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Impaired Glucose-Stimulated Insulin Secretion Is Coupled With Exocrine Pancreatic Lesions in the Cohen Diabetic Rat

机译:Cohen糖尿病大鼠中葡萄糖刺激的胰岛素分泌受损与外分泌胰腺病变相伴

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OBJECTIVE-The Cohen diabetes-sensitive rat develops postprandial hyperglycemia when fed a high-sucrose, copper-poor diet, whereas the Cohen diabetes-resistant rat maintains normo-glycemia. The pathophysiological basis of diabetes was studied in the Cohen diabetic rat centering on the interplay between the exocrine and endocrine compartments of the pancreas. RESEARCH DESIGN AND METHODS-Studies used male Cohen diabetes-sensitive and Cohen diabetes-resistant rats fed 1-month high-sucrose, copper-poor diet. Serum insulin and glucose levels were measured during glucose and insulin tolerance tests. The pancreas was evaluated for weight, insulin content, macrophage, and fat infiltration. Glucose-stimulated insulin secretion (GSIS) was determined in isolated perfused pancreas and in islets. RESULTS-Hyperglycemic Cohen diabetes-sensitive rats exhibited reduced pancreatic weight with lipid deposits and inter-leukin-1β-positive macrophage infiltration in the exocrine pancreas. Islet morphology was preserved, and total pancreatic insulin content did not differ from that of Cohen diabetes-resistant rats. Lipids did not accumulate in skeletal muscle, nor was insulin resistance observed in hyperglycemic Cohen diabetes-sensitive rats. Intravenous glucose-tolerance test revealed markedly elevated glucose levels associated with diminished insulin output. Insulin release was induced in vivo by the non-nutrient secretagogues arginine and tolbutamide, suggesting a selective unresponsiveness to glucose. Decreased GSIS was observed in the isolated perfused pancreas of the hyperglycemic Cohen diabetes-sensitive rat, whereas islets isolated from these rats exhibited glucose-dependent insulin secretion and proinsu-lin biosynthesis. CONCLUSIONS-The association of the in vivo insulin secretory defect with lipid accumulation and activated macrophage infiltration in the exocrine pancreas suggests that changes in the islet microenvironment are the culprit in the insulin secretory malfunction observed in vivo.
机译:目的-喂高蔗糖,缺乏铜的饮食时,对科恩(Cohen)糖尿病敏感的大鼠会出现餐后高血糖,而对科恩(Cohen)耐糖尿病的大鼠则保持正常血糖。在科恩(Cohen)糖尿病大鼠中,以胰腺的内分泌和内分泌之间的相互作用为中心,研究了糖尿病的病理生理基础。研究设计和方法-研究使用饲喂1个月高蔗糖,铜缺乏饮食的雄性Cohen糖尿病敏感性和Cohen糖尿病抵抗性雄性大鼠。在葡萄糖和胰岛素耐受性测试期间测量血清胰岛素和葡萄糖水平。评估胰腺的重量,胰岛素含量,巨噬细胞和脂肪浸润。在分离的灌注胰腺和胰岛中测定葡萄糖刺激的胰岛素分泌(GSIS)。结果高血糖Cohen糖尿病敏感性大鼠的胰腺重量降低,脂质分泌和白细胞介素1β阳性巨噬细胞浸润在外分泌胰腺中。胰岛形态得以保留,胰总胰岛素含量与耐Cohen糖尿病的大鼠无差异。在高血糖的科恩糖尿病敏感性大鼠中,脂质没有在骨骼肌中积累,也没有观察到胰岛素抵抗。静脉葡萄糖耐量试验显示,与胰岛素输出减少相关的葡萄糖水平显着升高。非营养性促泌素精氨酸和甲苯磺丁酰胺在体内诱导胰岛素释放,表明对葡萄糖的选择性无反应性。在高血糖Cohen糖尿病敏感大鼠的分离的胰腺中观察到GSIS降低,而从这些大鼠分离的胰岛则表现出葡萄糖依赖性胰岛素分泌和胰岛素原蛋白的生物合成。结论-体内胰岛素分泌缺陷与外分泌胰腺脂质堆积和活化的巨噬细胞浸润的关系表明,胰岛微环境的变化是体内观察到的胰岛素分泌功能障碍的元凶。

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