静磁场对衰老大鼠骨矿物质含量的影响

Dimitrije Ćejić, Luka de
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引用次数: 0

摘要

导语:衰老被定义为代谢废物逐渐积累的结果,它导致细胞在数年的时间里出现各种结构和功能紊乱。随之而来的是骨组织的流失,骨骼变得不那么坚固。随着年龄的增长,骨重塑的周期变长,骨矿化程度降低。静态磁场(SMF)是一种稳定的磁场,可以是自然的也可以是人工的。其中等强度(1mT-1T)影响生理过程、细胞、遗传物质、行为和发育。到目前为止,大量的研究已经显示了静磁场对细胞培养物、实验动物和人类的不同影响。目的:研究静磁场(SMF)对衰老大鼠骨矿物质含量(BMC)的影响。材料与方法:选用雄性Wistar大鼠,年龄3岁。18只动物分为两组:暴露组(实验组)和未暴露组(对照组)。实验组9只大鼠连续10周暴露于30mT强度的静磁场中,对照组9只大鼠不暴露于静磁场中。DXA(双能x线吸收仪)测定骨矿物质含量。结果:通过实验发现,静磁场暴露后,实验组中躯干区域和肋骨区域BMC值有统计学意义的升高。在所有其他感兴趣的区域:头、腿、骨盆骨、脊柱、总BMC - BMC值没有统计学上的显著变化。结论:在实验中,与未暴露于静态磁场的动物相比,暴露于SMF的动物BMC值的增加幅度更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effect of static magnetic field on bone mineral content in aging rats
Introduction: Aging is defined as a consequence of progressive accumulation of metabolic waste, which results in development of various disorders in the structure and function of cells over a number of years. It is followed by loss of bone tissue, where bones become less firm. The cycle of bone remodeling with age becomes longer, and the degree of bone mineralization decreases. Static magnetic fields (SMF) are stable magnetic fields that can be natural or artificial. Their moderate intensity (1mT-1T) affects physiological processes, cells, genetic material, behavior and development. So far, numerous studies have shown different effects of static magnetic fields on cell cultures, experimental animals, and the human population. Aim: Aim of this study was to determine the effect of static magnetic field (SMF) on bone mineral content (BMC) values in aging rats. Material and methods: Male Wistar rats, 3 years old, were used in the experiment. A total of 18 animals were divided into two groups: exposed (experimental group) and unexposed (control group). Nine animals from the experimental group were exposed to 30mT intensity static magnetic field for 10 weeks, while nine control rats were not exposed to the static magnetic field. Bone mineral content was measured by DXA (Dual-Energy X-Ray Absorptiometry. Results: Based on the experiment, it was found that after the exposure to the static magnetic field, in the experimental group, there is a statistically significant increase in the value of BMC in the trunk region and ribs region. In all other regions of interest: head, legs, pelvic bone, spine, total BMC - there were no statistically significant changes in BMC values. Conclusion: In the conducted experiment, a higher increase in the value of BMC was found in animals exposed to the SMF, compared to animals that were not exposed to the static magnetic field.
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