Metabolic Endotoxemia Initiates Obesity and Insulin Resistance
Метаболическая эндотоксемия инициирует ожирение и инсулинорезистентность
2007-06-27
SCID: 54.1/2ezzbfjs
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LPS/CD14 systemhigh-fat dietinsulin resistancelipopolysaccharide (LPS)metabolic endotoxemia
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Abstract (AI)
Diabetes and obesity are two metabolic diseases characterized by insulin resistance and a low-grade inflammation. Seeking an inflammatory factor causative of the onset of insulin resistance, obesity, and diabetes, we have identified bacterial lipopolysaccharide (LPS) as a triggering factor. We found that normal endotoxemia increased or decreased during the fed or fasted state, respectively, on a nutritional basis and that a 4-week high-fat diet chronically increased plasma LPS concentration two to three times, a threshold that we have defined as metabolic endotoxemia. Importantly, a high-fat diet increased the proportion of an LPS-containing microbiota in the gut. When metabolic endotoxemia was induced for 4 weeks in mice through continuous subcutaneous infusion of LPS, fasted glycemia and insulinemia and whole-body, liver, and adipose tissue weight gain were increased to a similar extent as in high-fat-fed mice. In addition, adipose tissue F4/80-positive cells and markers of inflammation, and liver triglyceride content, were increased. Furthermore, liver, but not whole-body, insulin resistance was detected in LPS-infused mice. CD14 mutant mice resisted most of the LPS and high-fat diet-induced features of metabolic diseases. This new finding demonstrates that metabolic endotoxemia dysregulates the inflammatory tone and triggers body weight gain and diabetes. We conclude that the LPS/CD14 system sets the tone of insulin sensitivity and the onset of diabetes and obesity. Lowering plasma LPS concentration could be a potent strategy for the control of metabolic diseases.
Key Findings
1
A 4-week high-fat diet chronically increases plasma LPS concentration two- to threefold, defined as metabolic endotoxemia, and raises the proportion of LPS-containing gut microbiota.
2
Bacterial lipopolysaccharide (LPS) is identified as a triggering factor for the onset of insulin resistance, obesity, and diabetes.
3
CD14 mutant mice are resistant to most LPS- and high-fat diet-induced metabolic disease features, implicating the LPS/CD14 system in controlling insulin sensitivity and disease onset; lowering plasma LPS is proposed as a therapeutic strategy.
4
Continuous subcutaneous LPS infusion for 4 weeks in mice reproduces effects of high-fat diet: increased fasted glycemia and insulinemia, whole-body, liver, and adipose weight gain, adipose inflammation, and elevated liver triglycerides.
5
LPS-infused mice develop liver-specific insulin resistance (but not whole-body insulin resistance), indicating tissue-specific effects of metabolic endotoxemia.
Research Object
Metabolic endotoxemia (elevated plasma lipopolysaccharide levels) in mice
Research Subject
Causal role of metabolic endotoxemia (LPS/CD14 system) in initiating obesity, insulin resistance, inflammation, and related metabolic changes (body weight gain, adipose and liver inflammation, liver triglyceride accumulation)
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2007-06-27
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