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Metabolomics investigation of exercise-modulated changes in metabolism in rat liver after exhaustive and endurance exercises

机译:力竭和耐力运动后运动调节大鼠肝脏代谢变化的代谢组学研究

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摘要

Exhaustive exercise and endurance exercise training modify the physiological status of the body differently. The present study aimed to evaluate the alteration in biochemical composition with exhaustive and endurance exercises in rats using metabolomics strategy. The metabolite profile of liver tissue was investigated on gas chromatography–mass spectrometry (GC–MS). Data further underwent partial least-squares-discriminant analysis (PLS-DA) to compare the effects on metabolites in sedentary control, exhaustively exercised and endurance trained rats. GC–MS detected 115 highly reproducible peaks in chromatograms from individual liver tissue extracts, and we identified 55 of them. The three groups showed significant differences in metabolic profile. Changes in liver metabolism involved metabolites such as amino acids, fatty acids, organic acids, and carbohydrates. Endurance training elevated the greater rate of tricarboxylic acid cycle and antioxidant activity, and exhaustive exercise led to accumulated urea markers and an inflammation response in liver. In addition, GC–MS-based metabolomic analysis is a promising tool to investigate a pathological status with different exercise programs. Keywords Metabolomics - PLS-DA - Exercise training - Exhaustive exercise - Liver Communicated by Susan Ward.
机译:力竭运动和耐力运动训练会不同地改变身体的生理状态。本研究旨在通过代谢组学方法评估力竭运动和耐力运动对大鼠生化成分的影响。通过气相色谱-质谱法(GC-MS)研究了肝脏组织的代谢产物。进一步对数据进行偏最小二乘判别分析(PLS-DA),以比较久坐控制,力竭运动和耐力训练大鼠对代谢产物的影响。 GC-MS在单个肝脏组织提取物中的色谱图中检测到115个高度可重现的峰,我们鉴定了其中的55个。这三组在代谢谱上显示出显着差异。肝脏代谢的变化涉及代谢产物,例如氨基酸,脂肪酸,有机酸和碳水化合物。耐力训练提高了三羧酸循环和抗氧化活性的比率,并且剧烈运动导致肝脏中尿素标记物积累和炎症反应。此外,基于GC–MS的代谢组学分析是一种有前途的工具,可用于研究不同锻炼程序的病理状态。代谢组学-PLS-DA-运动训练-力竭运动-肝由Susan Ward沟通。

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