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高脂高糖饮食后大鼠比目鱼肌的急性和慢性变化

Acute and chronic changes in rat soleus muscle after high-fat high-sucrose diet.

作者信息

Collins Kelsey H, Hart David A, Smith Ian C, Issler Anthony M, Reimer Raylene A, Seerattan Ruth A, Rios Jaqueline L, Herzog Walter

机构信息

Human Performance Laboratory, University of Calgary, Calgary, Alberta, Canada.

McCaig Institute for Bone and Joint Health, University of Calgary, Calgary, Alberta, Canada.

出版信息

Physiol Rep. 2017 May;5(10):e13270. doi: 10.14814/phy2.13270.

Abstract

The effects of obesity on different musculoskeletal tissues are not well understood. The glycolytic quadriceps muscles are compromised with obesity, but due to its high oxidative capacity, the soleus muscle may be protected against obesity-induced muscle damage. To determine the time-course relationship between a high-fat/high-sucrose (HFS) metabolic challenge and soleus muscle integrity, defined as intramuscular fat invasion, fibrosis and molecular alterations over six time points. Male Sprague-Dawley rats were fed a HFS diet ( = 64) and killed at serial short-term (3 days, 1 week, 2 weeks, 4 weeks) and long-term (12 weeks, 28 weeks) time points. Chow-fed controls ( = 21) were killed at 4, 12, and 28 weeks. At sacrifice, animals were weighed, body composition was calculated (DXA), and soleus muscles were harvested and flash-frozen. Cytokine and adipokine mRNA levels for soleus muscles were assessed, using RT-qPCR Histological assessment of muscle fibrosis and intramuscular fat was conducted, CD68 cell number was determined using immunohistochemistry, and fiber typing was assessed using myosin heavy chain protein analysis. HFS animals demonstrated significant increases in body fat by 1 week, and this increase in body fat was sustained through 28 weeks on the HFS diet. Short-term time-point soleus muscles demonstrated up-regulated mRNA levels for inflammation, atrophy, and oxidative stress molecules. However, intramuscular fat, fibrosis, and CD68 cell number were similar to their respective control group at all time points evaluated. Therefore, the oxidative capacity of the soleus may be protective against diet-induced alterations to muscle integrity. Increasing oxidative capacity of muscles using aerobic exercise may be a beneficial strategy for mitigating obesity-induced muscle damage, and its consequences.

摘要

肥胖对不同肌肉骨骼组织的影响尚未得到充分了解。肥胖会损害糖酵解型股四头肌,但比目鱼肌因其高氧化能力,可能受到保护而免受肥胖引起的肌肉损伤。为了确定高脂/高糖(HFS)代谢挑战与比目鱼肌完整性之间的时间进程关系,将比目鱼肌完整性定义为六个时间点上的肌内脂肪浸润、纤维化和分子改变。给雄性Sprague-Dawley大鼠喂食HFS饮食(n = 64),并在连续的短期(3天、1周、2周、4周)和长期(12周、28周)时间点处死。喂食普通饲料的对照组(n = 21)在4周、12周和28周处死。处死时,对动物进行称重,计算身体组成(双能X线吸收法),并采集比目鱼肌并速冻。使用逆转录定量聚合酶链反应(RT-qPCR)评估比目鱼肌细胞因子和脂肪因子的mRNA水平。进行肌肉纤维化和肌内脂肪的组织学评估,使用免疫组织化学确定CD68细胞数量,并使用肌球蛋白重链蛋白分析评估纤维类型。HFS组动物在1周时体脂显著增加,并且在HFS饮食喂养28周期间,这种体脂增加一直持续。短期时间点的比目鱼肌显示炎症、萎缩和氧化应激分子的mRNA水平上调。然而,在所有评估的时间点,肌内脂肪、纤维化和CD68细胞数量与其各自的对照组相似。因此,比目鱼肌的氧化能力可能对饮食引起的肌肉完整性改变具有保护作用。通过有氧运动提高肌肉的氧化能力可能是减轻肥胖引起的肌肉损伤及其后果的有益策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68a0/5449557/4fee5b0482b2/PHY2-5-e13270-g001.jpg

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