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Browning of subcutaneous fat and higher surface temperature in response to phenotype selection for advanced endurance exercise performance in male DUhTP mice

机译:响应表型选择的皮下脂肪褐变和表面温度升高提高雄性DUhTP小鼠的耐力运动表现

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摘要

For the assessment of genetic or conditional factors of fat cell browning, novel and polygenic animal models are required. Therefore, the long-term selected polygenic mouse line DUhTP originally established in Dummerstorf for high treadmill performance is used. DUhTP mice are characterized by increased fat accumulation in the sedentary condition and elevated fat mobilization during mild voluntary physical activity. In the present study, the phenotype of fat cell browning of subcutaneous fat and a potential effect on oral glucose tolerance, an indicator of metabolic health, were addressed in DUhTP mice. Analysis of peripheral fat pads revealed increased brite (brown-in-white) subcutaneous adipose tissues and in subcutaneous fat from DUhTP mice higher levels of irisin and different markers of fat cell browning like T-box transcription factor (Tbx1), PPARα, and uncoupling protein (UCP1) (P < 0.05) when compared to unselected controls. UCP1 was further increased in subcutaneous fat from DUhTP mice in response to mild exercise (fourfold, P < 0.05). In addition, surface temperature of DUhTP mice was increased when compared to controls indicating a physiological effect of increased UCP1 expression. The present study suggests that DUhTP mice exhibit different markers of mitochondrial biogenesis and fat browning without external stimuli. At an age of 43 days, sedentary DUhTP mice have improved metabolic health as judged from lower levels of blood glucose after an oral glucose tolerance test. Consequently, the non-inbred mouse model DUhTP represents a novel model for the identification of fat cell browning mechanisms in white adipose tissues.
机译:为了评估脂肪细胞褐变的遗传或条件因素,需要新型和多基因的动物模型。因此,使用了最初在Dummerstorf建立的具有较高跑步机性能的长期选择的多基因小鼠品系DUhTP。 DUhTP小鼠的特征是久坐条件下脂肪积累增加,在轻度的自愿体育锻炼过程中脂肪动员增加。在本研究中,在DUhTP小鼠中研究了皮下脂肪的脂肪细胞褐变表型和对口服葡萄糖耐量的潜在影响(代谢健康的指标)。对周围脂肪垫的分析显示,增加的bret(白褐色)皮下脂肪组织和来自DUhTP小鼠的皮下脂肪中,较高的鸢尾素水平和不同的脂肪细胞褐变标记(如T-box转录因子(Tbx1),PPARα和解偶联)与未选择的对照相比,蛋白质(UCP1)(P <0.05)。轻度运动对DUhTP小鼠皮下脂肪中UCP1的影响进一步增加(四倍,P <0.05)。另外,与对照组相比,DUhTP小鼠的表面温度升高,表明UCP1表达增加的生理效应。本研究表明,DUhTP小鼠在没有外部刺激的情况下表现出线粒体生物发生和脂肪褐变的不同标志。根据口服葡萄糖耐量试验后血糖水平的降低判断,久坐的DUhTP小鼠在43日龄时具有改善的代谢健康。因此,非近交小鼠模型DUhTP代表了一种用于识别白色脂肪组织中脂肪细胞褐变机制的新型模型。

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