NASA SPRINT exercise program efficacy for vastus lateralis and soleus skeletal muscle health during 70 days of simulated microgravity

被引:6
作者
Trappe, Todd A. [1 ]
Minchev, Kiril [1 ]
Perkins, Ryan K. [1 ]
Lavin, Kaleen M. [1 ]
Jemiolo, Bozena [1 ]
Ratchford, Stephen M. [1 ]
Claiborne, Alex [1 ]
Lee, Gary A. [1 ]
Finch, W. Holmes [1 ]
Ryder, Jeffrey W. [2 ]
Ploutz-Snyder, Lori [2 ]
Trappe, Scott W. [1 ]
机构
[1] Ball State Univ, Human Performance Lab, Muncie, IN 47306 USA
[2] NASA Johnson Space Ctr, Univ Space Res Assoc, Houston, TX USA
基金
美国国家卫生研究院;
关键词
exercise; microgravity; skeletal muscle; weightlessness; PROLONGED SPACE-FLIGHT; LOWER-LIMB SUSPENSION; BED-REST; NUTRITION COUNTERMEASURES; FIBER FUNCTION; INTEGRATED RESISTANCE; CONCURRENT EXERCISE; PROTEIN-SYNTHESIS; SARCOMERE-LENGTH; ISOMETRIC FORCE;
D O I
10.1152/japplphysiol.00489.2023
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
The efficacy of the NASA SPRINT exercise countermeasures program for quadriceps (vastus lateralis) and triceps surae (soleus) skeletal muscle health was investigated during 70 days of simulated microgravity. Individuals completed 6 degrees head-down-tilt bedrest (BR, n = 9), bedrest with resistance and aerobic exercise (BRE, n = 9), or bedrest with resistance and aerobic exercise and low-dose testosterone (BRE + T, n = 8). All groups were periodically tested for muscle (n = 9 times) and aerobic (n = 4 times) power during bedrest. In BR, surprisingly, the typical bedrest-induced decrements in vastus lateralis myofiber size and power were either blunted (myosin heavy chain, MHC I) or eliminated (MHC IIa), along with no change (P > 0.05) in %MHC distribution and blunted quadriceps atrophy. In BRE, MHC I (vastus lateralis and soleus) and IIa (vastus lateralis) contractile performance was maintained (P > 0.05) or increased (P < 0.05). Vastus lateralis hybrid fiber percentage was reduced (P < 0.05) and energy metabolism enzymes and capillarization were generally maintained (P > 0.05), while not all of these positive responses were observed in the soleus. Exercise offsets 100% of quadriceps and approximately two-thirds of soleus whole muscle mass loss. Testosterone (BRE + T) did not provide any benefit over exercise alone for either muscle and for some myocellular parameters appeared detrimental. In summary, the periodic testing likely provided a partial exercise countermeasure for the quadriceps in the bedrest group, which is a novel finding given the extremely low exercise dose. The SPRINT exercise program appears to be viable for the quadriceps; however, refinement is needed to completely protect triceps surae myocellular and whole muscle health for astronauts on long-duration spaceflights.
引用
收藏
页码:1015 / 1039
页数:25
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