Cho You-Ree, Kim Hyo-Jeong, Park So-Young, Ko Hwi Jin, Hong Eun-Gyoung, Higashimori Takamasa, Zhang Zhiyou, Jung Dae Young, Ola M Shamsul, Lanoue Kathryn F, Leiter Edward H, Kim Jason K
Department of Internal Medicine, Section of Endocrinology and Metabolism, Yale University School of Medicine, New Haven, Connecticut, USA.
Am J Physiol Endocrinol Metab. 2007 Jul;293(1):E327-36. doi: 10.1152/ajpendo.00376.2006.
As a new mouse model of obesity-induced diabetes generated by combining quantitative trait loci from New Zealand Obese (NZO/HlLt) and Nonobese Nondiabetic (NON/LtJ) mice, NONcNZO10/LtJ (RCS10) male mice developed type 2 diabetes characterized by maturity onset obesity, hyperglycemia, and insulin resistance. To metabolically profile the progression to diabetes in preobese and obese states, a 2-h hyperinsulinemic euglycemic clamp was performed and organ-specific changes in insulin action were assessed in awake RCS10 and NON/LtJ (control) males at 8 and 13 wk of age. Prior to development of obesity and attendant increases in hepatic lipid content, 8-wk-old RCS10 mice developed insulin resistance in liver and skeletal muscle due to significant decreases in insulin-stimulated glucose uptake and GLUT4 expression in muscle. Transition to an obese and hyperglycemic state by 13 wk of age exacerbated insulin resistance in skeletal muscle, liver, and heart associated with organ-specific increases in lipid content. Thus, this polygenic mouse model of type 2 diabetes, wherein plasma insulin is only modestly elevated and obesity develops with maturity yet insulin action and glucose metabolism in skeletal muscle and liver are reduced at an early prediabetic age, should provide new insights into the etiology of type 2 diabetes.
作为一种通过结合来自新西兰肥胖(NZO/HlLt)和非肥胖非糖尿病(NON/LtJ)小鼠的数量性状基因座而产生的肥胖诱导型糖尿病新小鼠模型,NONcNZO10/LtJ(RCS10)雄性小鼠患2型糖尿病,其特征为成年起病型肥胖、高血糖和胰岛素抵抗。为了对肥胖前期和肥胖状态下糖尿病进展的代谢特征进行分析,在8周龄和13周龄的清醒RCS10和NON/LtJ(对照)雄性小鼠中进行了2小时高胰岛素正常血糖钳夹试验,并评估了胰岛素作用的器官特异性变化。在肥胖发展及肝脏脂质含量随之增加之前,8周龄的RCS10小鼠由于胰岛素刺激的葡萄糖摄取和肌肉中GLUT4表达显著降低,在肝脏和骨骼肌中出现了胰岛素抵抗。到13周龄时转变为肥胖和高血糖状态,加剧了骨骼肌、肝脏和心脏的胰岛素抵抗,这与器官特异性脂质含量增加有关。因此,这种2型糖尿病的多基因小鼠模型,其中血浆胰岛素仅适度升高,肥胖随成熟而发展,但在糖尿病前期早期骨骼肌和肝脏中的胰岛素作用和葡萄糖代谢就已降低,应该能为2型糖尿病的病因提供新见解。