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Thermogenesis-independent metabolic benefits conferred by isocaloric intermittent fasting in ob/ob mice

机译:ob / ob小鼠的等热量间歇性禁食赋予的与生热无关的代谢益处

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摘要

Intermittent fasting (IF) is an effective dietary intervention to counteract obesity-associated metabolic abnormalities. Previously, we and others have highlighted white adipose tissue (WAT) browning as the main underlying mechanism of IF-mediated metabolic benefits. However, whether IF retains its efficacy in different models, such as genetically obese/diabetic animals, is unknown. Here, leptin-deficient ob/ob mice were subjected to 16 weeks of isocaloric IF, and comprehensive metabolic phenotyping was conducted to assess the metabolic effects of IF. Unlike our previous study, isocaloric IF-subjected ob/ob animals failed to exhibit reduced body weight gain, lower fat mass, or decreased liver lipid accumulation. Moreover, isocaloric IF did not result in increased thermogenesis nor induce WAT browning in ob/ob mice. These findings indicate that isocaloric IF may not be an effective approach for regulating body weight in ob/ob animals, posing the possible limitations of IF to treat obesity. However, despite the lack of improvement in insulin sensitivity, isocaloric IF-subjected ob/ob animals displayed improved glucose tolerance as well as higher postprandial insulin level, with elevated incretin expression, suggesting that isocaloric IF is effective in improving nutrient-stimulated insulin secretion. Together, this study uncovers the insulinotropic effect of isocaloric IF, independent of adipose thermogenesis, which is potentially complementary for the treatment of type 2 diabetes.
机译:间歇性禁食(IF)是一种有效的饮食干预措施,可以消除肥胖相关的代谢异常。以前,我们和其他人强调了白色脂肪组织(WAT)褐变是IF介导的代谢益处的主要潜在机制。但是,IF是否在不同的模型(例如遗传性肥胖/糖尿病动物)中保持其功效尚不清楚。在这里,瘦素缺陷型ob / ob小鼠接受了16周的等温IF治疗,并进行了全面的代谢表型研究以评估IF的代谢作用。与我们以前的研究不同,接受等温IF的ob / ob动物未能表现出体重增加减少,脂肪减少或肝脂质蓄积减少。此外,等温的IF不会导致ob / ob小鼠生热增加,也不会诱导WAT褐变。这些发现表明,等温的IF可能不是调节ob / ob动物体重的有效方法,这可能导致IF治疗肥胖的局限性。然而,尽管缺乏胰岛素敏感性的改善,但接受等温IF的ob / ob动物表现出改善的葡萄糖耐量以及较高的餐后胰岛素水平,并具有升高的肠降血糖素表达,这表明等温IF可有效改善营养素刺激的胰岛素分泌。总之,本研究揭示了与脂肪热生成无关的等热量IF的促胰岛素作用,该作用可能与2型糖尿病的治疗互补。

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