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首页> 外文期刊>Journal of proteome research >Time Course of Molecular and Metabolic Events in the Development of Insulin Resistance in Fructose-Fed Rats
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Time Course of Molecular and Metabolic Events in the Development of Insulin Resistance in Fructose-Fed Rats

机译:果糖喂养大鼠胰岛素抵抗发生过程中分子和代谢事件的时程

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We aimed to determine the time-course of metabolic changes related to the early onset of insulin resistance (IR), trying to evidence breaking points preceding the appearance of the clinical IR phenotype. The model chosen was the fructose (FRU)-fed rat compared to controls fed with starch. We focused on the hepatic metabolism after 0, 5, 12, 30, or 45 days of FRU intake. The hepatic molecular metabolic changes followed indeed a multistep trajectory rather than a continuous progression. After 5 d of FRU feeding, we observed deep modifications in the hepatic metabolism, driven by the induction of lipogenic genes and important glycogen depletion. Thereafter, a steady-state period between days 12 and 30 was observed, characterized by a switch from carbohydrate to lipid utilisation at the hepatic level and increased insulin levels aiming at alleviating lipid accumulation and hyperglycemia, respectively. The FRU-fed animals were only clinically IR at day 45 (altered homeostasis model assessment-estimated insulin resistance and muscle glucose transport). Furthermore, the urine metabolome revealed even earlier metabolic trajectory changes that precede the hepatic alterations. We identified several candidate metabolites linked to the tryptophan nicotinamide metabolism and the installation of fasting hyperglycemia that suggest a role of this metabolic pathway on the development of the IR phenotype in the FRU-fed rats.
机译:我们旨在确定与胰岛素抵抗(IR)的早期发作有关的代谢变化的时程,试图证明在临床IR表型出现之前出现断裂点。所选择的模型是果糖(FRU)喂养的大鼠,而不是淀粉喂养的对照。我们研究了FRU摄入0、5、12、30或45天后的肝代谢。肝分子代谢变化确实遵循多步轨迹,而不是连续进行。 FRU喂食5天后,我们观察到由脂肪生成基因的诱导和重要糖原耗竭的驱动,肝脏代谢发生了深层修饰。此后,观察到介于第12天和第30天之间的稳态时期,其特征是在肝水平上从碳水化合物利用转变为脂质利用,并分别以减轻脂质积累和高血糖为目标而增加了胰岛素水平。 FRU喂养的动物在第45天才接受临床IR(改变的稳态模型评估估计了胰岛素抵抗和肌肉葡萄糖转运)。此外,尿液代谢组甚至显示出肝脏改变之前更早的代谢轨迹变化。我们鉴定了几种与色氨酸烟酰胺代谢和空腹高血糖有关的候选代谢物,表明这种代谢途径对FRU喂养的大鼠IR表型的发展具有重要作用。

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