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Development of a diet-induced murine model of diabetes featuring cardinal metabolic and pathophysiological abnormalities of type 2 diabetes

机译:以饮食为基础的2型糖尿病主要代谢和病理生理异常的糖尿病鼠模型的建立

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The persistent rise in global incidence of type 2 diabetes (T2D) continues to have significant public health and economic implications. The availability of relevant animal models of T2D is critical to elucidating the complexity of the pathogenic mechanisms underlying this disease and the implications this has on susceptibility to T2D complications. Whilst many high-fat diet-induced rodent models of obesity and diabetes exist, growing appreciation of the contribution of high glycaemic index diets on the development of hyperglycaemia and insulin resistance highlight the requirement for animal models that more closely represent global dietary patterns reflective of modern society. To that end, we sought to develop and validate a murine model of T2D based on consumption of an energy-dense diet containing moderate levels of fat and a high glycaemic index to better reflect the aetiopathogenesis of T2D. Male C57BL/6 mice were fed an energy-dense (ED) diet and the development of pathological features used in the clinical diagnosis of T2D was assessed over a 30-week period. Compared with control mice, 87% of mice fed an ED diet developed pathognomonic signs of T2D including glucose intolerance, hyperglycaemia, glycosylated haemoglobin (HbA1c) and glycosuria within 30?weeks. Furthermore, dyslipidaemia, chronic inflammation, alterations in circulating leucocytes and renal impairment were also evident in ED diet-fed mice compared with mice receiving standard rodent chow. Longitudinal profiling of metabolic and biochemical parameters provide support of an aetiologically and clinically relevant model of T2D that will serve as a valuable tool for mechanistic and therapeutic studies investigating the pathogenic complications of T2D.
机译:全球2型糖尿病(T2D)发病率的持续上升继续对公共卫生和经济产生重大影响。相关的T2D动物模型的可用性对于阐明该疾病的致病机制的复杂性及其对T2D并发症易感性的影响至关重要。尽管存在许多由高脂饮食引起的肥胖和糖尿病的啮齿动物模型,但对高血糖指数饮食对高血糖症和胰岛素抵抗发展的贡献的日益增长的关注突显了对动物模型的需求,该动物模型应更紧密地代表反映现代饮食习惯的全球饮食模式社会。为此,我们试图根据能量密集型饮食的摄入量来开发和验证T2D鼠模型,该饮食应包含中等水平的脂肪和高血糖指数,以更好地反映T2D的发病机理。给雄性C57BL / 6小鼠喂食能量密集(ED)饮食,并在30周内评估用于T2D临床诊断的病理特征的发展。与对照组小鼠相比,进食ED饮食的小鼠中有87%在30周内出现了T2D的病理学症状,包括葡萄糖耐受不良,高血糖症,糖基化血红蛋白(HbA1c)和糖尿。此外,与接受标准啮齿动物食物的小鼠相比,在ED饮食喂养的小鼠中血脂异常,慢性炎症,循环白细胞改变和肾功能损害也很明显。代谢和生化参数的纵向分析为T2D的病因学和临床相关模型提供了支持,该模型将成为研究T2D致病性并发症的机制和治疗研究的宝贵工具。

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