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Farnesoid X Receptor Deficiency Improves Glucose Homeostasis in Mouse Models of Obesity

机译:Farnesoid X受体缺乏症可改善肥胖小鼠模型的葡萄糖稳态。

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摘要

OBJECTIVE-Bile acids (BA) participate in the maintenance of metabolic homeostasis acting through different signaling pathways. The nuclear BA receptor farnesoid X receptor (FXR) regulates pathways in BA, lipid, glucose, and energy metabolism, which become dysregulated in obesity. However, the role of FXR in obesity and associated complications, such as dyslipidemia and insulin resistance, has not been directly assessed. RESEARCH DESIGN AND METHODS-Here, we evaluate the consequences of FXR deficiency on body weight development, lipid metabolism, and insulin resistance in murine models of genetic and diet-induced obesity. RESULTS-FXR deficiency attenuated body weight gain and reduced adipose tissue mass in both models. Surprisingly, glucose homeostasis improved as a result of an enhanced glucose clearance and adipose tissue insulin sensitivity, hi contrast, hepatic insulin sensitivity did not change, and liver steatosis aggravated as a result of the repression of (J-oxidation genes. In agreement, liver-specific FXR deficiency did not protect from diet-induced obesity and insulin resistance, indicating a role for nonhepatic FXR in the control of glucose homeostasis in obesity. Decreasing elevated plasma BA concentrations in obese FXR-deficient mice by administration of the BA sequestrant colesevelam improved glucose homeostasis in a FXR-dependent manner, indicating that the observed improvements by FXR deficiency are not a result of indirect effects of altered BA metabolism. CONCLUSIONS-Overall, FXR deficiency in obesity beneficially affects body weight development and glucose homeostasis.
机译:目标胆汁酸(BA)参与通过不同信号途径起作用的代谢稳态的维持。核BA受体法尼醇X受体(FXR)调节BA,脂质,葡萄糖和能量代谢中的途径,这些途径在肥胖症中失调。但是,尚未直接评估FXR在肥胖症和相关并发症(例如血脂异常和胰岛素抵抗)中的作用。研究设计和方法-在这里,我们评估在遗传和饮食诱发肥胖的小鼠模型中,FXR缺乏对体重发展,脂质代谢和胰岛素抵抗的影响。结果-在两种模型中,FXR缺乏都会减轻体重增加并减少脂肪组织质量。出乎意料的是,由于葡萄糖清除率的提高和脂肪组织胰岛素敏感性的提高,葡萄糖体内稳态得到改善。相反,肝胰岛素敏感性没有改变,并且由于(J-氧化基因)的抑制,肝脂肪变性加剧。特异的FXR缺乏不能抵抗饮食引起的肥胖症和胰岛素抵抗,这表明非肝性FXR在控制肥胖症的葡萄糖稳态方面具有作用,通过施用BA多价螯合剂来降低肥胖FXR缺陷小鼠血浆BA浓度升高结论:总体而言,肥胖中的FXR缺乏有益地影响体重发展和葡萄糖稳态,这是由于FXR缺乏引起的血糖动态平衡的结果,而不是BA代谢改变的间接影响。

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  • 来源
    《Diabetes》 |2011年第7期|p.1861-1871|共11页
  • 作者单位

    University of Lille Nord de France INSERM UMR1011 UDSL Institut Pasteur de Lille, Iille, France;

    University of Lille Nord de France INSERM UMR1011 UDSL Institut Pasteur de Lille, Iille, France;

    Center for liver, Digestive and Metabolic Diseases, Laboratory of Pediatrics, University Medical Center Groningen, Groningen, the Netherlands;

    University of Lille Nord de France INSERM UMR1011 UDSL Institut Pasteur de Lille, Iille, France;

    University of Lille Nord de France INSERM UMR1011 UDSL Institut Pasteur de Lille, Iille, France;

    VTT Technical Research Centre of Finland, Espoo, Finland;

    University of Lille Nord de France INSERM UMR1011 UDSL Institut Pasteur de Lille, Iille, France;

    University of Lille Nord de France INSERM UMR1011 UDSL Institut Pasteur de Lille, Iille, France;

    Center for liver, Digestive and Metabolic Diseases, Laboratory of Pediatrics, University Medical Center Groningen, Groningen, the Netherlands;

    University of Lille Nord de France INSERM UMR1011 UDSL Institut Pasteur de Lille, Iille, France;

    University of Lille Nord de France INSERM UMR1011 UDSL Institut Pasteur de Lille, Iille, France;

    University of Lille Nord de France INSERM UMR1011 UDSL Institut Pasteur de Lille, Iille, France;

    University of Lille Nord de France INSERM UMR1011 UDSL Institut Pasteur de Lille, Iille, France;

    Laboratory of Metabolism, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda,Maryland;

    VTT Technical Research Centre of Finland, Espoo, Finland;

    University of Lille Nord de France INSERM UMR1011 UDSL Institut Pasteur de Lille, Iille, France,INSERM U915 Faculty of Medicine, University of Nantes,Thorax Institute Clinic of Endocrinology, University Hospital Center Nantes,Nantes, France;

    Center for liver, Digestive and Metabolic Diseases, Laboratory of Pediatrics, University Medical Center Groningen, Groningen, the Netherlands;

    University of Lille Nord de France INSERM UMR1011 UDSL Institut Pasteur de Lille, Iille, France;

    University of Lille Nord de France INSERM UMR1011 UDSL Institut Pasteur de Lille, Iille, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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