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High-fat diet induces early-onset diabetes in heterozygous Pax6 mutant mice

机译:高脂饮食在杂合性Pax6突变小鼠中诱发早发型糖尿病

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Background: Type 2 diabetes is caused by interactions between genetic and environmental factors. Our previous studies reported that paired box6 mutation heterozygosity (Pax6m/+) led to defective proinsulin processing and subsequent abnormal glucose metabolism in mice at 6months of age. However, high-fat diet exposure could be an important incentive for diabetes development. In this study, we aimed to develop a novel diabetic model imitating human type 2 diabetes by exposing Pax6m/+ mice to high-fat diet and to explore the underlying mechanism of diabetes in this model. Methods: Over 300 Pax6m/+ and wild-type male weanling mice were randomly divided into two groups and were fed an high-fat diet or chow diet for 6-10weeks. Blood glucose and glucose tolerance levels were monitored during this period. Body weights, visceral adipose weights, blood lipid profiles and insulin sensitivity (determined with an insulin tolerance test) were used to evaluate obesity and insulin resistance. Proinsulin processing and insulin secretion levels were used to evaluate pancreatic β cell function. Results: After 6weeks of high-fat diet exposure, only the Pax6m/+ mice showed dramatic postloading hyperglycaemia. These mice exhibited significant high-fat diet-induced visceral obesity and insulin resistance and displayed defective prohormone convertase 1/3 production, an increased proinsulin:total insulin ratio and impaired early-phase insulin secretion, because of the Pax6 mutation. Hyperglycaemia worsened progressively over time with the high-fat diet, and most Pax6m/+ mice on high-fat diet developed diabetes or impaired glucose tolerance after 10weeks. Furthermore, high-fat diet withdrawal partly improved blood glucose levels in the diabetic mice. Conclusions: By combining the Pax6m/+ genetic background with an high-fat diet environment, we developed a novel diabetic model to mimic human type 2 diabetes. This model is characterized by impaired insulin secretion, caused by the Pax6 mutation, and high-fat diet-induced insulin resistance and therefore provides an ideal tool for research on type 2 diabetes pathogenesis and therapies.
机译:背景:2型糖尿病是由遗传和环境因素之间的相互作用引起的。我们以前的研究报告说,成对的box6突变杂合度(Pax6m / +)导致6个月大的小鼠体内胰岛素原加工缺陷和随后的异常葡萄糖代谢。然而,高脂饮食暴露可能是糖尿病发展的重要诱因。在这项研究中,我们旨在通过将Pax6m / +小鼠暴露于高脂饮食中来开发一种模仿人类2型糖尿病的新型糖尿病模型,并探索该模型中糖尿病的潜在机制。方法:将300余只Pax6m / +和野生型雄性断奶小鼠随机分为两组,并给予高脂饮食或成年饮食6-10周。在此期间监测血糖和葡萄糖耐量水平。体重,内脏脂肪重量,血脂谱和胰岛素敏感性(由胰岛素耐受性测试确定)用于评估肥胖和胰岛素抵抗。胰岛素原加工和胰岛素分泌水平用于评估胰腺β细胞功能。结果:在高脂饮食暴露6周后,只有Pax6m / +小鼠表现出明显的负荷后高血糖。这些小鼠表现出显着的高脂饮食诱导的内脏肥胖和胰岛素抵抗,并且由于Pax6突变而显示出缺陷的激素原转化酶1/3产生,胰岛素原:总胰岛素比例增加和早期胰岛素分泌受损。高脂饮食会使高血糖随着时间逐渐恶化,并且大多数高脂饮食的Pax6m / +小鼠在10周后发展为糖尿病或糖耐量受损。此外,高脂饮食戒断可部分改善糖尿病小鼠的血糖水平。结论:通过结合Pax6m / +遗传背景和高脂饮食环境,我们开发了一种新型的糖尿病模型来模拟人类2型糖尿病。该模型的特征在于Pax6突变引起的胰岛素分泌受损,以及高脂饮食诱导的胰岛素抵抗,因此为研究2型糖尿病的发病机理和治疗方法提供了理想的工具。

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