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一项关于冬眠达乌尔黄鼠(Spermophilus dauricus)肌肉骨骼形态和代谢的时间研究。

A temporal study on musculoskeletal morphology and metabolism in hibernating Daurian ground squirrels (Spermophilus dauricus).

机构信息

Shaanxi Key Laboratory for Animal Conservation, College of Life Sciences, Northwest University, Xi'an 710069, China; Key Laboratory of Resource Biology and Biotechnology in Western China, College of Life Sciences, Northwest University, Ministry of Education, Xi'an 710069, China.

Shaanxi Key Laboratory for Animal Conservation, College of Life Sciences, Northwest University, Xi'an 710069, China; Key Laboratory of Resource Biology and Biotechnology in Western China, College of Life Sciences, Northwest University, Ministry of Education, Xi'an 710069, China.

出版信息

Bone. 2021 Mar;144:115826. doi: 10.1016/j.bone.2020.115826. Epub 2020 Dec 19.

Abstract

Hibernators provide a natural model to study the mechanisms underlying the prevention of disuse-induced musculoskeletal deterioration. Currently, however, these mechanisms remain poorly understood. Here, we investigated changes in morphology and metabolic indices in the hindlimb skeletal muscle and bone of Daurian ground squirrels (Spermophilus dauricus) during different periods of hibernation, and further explored the possible mechanisms involved in the musculoskeletal maintenance of hibernators after prolonged inactivity. Results showed that, compared with levels in the summer active group (SA), almost all morphological indices of skeletal muscle and bone, including muscle mass, muscle fiber cross-sectional area, bone mass, bone length, and bone mechanical properties, were unchanged in the different periods of hibernation. Only a few microstructural parameters of bone showed deterioration in the post-hibernation group (POST), including increased specific bone surface (+71%), decreased trabecular thickness (-43%), and decreased average cortical thickness (-51%) in the tibia, and increased trabecular separation (+60%) in the femur. Furthermore, most examined metabolic indices involved in muscle protein turnover and bone remodeling were unchanged, except for several indices in the inter-bout arousal group (IBA), i.e., increase in the phosphorylation of eukaryotic initiation factor 4E binding protein 1 (4E-BP1) (IBA vs. SA, +80%) in the vastus medialis muscle, increase in chymotrypsin-like activity (IBA vs. SA, +62%) in the tibialis anterior muscle, increase in osteoblast number (IBA vs. SA, +110%; IBA vs. torpor (TOR), +68%) and osteoclast number (IBA vs. TOR, +105%) per bone surface in the tibia, and increase in osteoclast surface per bone surface (IBA vs. TOR, +128%) in the femur. The above evidence demonstrates that the musculoskeletal morphology of squirrels was largely preserved, and musculoskeletal metabolism was generally maintained after prolonged hibernation inactivity. These findings suggest that the well-maintained musculoskeletal metabolism may be a vital mechanism underlying the preservation of the musculoskeletal system during hibernation. The coincident up-regulation of several metabolic indicators during IBA indicates that musculoskeletal metabolism may be relatively active during this period; however, its role in musculoskeletal maintenance during hibernation needs further clarification.

摘要

冬眠动物为研究预防废用性肌肉骨骼恶化的机制提供了自然模型。然而,目前这些机制仍未被充分理解。在这里,我们研究了达乌尔黄鼠(Spermophilus dauricus)在不同冬眠期的后肢骨骼肌和骨骼的形态和代谢指标的变化,并进一步探讨了在长时间不活动后,冬眠动物维持肌肉骨骼的可能机制。结果表明,与夏季活跃组(SA)相比,在不同的冬眠期,骨骼肌和骨骼的几乎所有形态学指标,包括肌肉质量、肌纤维横截面积、骨质量、骨长度和骨机械性能,均无变化。只有少数骨骼的微观结构参数在冬眠后组(POST)中出现恶化,包括胫骨的比骨表面积增加(+71%)、骨小梁厚度减少(-43%)和平均皮质厚度减少(-51%),以及股骨的骨小梁分离增加(+60%)。此外,大多数参与肌肉蛋白质周转和骨重塑的代谢指标无变化,除了在觉醒期(IBA)中几个指标,即股四头肌中真核起始因子 4E 结合蛋白 1(4E-BP1)的磷酸化增加(IBA 与 SA 相比,+80%)、胫骨前肌中糜蛋白酶样活性增加(IBA 与 SA 相比,+62%)、骨细胞数量增加(IBA 与 SA 相比,+110%;IBA 与冬眠(TOR)相比,+68%)和破骨细胞数量增加(IBA 与 TOR 相比,+105%)/骨表面,以及股骨中破骨细胞表面/骨表面增加(IBA 与 TOR 相比,+128%)。上述证据表明,松鼠的肌肉骨骼形态在长时间冬眠不活动后得到了很大的保存,肌肉骨骼代谢总体上得到了维持。这些发现表明,维持良好的肌肉骨骼代谢可能是冬眠期间肌肉骨骼系统保存的重要机制。在觉醒期(IBA)期间,一些代谢指标的上调表明,肌肉骨骼代谢在此期间可能相对活跃;然而,其在冬眠期间维持肌肉骨骼的作用需要进一步澄清。

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