模拟微重力和部分重力环境下大鼠肌肉健康的性别差异

IF 2.3 Q2 SPORT SCIENCES Sports Medicine and Health Science Pub Date : 2023-12-01 DOI:10.1016/j.smhs.2023.09.002
Megan E. Rosa-Caldwell , Marie Mortreux , Anna Wadhwa , Ursula B. Kaiser , Dong-Min Sung , Mary L. Bouxsein , Seward B. Rutkove
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引用次数: 0

摘要

骨骼肌的大小和强度对宇航员的整体健康非常重要。然而,男性和女性肌肉对微重力和部分重力环境的不同反应尚未完全清楚。本研究的目的是确定生物性别和性类固醇激素如何影响雄性和雌性大鼠长期暴露于微重力和部分重力环境后肌肉萎缩的进展。雄性和雌性费舍尔大鼠(n = 120)均接受了阉割/卵巢切除术或假手术。两周恢复后,动物被分为微重力(0g)、部分重力(40%负重,0.4g)或完全负重(1g)干预28天。在干预前和干预后,对肌肉大小和力量进行了评估。与男性相比,在 0g 负重时,女性的背屈力量、跖屈力量和其他肌肉大小指标的损失更大;阉割/卵巢切除术并不影响这些差异。此外,与男性相比,当体重达到 0.4g 时,女性丧失的背屈力量、跖屈力量和其他肌肉力量指标更多;阉割/卵巢切除术对这些差异没有影响。女性在微重力和部分重力环境中的肌肉骨骼畸变更大;这些差异并不取决于性类固醇激素的存在。因此,可能有必要采取额外的干预措施来减轻女性宇航员的肌肉骨骼损失,以保护职业健康和整体健康。
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Sex differences in muscle health in simulated micro- and partial-gravity environments in rats

Skeletal muscle size and strength are important for overall health for astronauts. However, how male and female muscle may respond differently to micro- and partial-gravity environments is not fully understood. The purpose of this study was to determine how biological sex and sex steroid hormones influence the progression of muscle atrophy after long term exposure to micro and partial gravity environments in male and female rats. Male and female Fisher rats (n ​= ​120) underwent either castration/ovariectomy or sham surgeries. After two weeks recovery, animals were divided into microgravity (0g), partial-gravity (40% of weight bearing, 0.4g), or full weight bearing (1g) interventions for 28 days. Measurements of muscle size and strength were evaluated prior to and after interventions. At 0g, females lost more dorsiflexion strength, plantar flexion strength, and other metrics of muscle size compared to males; castration/ovariectomy did not influence these differences. Additionally, at 0.4g, females lost more dorsiflexion strength, plantar flexion strength, and other metrics of muscle strength compared to males; castration/ovariectomy did not influence these differences. Females have greater musculoskeletal aberrations during exposure to both microgravity and partial-gravity environments; these differences are not dependent on the presence of sex steroid hormones. Correspondingly, additional interventions may be necessary to mitigate musculoskeletal loss in female astronauts to protect occupational and overall health.

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来源期刊
Sports Medicine and Health Science
Sports Medicine and Health Science Health Professions-Physical Therapy, Sports Therapy and Rehabilitation
CiteScore
5.50
自引率
0.00%
发文量
36
审稿时长
55 days
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