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Alterations of Mineral Elements in Osteoblast During Differentiation Under Hypo, Moderate and High Static Magnetic Fields

机译:低,中,高静磁场作用下成骨细胞分化过程中矿物质元素的变化

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摘要

Static magnetic fields (SMFs) can enhance the ability of bone formation by osteoblast and is a potential physical therapy to bone disorders and the maintenance of bone health. But, the mechanism is not clear yet. Certain mineral elements including macro and trace elements are essential for normal bone metabolism. Deficiency of these elements can cause severe bone disorders including osteoporosis. However, there are few reports regarding the role of mineral elements in the regulation of bone formation under SMFs. In this study, hypomagnetic field (HyMF) of 500 nT, moderate SMF (MMF) of 0.2 T, and high SMF (HiMF) of 16 T were used to investigate the effects of SMFs on mineral element (calcium, copper, iron, magnesium, manganese, and zinc) alteration of MC3T3-E1 cells during osteoblast mineralization. The results showed that osteoblasts in differentiation accumulated more mineral elements than non-differentiated cell cultures. Furthermore, HyMF reduced osteoblast differentiation but did not affect mineral elements levels compared with control of geomagnetic field. MMF decreased osteoblast differentiation with elevated iron content. HiMF enhanced osteoblast differentiation and increased all the mineral contents except copper. It is suggested that the altered potential of osteoblast differentiation under SMFs may partially due to the involvement of different mineral elements.
机译:静磁场(SMF)可以增强成骨细胞形成骨骼的能力,并且是治疗骨骼疾病和维护骨骼健康的潜在物理疗法。但是,机制尚不清楚。某些矿物质元素,包括宏观和微量元素,对于正常的骨骼代谢必不可少。这些元素的缺乏会导致严重的骨骼疾病,包括骨质疏松症。然而,关于矿物质元素在SMFs下调节骨形成的作用的报道很少。在这项研究中,使用500 nT的低磁场(HyMF),0.2 T的中度SMF(MMF)和16 T的高SMF(HiMF)来研究SMF对矿物元素(钙,铜,铁,镁的影响) ,锰和锌)成骨细胞矿化过程中MC3T3-E1细胞的变化。结果表明,成骨细胞在分化过程中比非分化细胞培养物中积累了更多的矿物质。此外,与地磁场控制相比,HyMF减少了成骨细胞分化,但不影响矿物质元素含量。 MMF通过增加铁含量降低成骨细胞分化。 HiMF增强成骨细胞分化并增加除铜以外的所有矿物质含量。建议在SMFs下成骨细胞分化的潜力改变可能部分归因于不同矿物质的参与。

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