高强度间歇训练联合补充甘氨酸可促进衰老小鼠对骨骼肌萎缩的抵抗。

IF 3.9 2区 医学 Q1 SPORT SCIENCES
Pin-Shi Ni, Meng-Meng Jia, Jia-Han He, Zhi Yu, Fang-Hui Li
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引用次数: 0

摘要

目的:探讨高强度间歇训练(HIIT)联合补充甘氨酸改善老年骨骼肌萎缩的分子机制。方法:选取19月龄雄性C57BL/ 6j小鼠(n = 16),随机分为Old久坐(sed)组、HIIT组、OSED+甘氨酸(O-Gly)组和HIIT+甘氨酸(H-Gly)组,进行为期8周的干预。评估最大握力和跑步速度。TUNEL染色检测心肌细胞凋亡;层粘连蛋白染色测定肌纤维横截面积;采用双氢乙啶染色法检测心肌细胞的活性氧(ROS)含量。采用Western blot和RT-qPCR检测肌细胞中与衰老、凋亡和铁下垂相关的蛋白和基因表达水平。采用化学方法检测丙二醛(MDA)、脂质过氧化(LPO)、谷胱甘肽(GSH)、谷胱甘肽氧化(GSSG)和总谷胱甘肽(T-GSH)含量的变化。采用RNA-seq技术筛选关键差异表达基因。AutoDockTools软件用于甘氨酸和关键差异蛋白之间的分子对接预测。结果:H-Gly组小鼠的最大握力和肌纤维横截面积有所提高,tunel阳性细胞明显减少。RNA-seq分析显示,铁下垂途径基因与Slc25a25离子转运相关基因高度相关,并通过检测铁下垂相关标记进一步验证。分子对接表明甘氨酸与Slc25a25存在结合位点,其结合能最高为-3.7 kcal/mol。结论:补充甘氨酸与HIIT在增加老年肌肉的肌肉质量和握力方面具有显著的协同作用。其机制可能与slc25a25介导的铁下垂减少有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-Intensity Interval Training Combined with Glycine Supplementation Drives Ferroptosis Resistance to Counteract Skeletal Muscle Atrophy in Aging Mice.

Objective: This study aimed to investigate the molecular mechanisms underlying the improvement of aged skeletal muscle atrophy by high-intensity interval training (HIIT) combined with glycine supplementation.

Methods: Male C57BL/6J mice aged 19 months ( n = 16) were randomly assigned to old sedentary (OSED), HIIT, OSED + glycine, and HIIT + glycine (H-Gly) groups for an 8-wk intervention. Maximum grip strength and running speed were assessed. Myocyte apoptosis was detected by TUNEL staining; myofiber cross-sectional area was measured by laminin staining; reactive oxygen species in myocytes were detected by dihydroethidium staining. Western blot and RT-qPCR were used to measure protein and gene expression levels related to senescence, apoptosis, and ferroptosis in myocytes. Chemical methods were employed to detect changes in malondialdehyde, lipid peroxide, glutathione, glutathione-oxidized, and total glutathione contents. RNA-seq technology was utilized to screen for key differentially expressed genes. AutoDockTools software was used for molecular docking predictions between glycine and key differential proteins.

Results: H-Gly group mice showed an improved maximum grip strength and muscle fiber cross-sectional area, with a significant reduction in TUNEL-positive cells. RNA-seq analysis revealed a high correlation between ferroptosis pathway genes and Slc25a25 ion transport-related genes, which was further validated by the detection of ferroptosis-related markers. Molecular docking indicated that glycine has binding sites with Slc25a25, with the highest binding energy of -3.7 kcal·mol -1 .

Conclusions: Glycine supplementation has a significant synergistic effect with HIIT in increasing muscle mass and grip strength in aged muscle. The mechanism might be associated with the decrease of Slc25a25-mediated ferroptosis.

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来源期刊
CiteScore
7.70
自引率
4.90%
发文量
2568
审稿时长
1 months
期刊介绍: Medicine & Science in Sports & Exercise® features original investigations, clinical studies, and comprehensive reviews on current topics in sports medicine and exercise science. With this leading multidisciplinary journal, exercise physiologists, physiatrists, physical therapists, team physicians, and athletic trainers get a vital exchange of information from basic and applied science, medicine, education, and allied health fields.
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