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居住温度影响小鼠运动诱导的葡萄糖调节和运动因子的表达。

Housing temperature influences exercise-induced glucose regulation and expression of exerkines in mice.

作者信息

Rao Zhijian, Geng Xue, Huang Peng, Wei Qiangman, Liu Shijie, Qu Chaoyi, Zhao Jiexiu

机构信息

Exercise Biological Center, China Institute of Sport Science, Beijing, China.

College of Physical Education, Shanghai Normal University, Shanghai, China.

出版信息

Exp Physiol. 2025 Aug;110(8):1099-1113. doi: 10.1113/EP092319. Epub 2024 Dec 25.

Abstract

The impact of housing temperature on exercise-induced metabolic adaptations is not well understood, despite extensive research on the benefits of exercise for metabolic health. The aim of this study was to elucidate how housing temperatures influence the molecular responses and metabolic benefits of exercise in mice. Male C57BL/6N mice were housed at either room temperature (RT, 21°C) or in a thermoneutral environment (TN, 29°C) and subjected to either a 6-week or acute exercise regimen. The results demonstrated that chronic exercise in TN conditions significantly improved glucose tolerance, whereas no such improvement was observed in RT conditions. Exercise reduced adipocyte size in inguinal and epididymal white adipose tissue in RT conditions, but no significant exercise-induced browning of inguinal white adipose tissue was detected at either housing temperature. Additionally, housing temperature predominantly influenced key metabolic proteins in skeletal muscle, with exercise and temperature exhibiting interactive effects on glycogen synthase, Glut4 and Pgc-1α. Moreover, the regulation of exerkines, including Fgf21, fetuin-A, irisin, Gdf15, spexin and apelin, was temperature dependent after both long-term and acute exercise. Notably, expression of Metrnl was consistently upregulated in skeletal muscle after long-term exercise in both RT and TN environments, but was downregulated after acute exercise. These findings highlight that environmental temperature critically modulates the metabolic benefits of exercise and the expression of exerkines. The results of this study suggest that conventional RT conditions might obscure the full metabolic effects of exercise. We recommend the use of TN conditions in future research to reduce confounding factors and provide a more accurate assessment of the metabolic benefits of exercise.

摘要

尽管针对运动对代谢健康的益处已开展了广泛研究,但居住温度对运动诱导的代谢适应性的影响仍未得到充分理解。本研究的目的是阐明居住温度如何影响小鼠运动的分子反应和代谢益处。将雄性C57BL/6N小鼠饲养在室温(RT,21°C)或热中性环境(TN,29°C)中,并使其接受为期6周的运动方案或急性运动方案。结果表明,在TN条件下进行慢性运动可显著改善葡萄糖耐量,而在RT条件下未观察到这种改善。在RT条件下,运动可减小腹股沟和附睾白色脂肪组织中脂肪细胞的大小,但在两种居住温度下均未检测到运动诱导的腹股沟白色脂肪组织显著褐变。此外,居住温度主要影响骨骼肌中的关键代谢蛋白,运动和温度对糖原合酶、Glut4和Pgc-1α表现出交互作用。而且,在长期和急性运动后,包括Fgf21、胎球蛋白-A、鸢尾素、Gdf15、spexin和apelin在内的运动因子的调节均依赖于温度。值得注意的是,在RT和TN环境中进行长期运动后,Metrnl在骨骼肌中的表达均持续上调,但在急性运动后则下调。这些发现突出表明,环境温度对运动的代谢益处和运动因子的表达具有关键的调节作用。本研究结果表明,传统的RT条件可能会掩盖运动的全部代谢效应。我们建议在未来的研究中使用TN条件,以减少混杂因素,并更准确地评估运动带来的代谢益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5bb/12314645/559dac88d38f/EPH-110-1099-g001.jpg

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