Journal of Biomedicine and Biotechnology · 2010 · 54 citations · 24 references
Metabolic DisorderMammalian PhysiologyUrinary ChangesInsulin SignalingObesityMetabolic SyndromeMetabonomic ComparisonPrincipal Component AnalysisChronic Kidney DiseaseHuman MetabolismMetabolic StateHealth SciencesUrological ResearchBiochemistryType 2Zucker Obese RatsMetabolomicsGk RatsPharmacologyEndocrinologyUrologyPhysiologyDiabetesMetabolic RegulationMetabolismMedicineNephrology
To further investigate pathogenesis and pathogenic process of type 2 diabetes mellitus (T2DM), we compared the urinary metabolic profiling of Zucker obese and Goto-kakizaki (GK) rats by NMR-based metabonomics. Principal component analysis (PCA) on urine samples of both models rats indicates markedly elevated levels of creatine/creatinine, dimethylamine, and acetoacetate, with concomitantly declined levels of citrate, 2-ketoglurarate, lactate, hippurate, and succinate compared with control rats, respectively. Simultaneously, compared with Zucker obese rats, the GK rats show decreased levels of trimethylamine, acetate, and choline, as well as increased levels of creatine/creatinine, acetoacetate, alanine, citrate, 2-ketoglutarate, succinate, lactate, and hippurate. This study demonstrates metabolic similarities between the two stages of T2DM, including reduced tricarboxylic acid (TCA) cycle and increased ketone bodies production. In addition, compared with Zucker obese rats, the GK rats have enhanced concentration of energy metabolites, which indicates energy metabolic changes produced in hyperglycemia stage more than in insulin resistance stage.
24
Claire L. Gavaghan, Elaine Holmes, Eva M. Lenz et al. · FEBS Letters · 2000 · 321 citations
Genetic analysis of non-insulin dependent diabetes mellitus in the GK rat
Joakim Galli, Luo-Sheng Li, Anna Glaser et al. · Nature Genetics · 1996 · 252 citations