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The evaluation of a combined ceramic material-based therapy in the musculoskeletal disorders: morphological analysis by micro-CT

机译:肌肉骨骼疾病中基于组合陶瓷材料的疗法评价:Micro-CT的形态分析

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With the average life expectancy for humans reaching 100 years, interest in the healthy life of the elderly has also increased. Musculoskeletal disorders are among the most common problems affecting the elderly. In this point of view, we inevitably need to investigate a way to prevent bone loss and muscle atrophy. Of the various approaches to accelerate the treatment of bone loss and muscle atrophy, recently, ceramic material-based therapies have been widely used since it is one of the most feasible ways to adopt safely and effectively. It is generally accepted that far infrared radiation(FIR) emitted from ceramic materials could slow bone loss and promote improvement of muscle atrophy. In this study, we tried to suggest a simple and low-cost approach for FIR stimulation by using a combined ceramic material, named tourmanium (TM). TM is composed of tourmaline, germanium, volcanic rock and eleven, which has an outstanding emittance of FIR. 14 male C57BL/6 mice (12-week-old) were used to compare the effects with the stimulation of tourmanium (TM group) or without the stimulation of tourmanium (CON group). Both groups underwent sciatic neurectomy (denervation) on the right hind-limb to simulate the musculoskeletal disorder including bone loss and muscle atrophy. The treatment with TM was performed daily, for a total of 4 weeks (experimental temperature: 37°C, duration time: 20 min). As a result, the normalized values of changes in bone quality due to TM treatment shows a significant increase in bone quality in TM group compared to it of CON group ( ). Similarly, the total volume of muscle in TM group was also significantly higher than that of CON group ( ). Based on the results, it could be suggested that tourmanium(TM) could effectively prevent bone loss and muscle atrophy induced by denervation.
机译:随着平均预期寿命为人类达到100年来,中老年人的健康生活的兴趣也有所增加。肌肉骨骼疾病是影响中老年人最常见的问题之一。在这个角度来看,我们不可避免地需要调查的方式,防止骨量丢失,肌肉萎缩。各种方法加速骨质流失和肌肉萎缩的治疗,最近,基于陶瓷材料的疗法已被广泛使用,因为它是最可行的方法安全有效地领养一个。人们普遍接受的是,由陶瓷材料发射的远红外辐射(FIR)可以减缓骨质流失和促进肌肉萎缩的改进。在这项研究中,我们试图通过使用组合的陶瓷材料,名为tourmanium(TM)表示建议为FIR刺激的简单和低成本的方法。 TM是由电石,锗,火山岩和十,其中有FIR杰出的发射率。 14雄性C57BL / 6小鼠(12周龄)用于比较与tourmanium(TM组)的刺激或不tourmanium(CON组)的刺激的影响。两组进行右侧后肢坐骨神经神经切断术(去神经支配)来模拟肌肉骨骼疾病,包括骨质丢失和肌肉萎缩。被每日执行具有TM治疗,共4周(实验温度:37℃,持续时间:20分钟)。其结果是,在骨质量由于TM治疗显示出变化的显著增加骨质量TM组的归一化值相比它CON组()。类似地,肌肉在TM组的总体积也比CON组显著更高()。根据研究结果,它可以被认为tourmanium(TM)能有效地预防骨质流失和神经损伤性肌肉萎缩。

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