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应用动态代谢组学研究长期高脂喂养小鼠体内骨骼肌的葡萄糖代谢。

Application of dynamic metabolomics to examine in vivo skeletal muscle glucose metabolism in the chronically high-fat fed mouse.

作者信息

Kowalski Greg M, De Souza David P, Burch Micah L, Hamley Steven, Kloehn Joachim, Selathurai Ahrathy, Tull Dedreia, O'Callaghan Sean, McConville Malcolm J, Bruce Clinton R

机构信息

Centre for Physical Activity and Nutrition Research, School of Exercise and Nutrition Sciences, Deakin University, Burwood, Victoria 3125, Australia.

Metabolomics Australia, Bio21 Institute of Molecular Science and Biotechnology, University of Melbourne, Parkville, Victoria 3010, Australia.

出版信息

Biochem Biophys Res Commun. 2015 Jun 19;462(1):27-32. doi: 10.1016/j.bbrc.2015.04.096. Epub 2015 Apr 28.

Abstract

RATIONALE

Defects in muscle glucose metabolism are linked to type 2 diabetes. Mechanistic studies examining these defects rely on the use of high fat-fed rodent models and typically involve the determination of muscle glucose uptake under insulin-stimulated conditions. While insightful, they do not necessarily reflect the physiology of the postprandial state. In addition, most studies do not examine aspects of glucose metabolism beyond the uptake process. Here we present an approach to study rodent muscle glucose and intermediary metabolism under the dynamic and physiologically relevant setting of the oral glucose tolerance test (OGTT).

METHODS AND RESULTS

In vivo muscle glucose and intermediary metabolism was investigated following oral administration of [U-(13)C] glucose. Quadriceps muscles were collected 15 and 60 min after glucose administration and metabolite flux profiling was determined by measuring (13)C mass isotopomers in glycolytic and tricarboxylic acid (TCA) cycle intermediates via gas chromatography-mass spectrometry. While no dietary effects were noted in the glycolytic pathway, muscle from mice fed a high fat diet (HFD) exhibited a reduction in labelling in TCA intermediates. Interestingly, this appeared to be independent of alterations in flux through pyruvate dehydrogenase. In addition, our findings suggest that TCA cycle anaplerosis is negligible in muscle during an OGTT.

CONCLUSIONS

Under the dynamic physiologically relevant conditions of the OGTT, skeletal muscle from HFD fed mice exhibits alterations in glucose metabolism at the level of the TCA cycle.

摘要

原理

肌肉葡萄糖代谢缺陷与2型糖尿病相关。研究这些缺陷的机制性研究依赖于使用高脂喂养的啮齿动物模型,通常涉及在胰岛素刺激条件下测定肌肉葡萄糖摄取。虽然这些研究很有见地,但它们不一定反映餐后状态的生理学情况。此外,大多数研究并未考察葡萄糖摄取过程之外的葡萄糖代谢方面。在此,我们提出一种方法,用于在口服葡萄糖耐量试验(OGTT)的动态且生理相关环境下研究啮齿动物肌肉葡萄糖及中间代谢。

方法与结果

口服[U-(13)C]葡萄糖后,对体内肌肉葡萄糖及中间代谢进行研究。在葡萄糖给药后15分钟和60分钟收集股四头肌,并通过气相色谱-质谱法测量糖酵解和三羧酸(TCA)循环中间体中的(13)C质量同位素异构体,以确定代谢物通量谱。虽然在糖酵解途径中未观察到饮食影响,但高脂饮食(HFD)喂养小鼠的肌肉中TCA中间体的标记减少。有趣的是,这似乎与丙酮酸脱氢酶通量的改变无关。此外,我们的研究结果表明,在OGTT期间肌肉中的TCA循环回补作用可忽略不计。

结论

在OGTT的动态生理相关条件下,高脂饮食喂养小鼠的骨骼肌在TCA循环水平上表现出葡萄糖代谢改变。

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