School of Life Sciences, Northwestern Polytechnical University, Xi'an 710072, China; Key Laboratory for Space Bioscience and Biotechnology, Institute of Special Environment Biophysics, Northwestern Polytechnical University, Xi'an 710072, China.
School of Food Science and Engineering, South China University of Technology, Guangzhou 510640, China.
Bone. 2018 Sep;114:235-245. doi: 10.1016/j.bone.2018.06.012. Epub 2018 Jun 19.
During deep-space exploration missions, astronauts will be exposed to abnormal space environments including microgravity and hypomagnetic field (HyMF) that is 10,000 times weaker than geomagnetic field (GMF). It is well known that microgravity in space can induce bone loss; however, it is ill-defined whether HyMF involved in this process. Herein, we aimed to investigate the combined effects of HyMF and microgravity on bone loss. A mouse model of hindlimb suspension (HLU) was adopted to simulate microgravity-induced bone loss, that was exposed to a hypomagnetic field of <300 nanotesla (nT) generated by a geomagnetic field-shielding chamber. Besides, a recent study showed that HLU induced bone loss was orchestrated by iron overload. Therefore, the changes of iron content in unloading-induced bone loss under HyMF condition were detected simultaneously. The results showed HyMF exacerbated the loss of bone mineral content (BMC), induced more detrimental effects on microstructure of cancellous bone but not cortical bone and yielded greater negative effects on biomechanical characteristics in mice femur under unloading status. Concomitantly, there was more iron accumulation in serum, liver, spleen and bone in the combined treatment group than in the separate unloading group or HyMF exposure group. These results showed that HyMF promoted additional bone loss in mice femur during mechanical unloading, and the potential mechanism may be involved in inducing iron overload of mice.
在深空探索任务中,宇航员将暴露于异常的空间环境中,包括微重力和弱磁环境(HyMF),其强度比地磁场(GMF)弱 10,000 倍。众所周知,太空中的微重力会导致骨质流失;然而,HyMF 是否参与这一过程尚不清楚。在此,我们旨在研究 HyMF 和微重力对骨质流失的联合影响。采用后肢悬吊(HLU)小鼠模型模拟微重力诱导的骨质流失,该模型暴露于由地磁屏蔽室产生的<300 纳特斯拉(nT)的弱磁环境中。此外,最近的一项研究表明,HLU 诱导的骨质流失是由铁过载引起的。因此,同时检测了 HyMF 条件下卸载诱导的骨质流失中铁含量的变化。结果表明,HyMF 加剧了骨矿物质含量(BMC)的流失,对松质骨的微观结构产生了更不利的影响,但对皮质骨没有影响,并且对卸载状态下小鼠股骨的生物力学特性产生了更大的负面影响。同时,联合治疗组血清、肝脏、脾脏和骨骼中的铁积累比单独卸载组或 HyMF 暴露组更多。这些结果表明,HyMF 在机械卸载期间促进了小鼠股骨的额外骨质流失,其潜在机制可能涉及诱导小鼠铁过载。