent to HU and reloading. Therefore, EE may prove effective in minimizing recovery time in individuals suffering from muscle damage following periods of bed rest and spaceflight.
后肢卸载(HU)后重新加载的抗重力肌肉容易受伤。HU引发的肌肉损伤与随后的重新加载以及离心运动(EE)诱导的损伤之间存在相似之处。EE的适应性训练可以减少重复EE后的肌肉损伤。由于重新加载的骨骼肌损伤与EE后观察到的损伤相当,损伤机制可能相似。因此,HU前的EE可能减轻重新加载时的肌肉损伤。本研究评估了HU 7天和重新加载16 - 19小时后,预先进行EE对大鼠比目鱼肌(SOL)的影响。
将Sprague Dawley大鼠随机分为以下几组:离心运动+后肢卸载+重新加载(EEHUR;n = 9);后肢卸载+重新加载(HUR;n = 10);离心运动(EE;n = 12)或对照组(CON;n = 12)。运动方案为每周5天,持续2周,随后进行HU和重新加载。
与EE组和CON组相比,两个悬吊组的纤维面积均较低。各组间间质面积百分比无差异。然而,HUR组的肌原纤维损伤百分比高于所有其他组。此外,作为肌肉损伤指标的葡萄糖-6-磷酸脱氢酶活性,HUR组高于EE组和CON组。
这些结果提供了一些证据,表明预先进行EE可减少HU和重新加载后的肌肉损伤。因此,EE可能在缩短因卧床休息和太空飞行导致肌肉损伤的个体的恢复时间方面有效。