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全身振动对2型糖尿病模型大鼠骨骼特性的影响。

Effects of whole-body vibration on bone properties in type 2 diabetes model rats.

作者信息

Minematsu Akira, Nishii Yasue

机构信息

Department of Physical Therapy, Faculty of Health Science, Kio University, 4-2-2 Umaminaka, Koryo-cho, Kitakatsuragi-gun, Nara, 635-0832, Japan.

出版信息

Osteoporos Sarcopenia. 2024 Sep;10(3):101-107. doi: 10.1016/j.afos.2024.08.001. Epub 2024 Aug 16.

Abstract

OBJECTIVES

We examined the effects of whole-body vibration (WBV) on bone properties in type 2 diabetes (T2DM) model rats.

METHODS

Twenty male Hos:ZFDM- , rats (divided into DM and WBV groups, N = 10 each) and 10 Hos:ZFDM- , rats (as the control (CON) group) were used. The WBV group underwent WBV at 45 Hz frequency, with 0.5  acceleration (15 min/day, 5 days/week) for 8 weeks. Trabecular and cortical bone mass, trabecular bone microstructure (TBMS), and cortical bone geometry (CBG) were analyzed via micro-computed tomography. Bone mechanical strength (maximum load, break point, and stiffness) was also measured. Additionally, bone metabolic and DM-related markers were determined.

RESULTS

The bone mechanical strength of the femur improved in the WBV group, although muscle atrophy and bone deterioration were observed in the DM and WBV groups. The serum levels of bone-specific alkaline phosphatase and tartrate-resistant acid phosphatase-5b were significantly higher in the DM and WBV groups than in the CON group. Serum glucose and blood urea nitrogen levels were significantly lower in the WBV group than in the DM group.

CONCLUSIONS

This study suggests that WBV potentially improves the decrease in the bone mechanical strength of the femur, although it does not prevent the deterioration of bone mineral content, TBMS, and CBG parameters. Further studies are needed to investigate the effective timing and duration of WBV and the conditions that prevent T2DM and deterioration of bone properties and clarify the mechanism underlying WBV effects on bone properties in DM animals.

摘要

目的

我们研究了全身振动(WBV)对2型糖尿病(T2DM)模型大鼠骨骼特性的影响。

方法

使用20只雄性Hos:ZFDM- , 大鼠(分为糖尿病组和WBV组,每组N = 10只)和10只Hos:ZFDM- , 大鼠(作为对照组(CON))。WBV组以45 Hz频率进行全身振动,加速度为0.5(每天15分钟,每周5天),持续8周。通过微计算机断层扫描分析小梁骨和皮质骨质量、小梁骨微观结构(TBMS)和皮质骨几何形状(CBG)。还测量了骨机械强度(最大负荷、断点和刚度)。此外,还测定了骨代谢和糖尿病相关标志物。

结果

尽管在糖尿病组和WBV组中观察到肌肉萎缩和骨质恶化,但WBV组股骨的骨机械强度有所改善。糖尿病组和WBV组血清骨特异性碱性磷酸酶和抗酒石酸酸性磷酸酶-5b水平显著高于对照组。WBV组血清葡萄糖和血尿素氮水平显著低于糖尿病组。

结论

本研究表明,全身振动可能改善股骨骨机械强度的下降,尽管它不能阻止骨矿物质含量、小梁骨微观结构和皮质骨几何形状参数的恶化。需要进一步研究来探讨全身振动的有效时机和持续时间以及预防2型糖尿病和骨质恶化的条件,并阐明全身振动对糖尿病动物骨骼特性影响的潜在机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c32/11471131/1f193a2bbaf0/gr1.jpg

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