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首页> 外文期刊>American Journal of Physiology >A low-protein diet combined with low-dose endotoxin leads to changes in glucose homeostasis in weanling rats
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A low-protein diet combined with low-dose endotoxin leads to changes in glucose homeostasis in weanling rats

机译:低蛋白质饮食与低剂量内毒素相结合,导致断奶大鼠葡萄糖稳态的变化导致葡萄糖稳态

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摘要

Severe malnutrition is a leading cause of global childhood mortality, and infection and hypo-glycemia or hyperglycemia are commonly present. The etiology behind the changes in glucose homeostasis is poorly understood. Here, we generated an animal model of severe malnutrition with and without low-grade inflammation to investigate the effects on glucose homeostasis. Immediately after weaning, rats were fed diets containing 5 [low-protein diet (LP)] or 20% protein [control diet (CTRL)], with or without repeated low-dose intraperitoneal lipopolysaccharide (LPS; 2 mg/kg), to mimic inflammation resulting from infections. After 4 wk on the diets, hyperglycemic clamps or euglycemic hyper-insulinemic clamps were performed with infusion of [U-13C6]glucose and [2-13C]glycerol to assess insulin secretion, action, and hepatic glucose metabolism. In separate studies, pancreatic islets were isolated for further analyses of insulin secretion and islet morphometry. Glucose clearance was reduced significantly by LP feeding alone (16%) and by LP feeding with LPS administration (43.8%) compared with control during the hyperglycemic clamps. This was associated with a strongly reduced insulin secretion in LP-fed rats in vivo as well as ex vivo in islets but signficantly enhanced whole body insulin sensitivity. Gluconeogenesis rates were unaffected by LP feeding, but glycogenolysis was higher after LP feeding. A protein-deficient diet in young rats leads to a susceptibility to low-dose endotoxin-induced impairment in glucose clearance with a decrease in the islet insulin secretory pathway. A protein-deficient diet is associated with enhanced peripheral insulin sensitivity but impaired insulin-mediated suppression of hepatic glycogenolysis.
机译:严重的营养不良是全球儿童死亡率的主要原因,并且通常存在感染和血糖血症或高血糖。葡萄糖稳态变化背后的病因很差。在这里,我们生成了严重营养不良的动物模型,没有低级炎症,以研究葡萄糖稳态的影响。断奶后,大鼠喂养含有5 [低蛋白质饮食(LP)]或20%蛋白[对照饮食(CTRL)]的饮食,有或没有重复低剂量腹膜内脂多糖(LPS; 2 mg / kg),感染引起的模拟炎症。在饮食4周后,用血糖和[2-13℃]甘油输注进行高血糖夹具或神经血糖高胰岛素夹杂物,以评估胰岛素分泌,作用和肝葡萄糖代谢。在单独的研究中,分离胰岛胰岛,进一步分析胰岛素分泌和胰岛形态学。单独的LP饲料(16%)和LP饲料与LPS施用(43.8%)与高血糖夹持的控制,葡萄糖间隙明显降低。这与体内LP喂养大鼠的胰岛素分泌强烈降低,并且在胰岛中的离体中,但略微增强了全身胰岛素敏感性。葡糖苷率不受LP进料的影响,但在LP进料后糖炎较高。幼鼠缺乏蛋白质饮食导致胰岛素分泌途径的减少对低剂量内毒素诱导的葡萄糖间隙损伤的敏感性。蛋白质缺乏饮食与增强的外周胰岛素敏感性,但胰岛素介导的肝血糖溶解的抑制损伤。

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