Zhang Shenke, Ueno Daishin, Ohira Takashi, Kato Hisashi, Izawa Tetsuya, Yamanouchi Sakuya, Yoshida Yukari, Takahashi Akihisa, Ohira Yoshinobu
Gunma University Heavy Ion Medical Center, Maebashi, Japan.
Graduate School of Science and Technology, Nara Institute of Science and Technology, Ikoma, Japan.
Front Cell Dev Biol. 2021 Jul 26;9:707470. doi: 10.3389/fcell.2021.707470. eCollection 2021.
The partial gravity environment in space can negatively affect bone health. This survey aimed to study the reaction of different parts of the lower limb bones of rats to partial gravity and the effects of different degrees of gravity on these bony parts. We used 15 8-week-old male Wistar Hannover rats were used at the beginning of the experiment. The degree of mechanical stress was modified, but the ankle joint was maintained at ∼30°, ∼120°, or ∼160° with or without plaster fixation during 10-day hindlimb suspension. Computed tomography was performed to measure the bone parameters [bone mineral density (BMD), trabecular BMD, cortical BMD, and cortical thickness] of each studied group of the whole, proximal, middle, and distal femur and distal tibia. BMD, trabecular BMD, and cortical thickness of the distal femur and proximal tibia of the simulated mechanical stress associated with partial gravity groups were significantly lower than those of the control group; the effect of different degrees of gravity on the same area of hindlimb bone had no significant difference. The simulated mechanical stress associated with partial gravity had the most significant effect on the bone close to the knee joint, with the largest weight-bearing response.
太空的部分重力环境会对骨骼健康产生负面影响。本研究旨在探讨大鼠下肢骨骼不同部位对部分重力的反应以及不同重力程度对这些骨骼部位的影响。实验开始时使用了15只8周龄的雄性Wistar Hannover大鼠。在为期10天的后肢悬吊期间,改变机械应力程度,但在有或没有石膏固定的情况下,将踝关节维持在约30°、约120°或约160°。进行计算机断层扫描以测量整个、近端、中段和远端股骨以及远端胫骨各研究组的骨参数[骨密度(BMD)、小梁骨密度、皮质骨密度和皮质厚度]。与部分重力相关的模拟机械应力组的远端股骨和近端胫骨的BMD、小梁骨密度和皮质厚度显著低于对照组;不同重力程度对后肢骨同一区域的影响无显著差异。与部分重力相关的模拟机械应力对靠近膝关节的骨骼影响最显著,负重反应最大。