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Coordinate Transcriptomic and Metabolomic Effects of the Insulin Sensitizer Rosiglitazone on Fundamental Metabolic Pathways in Liver, Soleus Muscle, and Adipose Tissue in Diabetic db/db Mice

机译:胰岛素增敏剂罗格列酮对糖尿病性db / db小鼠肝脏,比目鱼肌和脂肪组织基本代谢途径的转录和代谢组学影响

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摘要

Rosiglitazone (RSG), developed for the treatment of type 2 diabetes mellitus, is known to have potent effects on carbohydrate and lipid metabolism leading to the improvement of insulin sensitivity in target tissues. To further assess the capacity of RSG to normalize gene expression in insulin-sensitive tissues, we compared groups of 18-day-treated db/db mice with increasing oral doses of RSG (10, 30, and 100 mg/kg/d) with untreated non-diabetic littermates (db/+). For this aim, transcriptional changes were measured in liver, inguinal adipose tissue (IAT) and soleus muscle using microarrays and real-time PCR. In parallel, targeted metabolomic assessment of lipids (triglycerides (TGs) and free fatty acids (FFAs)) in plasma and tissues was performed by UPLC-MS methods. Multivariate analyses revealed a relationship between the differential gene expressions in liver and liver trioleate content and between blood glucose levels and a combination of differentially expressed genes measured in liver, IAT, and muscle. In summary, we have integrated gene expression and targeted metabolomic data to present a comprehensive overview of RSG-induced changes in a diabetes mouse model and improved the molecular understanding of how RSG ameliorates diabetes through its effect on the major insulin-sensitive tissues.
机译:罗格列酮(RSG)开发用于治疗2型糖尿病,已知对碳水化合物和脂质代谢具有有效作用,可改善目标组织的胰岛素敏感性。为了进一步评估RSG在胰岛素敏感性组织中使基因表达正常化的能力,我们比较了口服剂量增加的RSG(10、30和100μmg/ kg / d)对18天治疗的db / db小鼠组的影响。未经治疗的非糖尿病同窝仔(db / +)。为此,使用微阵列和实时PCR检测了肝脏,腹股沟脂肪组织(IAT)和比目鱼肌中的转录变化。同时,通过UPLC-MS方法对血浆和组织中的脂质(甘油三酸酯(TGs)和游离脂肪酸(FFA))进行了代谢组学评估。多变量分析显示,肝脏中的差异基因表达与肝脏三油酸酯含量之间,血糖水平与在肝脏,IAT和肌肉中测得的差异表达基因的组合之间存在关联。总之,我们已经整合了基因表达和靶向代谢组学数据,以全面概述RSG诱导的糖尿病小鼠模型变化,并通过对RSG对主要胰岛素敏感性组织的作用改善了对RSG如何改善糖尿病的分子理解。

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