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与体力活动无关,鼠模型中的容积性肌肉损失损伤会损害全身代谢。

Independent of physical activity, volumetric muscle loss injury in a murine model impairs whole-body metabolism.

机构信息

School of Kinesiology, University of Minnesota, Minneapolis, MN, United States of America.

Department of Kinesiology, University of Georgia, Athens, GA, United States of America.

出版信息

PLoS One. 2021 Jun 25;16(6):e0253629. doi: 10.1371/journal.pone.0253629. eCollection 2021.

Abstract

Volumetric muscle loss (VML) injuries result in a non-recoverable loss of muscle tissue and function due to trauma or surgery. Reductions in physical activity increase the risk of metabolic comorbidities over time, and it is likely that VML may reduce whole-body activity. However, these aspects remain uncharacterized following injury. Our goal was to characterize the impact of VML on whole-body physical activity and metabolism, and to further investigate possible muscle-specific metabolic changes. Adult male C57Bl/6J (n = 28) mice underwent a standardized VML injury to the posterior compartment of the hind limb, or served as injury naïve controls. Mice underwent longitudinal evaluation of whole-body physical activity and metabolism in specialized cages up to three times over the course of 8 weeks. At terminal time points of 4- and 8-weeks post-VML in vivo muscle function of the posterior compartment was evaluated. Additionally, the gastrocnemius muscle was collected to understand histological and biochemical changes in the muscle remaining after VML. The VML injury did not alter the physical activity of mice. However, there was a noted reduction in whole-body metabolism and diurnal fluctuations between lipid and carbohydrate oxidation were also reduced, largely driven by lower carbohydrate utilization during active hours. Following VML, muscle-specific changes indicate a decreased proportion of fast (i.e., type IIb and IIx) and a greater proportion of slow (i.e., type I and IIa) fibers. However, there were minimal changes in the capillarity and metabolic biochemical activity properties of the gastrocnemius muscle, suggesting a miss-match in capacity to support the physiologic needs of the fibers. These novel findings indicate that following VML, independent of changes in physical activity, there is whole-body diurnal metabolic inflexibility. Supporting future investigations into the chronic and overlooked co-morbidities of VML injury.

摘要

体积性肌肉损失 (VML) 损伤会导致肌肉组织和功能不可恢复,这是由于创伤或手术造成的。身体活动减少会增加随着时间的推移发生代谢合并症的风险,而且 VML 很可能会降低全身活动量。然而,这些方面在受伤后仍然没有得到描述。我们的目标是描述 VML 对全身体力活动和代谢的影响,并进一步研究可能存在的肌肉特异性代谢变化。成年雄性 C57Bl/6J(n = 28)小鼠接受了后肢后间隔的标准化 VML 损伤,或作为未受伤对照。在 8 周的过程中,使用特殊的笼子对小鼠进行了全身体力活动和代谢的纵向评估,最多进行了 3 次。在 VML 后 4 周到 8 周的终末时间点,评估了后间隔的体内肌肉功能。此外,还收集了比目鱼肌以了解 VML 后剩余肌肉的组织学和生化变化。VML 损伤并未改变小鼠的体力活动。然而,全身代谢明显降低,脂质和碳水化合物氧化的昼夜波动也减少,这主要是由于活跃时间内碳水化合物利用率降低所致。VML 后,肌肉特异性变化表明快肌(即 IIb 和 IIx 型)的比例降低,而慢肌(即 I 和 IIa 型)的比例增加。然而,比目鱼肌的毛细血管和代谢生化活性特性几乎没有变化,这表明其与纤维的生理需求之间存在不匹配。这些新发现表明,VML 后,全身昼夜代谢灵活性受损,与体力活动变化无关。支持对 VML 损伤的慢性和被忽视的合并症进行进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a09/8232406/41c3514f95ad/pone.0253629.g001.jpg

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