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通过双能X线吸收法评估运动和低氧对小鼠肌肉质量和组成的影响

Changes in Muscle Mass and Composition by Exercise and Hypoxia as Assessed by DEXA in Mice.

作者信息

McNair Benjamin D, Marcello Nicholas A, Smith Derek T, Schmitt Emily E, Bruns Danielle R

机构信息

Division of Kinesiology & Health, University of Wyoming, Laramie, WY 82070, USA.

出版信息

Medicina (Kaunas). 2020 Sep 3;56(9):446. doi: 10.3390/medicina56090446.

Abstract

Skeletal muscle is critical for overall health and predicts quality of life in several chronic diseases, thus quantification of muscle mass and composition is necessary to understand how interventions promote changes in muscle quality. The purpose of this investigation was to quantify changes in muscle mass and composition in two distinct pre-clinical models of changes in muscle quality using a clinical dual X-ray absorptiometry (DEXA), validated for use in mice. Adult C57Bl6 male mice were given running wheels (RUN; muscle hypertrophy) or placed in hypobaric hypoxia (HH; muscle atrophy) for four weeks. Animals received weekly DEXA and terminal collection of muscle hind limb complex (HLC) and quadriceps weights and signaling for molecular regulators of muscle mass and composition. : HH decreased total HLC muscle mass with no changes in muscle composition. RUN induced loss of fat mass in both the quadriceps and HLC. Molecular mediators of atrophy were upregulated in HH while stimulators of muscle growth were higher in RUN. These changes in muscle mass and composition were quantified by a clinical DEXA, which we described and validated for use in pre-clinical models. RUN improves muscle composition while HH promotes muscle atrophy, though changes in composition in hypoxia remain unclear. Use of the widely available clinical DEXA for use in mice enhances translational research capacity to understand the mechanisms by which atrophy and hypertrophy promote skeletal muscle and overall health.

摘要

骨骼肌对整体健康至关重要,并可预测多种慢性疾病的生活质量,因此量化肌肉质量和组成对于理解干预措施如何促进肌肉质量变化是必要的。本研究的目的是使用经验证可用于小鼠的临床双能X线吸收仪(DEXA),量化两种不同的肌肉质量变化临床前模型中肌肉质量和组成的变化。成年C57Bl6雄性小鼠被给予跑步轮(RUN;肌肉肥大)或置于低压低氧环境(HH;肌肉萎缩)中四周。动物每周接受DEXA检查,并在实验结束时收集后肢复合体(HLC)和股四头肌的重量以及肌肉质量和组成的分子调节因子的信号。结果显示:HH降低了总HLC肌肉质量,而肌肉组成没有变化。RUN导致股四头肌和HLC中的脂肪量减少。HH中萎缩的分子介质上调,而RUN中肌肉生长刺激因子更高。这些肌肉质量和组成的变化通过临床DEXA进行了量化,我们对其进行了描述并验证可用于临床前模型。RUN改善了肌肉组成,而HH促进了肌肉萎缩,尽管低氧环境下组成的变化仍不清楚。在小鼠中使用广泛可用的临床DEXA增强了转化研究能力,以了解萎缩和肥大促进骨骼肌和整体健康的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6622/7558449/5cac0e275d82/medicina-56-00446-g001.jpg

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