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Multi-platform investigation of the metabolome in a leptin receptor defective murine model of type 2 diabetes

机译:多平台研究瘦素受体缺陷型2型糖尿病小鼠模型中的代谢组

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We describe a multi-platform (~1H NMR, LC-MS, microarray) investigation of metabolic disturbances associated with the leptin receptor defective (db/db) mouse model of type 2 diabetes using novel assignment methodologies. For the first time, several urinary metabolites were found to be associated with diabetes and/or diabetes progression and confirmed in both NMR and LC-MS datasets. The confirmed metabolites were trimethylamine-n-oxide (TMAO), creatine, carnitine, and phenylalanine. TMAO and phenylalanine were both elevated in db/db mice and decreased in these mice with age. Levels of both creatine and carnitine increase in diabetic mice with age and creatine was also significantly decreased in db/db mice. Additionally, many metabolic markers were found by either NMR or LC-MS, but could not be found in both, due to instrumental limitations. This indicates that the combined use of NMR and LC-MS instrumentation provides complementary information that would be otherwise unattainable. Pathway analyses of urinary metabolites and liver, muscle, and adipose tissue transcripts from the db/db model were also performed to identify altered biochemical processes in the diabetic mice. Metabolite and liver transcript levels associated with the TCA cycle and steroid processes were altered in db/db mice. In addition, gene expression in muscle and liver associated with fatty acid processing was altered in the diabetic mice and similar evidence was observed in the LC-MS data. Our findings highlight the importance of a number of processes known to be associated with diabetes and reveal tissue specific responses to the condition. When studying metabolic disorders such as diabetes, multiple platform integrated profiling of metabolite alterations in biofluids can provide important insights into the processes underlying the disease.
机译:我们描述了使用新型分配方法与2型糖尿病的瘦素受体缺陷(db / db)小鼠模型相关的代谢紊乱的多平台(〜1H NMR,LC-MS,芯片)研究。首次发现几种尿代谢物与糖尿病和/或糖尿病进展有关,并在NMR和LC-MS数据集中得到证实。确认的代谢物是三甲胺-正氧化物(TMAO),肌酸,肉碱和苯丙氨酸。 TMAO和苯丙氨酸在db / db小鼠中均升高,并且在这些小鼠中随着年龄的增长而降低。随着年龄的增长,糖尿病小鼠中肌酸和肉碱水平均升高,并且在db / db小鼠中肌酸也显着降低。此外,由于仪器的限制,通过NMR或LC-MS发现了许多代谢标记物,但在这两种标记物中均未发现。这表明NMR和LC-MS仪器的组合使用可提供否则无法获得的补充信息。还对来自db / db模型的尿液代谢产物以及肝,肌肉和脂肪组织转录本进行了途径分析,以鉴定糖尿病小鼠中生化过程的改变。在db / db小鼠中,与TCA周期和类固醇过程相关的代谢物和肝转录水平发生了变化。另外,在糖尿病小鼠中,与脂肪酸加工相关的肌肉和肝脏中的基因表达发生了改变,并且在LC-MS数据中观察到了类似的证据。我们的发现突出了许多已知与糖尿病相关的过程的重要性,并揭示了对该病的组织特异性反应。在研究代谢性疾病(例如糖尿病)时,生物流体中代谢物变化的多平台综合分析可为疾病潜在过程提供重要见解。

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