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熊果酸对石膏固定诱导的肌肉萎缩大鼠肌肉质量和骨微结构的影响。

Effects of ursolic acid on muscle mass and bone microstructure in rats with casting-induced muscle atrophy.

作者信息

Kang Yun Seok, Noh Eun Bi, Kim Sang Hyun

出版信息

J Exerc Nutrition Biochem. 2019 Sep 30;23(3):45-49. doi: 10.20463/jenb.2019.0022.

Abstract

PURPOSE

Recent studies suggest that ursolic acid (UA) is a potential candidate for a resistance exercise mimetic that can increase muscle mass and alleviate the deleterious effect of skeletal muscle atrophy on bone health. However, these studies evaluated the effects of UA on skeletal muscle and bone tissues, and they have not verified whether such effect could occur concurrently on muscle and bone, as is the case with resistance exercise. Thus, the aim of this study was to analyze the effect of UA injection on muscle mass and bone microstructure using an animal model of atrophy to demonstrate the potential of UA as a resistance exercise mimetic.

METHODS

The immobilization (IM) method was used on the left hindlimb of Sprague Dawley (SD) rats for 10 days to induce muscle atrophy, whereas the right hindlimb was used as an internal control (IC). The animal models were divided into two groups, SED (sedentary, n=6) and UA (n=6) to demonstrate the effect of UA on atrophic skeletal muscles. The UA group received a daily intraperitoneal injection of UA (5 mg/kg/day) for 8 weeks. After 10 days of IM, the data collected for the IC were compared with that of IM to determine whether muscle atrophy might occur.

RESULTS

Muscle atrophy was induced and bone mineral density (BMD) decreased significantly. The 8-week UA treatment significantly increased the gastrocnemius muscle mass compared to the SED group. In regard to the effect of UA on bones, negative results such as a decrease in BMD, trabecular bone volume fraction, and trabecular number, and an increase in trabecular separation, were observed in the SED group, but no such difference was observed in the UA group. No significant difference was observed in atrophic hindlimbs between SED and UA groups.

CONCLUSION

These results alone are insufficient to suggest that UA is a potential resistance exercise mimetic for atrophic skeletal muscle and weakened bone. However, this study will help determine the potential of UA as a resistance exercise mimetic.

摘要

目的

近期研究表明,熊果酸(UA)可能是一种可增加肌肉量并减轻骨骼肌萎缩对骨骼健康有害影响的抗阻运动模拟物。然而,这些研究评估的是UA对骨骼肌和骨组织的影响,尚未验证这种作用是否能像抗阻运动那样同时在肌肉和骨骼上发生。因此,本研究的目的是使用萎缩动物模型分析UA注射对肌肉量和骨微结构的影响,以证明UA作为抗阻运动模拟物的潜力。

方法

采用制动(IM)方法对Sprague Dawley(SD)大鼠的左后肢进行10天处理以诱导肌肉萎缩,而右后肢用作内部对照(IC)。将动物模型分为两组,即SED(久坐不动,n = 6)和UA(n = 6)组,以证明UA对萎缩骨骼肌的作用。UA组每天腹腔注射UA(5 mg/kg/天),持续8周。IM处理10天后,将IC组收集的数据与IM组的数据进行比较,以确定是否会发生肌肉萎缩。

结果

诱导出了肌肉萎缩,骨矿物质密度(BMD)显著降低。与SED组相比,8周的UA治疗显著增加了腓肠肌质量。关于UA对骨骼的影响,在SED组中观察到了BMD、骨小梁体积分数和骨小梁数量减少以及骨小梁间距增加等负面结果,但在UA组中未观察到此类差异。SED组和UA组的萎缩后肢之间未观察到显著差异。

结论

仅凭这些结果不足以表明UA是萎缩骨骼肌和骨质疏松的潜在抗阻运动模拟物。然而,本研究将有助于确定UA作为抗阻运动模拟物的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfd9/6823650/113d69f4a12b/JENB_2019_v23n3_45_f001.jpg

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