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首页> 外文期刊>American Journal of Physiology >Contractile and connective tissue protein content of human skeletal muscle: effects of 35 and 90 days of simulated microgravity and exercise countermeasures.
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Contractile and connective tissue protein content of human skeletal muscle: effects of 35 and 90 days of simulated microgravity and exercise countermeasures.

机译:人骨骼肌收缩和结缔组织蛋白含量:35天和90天模拟微重力的影响和运动对策。

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摘要

We examined the effects of 35 and 90 days of simulated microgravity with or without resistance-exercise (RE) countermeasures on the content of the general skeletal muscle protein fractions (mixed, sarcoplasmic, and myofibrillar) and specific proteins that are critical for muscle function (myosin, actin, and collagen). Subjects from two studies, using either unilateral lower limb suspension (ULLS) or bed rest (BR), comprised four separate groups: 35 days ULLS (n =11), 35 days ULLS+RE (n = 10), 90 days BR (n = 9), and 90 days BR+RE (n = 8). RE consisted of four sets of seven maximal concentric and eccentric repetitions of the quadriceps femoris muscles that were performed 2 or 3 times per week. Pre- and post-simulated weightlessness muscle biopsies were analyzed from the vastus lateralis of all groups and the soleus of the 35-day ULLS and 90-day BR groups. The general protein fractions and the specific proteins myosin, actin, and collagen of the vastus lateralis were unchanged (P > 0.05) in both control and countermeasures groups over 35 and 90 days, despite large changes in quadriceps femoris muscle volume (35 days ULLS: -9%, 35 days ULLS+RE: +8%; and 90 days BR: -18%, 90 days BR+RE: -1%). The soleus demonstrated a decrease in mixed (35 days ULLS: -12%, P = 0.0001; 90 days BR: -12%, P = 0.004) and myofibrillar (35 days ULLS: -12%, P = 0.009; 90 days BR: -8%, P = 0.04) protein, along with large changes in triceps surae muscle volume (35 days ULLS: -11%; 90 days BR: -29%). Despite the loss of quadriceps femoris muscle volume or preservation with RE countermeasures during simulated microgravity, the quadriceps femoris muscles are able to maintain the concentrations of the general protein pools and the main contractile and connective tissue elements. Soleus muscle protein composition appears to be disproportionately altered during long-duration simulated weightlessness.
机译:我们检查了35天和90天模拟微重力在有或没有抵抗运动(RE)对策的情况下对一般骨骼肌蛋白质部分(混合,肌浆和肌原纤维)和对肌肉功能至关重要的特定蛋白质(肌球蛋白,肌动蛋白和胶原蛋白)。来自两项使用单侧下肢悬吊(ULLS)或卧床休息(BR)的研究的受试者分为四个独立的组:35天ULLS(n = 11),35天ULLS + RE(n = 10),90天BR( n = 9)和90天的BR + RE(n = 8)。 RE包括四组,股四头肌的七个最大同心和偏心重复,每周重复2或3次。从所有组的股外侧肌以及35天ULLS和90天BR组的比目鱼肌中分析了模拟前和后失重肌肉活检。尽管股四头肌肌肉体积有较大变化(35天,ULLS :),但对照组和对策组在35天和90天中,股外侧肌的一般蛋白组分和特定蛋白肌球蛋白,肌动蛋白和胶原蛋白均未改变(P> 0.05)。 -9%,35天ULLS + RE:+ 8%;和90天BR:-18%,90天BR + RE:-1%)。比目鱼肌和肌原纤维减少(35天ULLS:-12%,P = 0.0001; 90天BR:-12%,P = 0.004)和肌原纤维减少(35天ULLS:-12%,P = 0.009; BR 90天:-8%,P = 0.04)蛋白,以及肱三头肌肱三头肌的体积发生较大变化(35天ULLS:-11%; 90天BR:-29%)。尽管在模拟微重力下股四头肌肌肉体积减少或采用RE措施得以保留,股四头肌肌肉仍能够维持一般蛋白质库以及主要的收缩和结缔组织元素的浓度。在长时间的模拟失重过程中,比目鱼肌的蛋白质组成似乎发生了不成比例的变化。

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