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Concordance of Changes in Metabolic Pathways Based on Plasma Metabolomics and Skeletal Muscle Transcriptomics in Type 1 Diabetes

机译:基于1型糖尿病血浆代谢组学和骨骼肌转录组学的代谢途径变化的一致性

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摘要

Insulin regulates many cellular processes, but the full impact of insulin deficiency on cellular functions remains to be defined. Applying a mass spectrometry–based nontargeted metabolomics approach, we report here alterations of 330 plasma metabolites representing 33 metabolic pathways during an 8-h insulin deprivation in type 1 diabetic individuals. These pathways included those known to be affected by insulin such as glucose, amino acid and lipid metabolism, Krebs cycle, and immune responses and those hitherto unknown to be altered including prostaglandin, arachidonic acid, leukotrienes, neurotransmitters, nucleotides, and anti-inflammatory responses. A significant concordance of metabolome and skeletal muscle transcriptome–based pathways supports an assumption that plasma metabolites are chemical fingerprints of cellular events. Although insulin treatment normalized plasma glucose and many other metabolites, there were 71 metabolites and 24 pathways that differed between nondiabetes and insulin-treated type 1 diabetes. Confirmation of many known pathways altered by insulin using a single blood test offers confidence in the current approach. Future research needs to be focused on newly discovered pathways affected by insulin deficiency and systemic insulin treatment to determine whether they contribute to the high morbidity and mortality in T1D despite insulin treatment.
机译:胰岛素调节许多细胞过程,但胰岛素缺乏对细胞功能的完全影响尚待确定。应用基于质谱的非靶向代谢组学方法,我们在此报告了1型糖尿病个体在8小时胰岛素剥夺期间代表33种代谢途径的330种血浆代谢物的变化。这些途径包括已知受胰岛素影响的途径,例如葡萄糖,氨基酸和脂质代谢,克雷布斯循环和免疫反应,以及迄今尚未改变的那些途径,包括前列腺素,花生四烯酸,白三烯,神经递质,核苷酸和抗炎反应。基于代谢组和骨骼肌转录组的途径的显着一致性支持了这样一种假设,即血浆代谢产物是细胞事件的化学指纹。尽管胰岛素治疗可使血浆葡萄糖和许多其他代谢物正常化,但非糖尿病和胰岛素治疗的1型糖尿病之间存在71种代谢物和24种途径不同。使用单次血液测试对胰岛素已知的许多已知途径的确认为当前方法提供了信心。未来的研究需要集中在新发现的受胰岛素缺乏和全身性胰岛素治疗影响的途径上,以确定尽​​管采用胰岛素治疗,它们是否有助于T1D的高发病率和高死亡率。

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