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Impaired glucose and lipid metabolism in ageing aryl hydrocarbon receptor deficient mice

机译:衰老的芳烃受体缺陷小鼠的葡萄糖和脂质代谢受损

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摘要

Disturbed homeostasis of glucose and lipid metabolism are dominant features of the so-called metabolic syndrome (MetS) and can increase the risk for the development of type 2 diabetes (T2D), a severe metabolic disease. T2D prevalence increases with age. The aryl hydrocarbon receptor (AHR) is a sensor of small molecules including dietary components. AHR has been identified as potential regulator of glucose homeostasis and lipid metabolism. Epidemiologically, exposure to xenobiotic AHR ligands such as polycyclic aromatic hydrocarbons is linked to T2D. We assess here the potential role of the AHR in disturbances of glucose and lipid metabolism in young (age 2-5 months) and old (age > 1,5 years) AHR-deficient (AHR KO) mice. Fasted young wildtype (WT) and AHR-KO mice displayed similar blood glucose kinetics after challenge with intra-peritoneal glucose injection. However, old AHR-KO mice showed lower tolerance than WT to i.p. administered glucose, i.e. glucose levels rose higher and returned more slowly to normal levels. Old mice had overall higher insulin levels than young mice, and old AHR-KO had a somewhat disturbed insulin kinetic in the serum after glucose challenge. Surprisingly, young AHR-KO mice had significantly lower triglycerides, cholesterol, high density lipoprotein values than WT, i.e., a dyslipidemic profile. With ageing, AHR-KO and WT mice did not differ in these lipid levels, except for slightly reduced levels of triglycerides and cholesterol. In conclusion, our findings in AHR KO mice suggest that AHR expression is relevant for the maintenance of glucose and lipid homeostasis in old mice.
机译:葡萄糖和脂质代谢紊乱的动态平衡是所谓的代谢综合症(MetS)的主要特征,可能会增加罹患2型糖尿病(T2D)(一种严重的代谢性疾病)的风险。 T2D患病率随年龄增长而增加。芳烃受体(AHR)是包括饮食成分在内的小分子的传感器。 AHR已被确定为葡萄糖稳态和脂质代谢的潜在调节剂。在流行病学上,暴露于异种生物AHR配体(例如多环芳烃)与T2D相关。我们在这里评估AHR在年轻(2-5个月大)和大龄(> 1.5岁)AHR缺乏(AHR KO)小鼠的葡萄糖和脂质代谢紊乱中的潜在作用。空腹年轻野生型(WT)和AHR-KO小鼠在腹膜内注射葡萄糖激发后显示出相似的血糖动力学。但是,老的AHR-KO小鼠对ip的耐受性低于WT。给予葡萄糖,即葡萄糖水平上升更高,而恢复到正常水平则更慢。老年小鼠总体上具有比年轻小鼠更高的胰岛素水平,而老年AHR-KO在葡萄糖激发后血清中的胰岛素动力学有些紊乱。令人惊讶地,年轻的AHR-KO小鼠的甘油三酸酯,胆固醇,高密度脂蛋白值明显低于野生型,即血脂异常。随着年龄的增长,AHR-KO和WT小鼠的血脂水平没有差异,只是甘油三酯和胆固醇的含量略有降低。总之,我们在AHR KO小鼠中的发现表明AHR表达与老年小鼠体内葡萄糖和脂质稳态的维持有关。

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