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模拟微重力能精确模拟长期太空飞行对骨骼未成熟小鼠骨骼和骨骼肌的影响。

Simulated microgravity accurately models long-duration spaceflight effects on bone and skeletal muscle in skeletally immature mice.

作者信息

Friedman Michael A, Zeineddine Yasmina, Tuyambaze Olivier, Elhawabri Wesam, Al Shammary Ahmed, Stodieck Louis, Ferguson Virginia L, Donahue Henry J

机构信息

Department of Biomedical Engineering, Virginia Commonwealth University, Richmond, VA 23284, USA.

Department of Biomedical Engineering, University of Virginia, Charlottesville, VA 22908, USA.

出版信息

Bone Rep. 2025 Aug 15;26:101871. doi: 10.1016/j.bonr.2025.101871. eCollection 2025 Sep.

Abstract

Spaceflight (SF) and disuse result in decreases in bone and skeletal muscle volume that increase fracture risk. Hindlimb unloading (HLU) has been widely used to model the effects of microgravity. However, the effects of SF and HLU on bone and skeletal muscle have not been directly compared during long-duration SF. We examined the effects of five weeks of SF and HLU in the femurs of female Balb/c mice. For the first time, SF and HLU were directly compared using mice of the same age, strain, sex, and duration as a mission to the ISS. We hypothesized that HLU would accurately model SF, resulting in similar bone and skeletal muscle loss. Ten-week old female Balb/c mice were assigned to baseline, vivarium control, habitat control, and SF groups (n = 10/group). A separate cohort of 10-week female Balb/c mice were placed in HLU or control (n = 10/group). Femoral cortical area increased from baseline in all groups except HLU. The magnitudes of increases were lower in the SF and HLU groups. Similar effects were seen in trabecular bone. Femoral ultimate force decreased in SF and HLU groups, compared to control groups. Gastrocnemius and quadriceps mass was lower in SF and HLU mice than in control mice. HLU resulted in greater bone loss than SF, possibly due to differences in housing conditions. HLU effectively models long-duration effects of SF on the musculoskeletal system, highlighting its utility for studying astronaut health risks and developing countermeasures.

摘要

太空飞行(SF)和肢体废用会导致骨骼和骨骼肌体积减小,增加骨折风险。后肢卸载(HLU)已被广泛用于模拟微重力的影响。然而,在长期太空飞行期间,太空飞行和后肢卸载对骨骼和骨骼肌的影响尚未得到直接比较。我们研究了五周的太空飞行和后肢卸载对雌性Balb/c小鼠股骨的影响。首次使用与国际空间站任务年龄、品系、性别和持续时间相同的小鼠直接比较太空飞行和后肢卸载。我们假设后肢卸载将准确模拟太空飞行,导致类似的骨骼和肌肉损失。将10周龄的雌性Balb/c小鼠分为基线组、饲养室对照组、栖息地对照组和太空飞行组(每组n = 10)。将另一组10周龄的雌性Balb/c小鼠置于后肢卸载组或对照组(每组n = 10)。除后肢卸载组外,所有组的股骨皮质面积均从基线增加。太空飞行组和后肢卸载组的增加幅度较低。在小梁骨中也观察到类似的效果。与对照组相比,太空飞行组和后肢卸载组的股骨极限力降低。太空飞行组和后肢卸载组小鼠的腓肠肌和股四头肌质量低于对照组小鼠。后肢卸载导致的骨质流失比太空飞行更大,可能是由于饲养条件的差异。后肢卸载有效地模拟了太空飞行对肌肉骨骼系统的长期影响,突出了其在研究宇航员健康风险和制定对策方面的效用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4ef/12398213/12fdd765fe7f/gr1.jpg

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