Metabolic Endotoxemia Initiates Obesity and Insulin Resistance

Метаболическая эндотоксемия инициирует ожирение и инсулинорезистентность
Jean‐François Tanti, Glenn R. Gibson, Francesca Fava, Kieran Tuohy, B Chamontin, Jean Ferrières, Patrice D. Cani, Aurélie Waget, Rémy Burcelin, Louis Casteilla, Nathalie M. Delzenne, Jacques Amar, Marie‐Christine Alessi, Thierry Sulpice, Audrey M. Neyrinck, Claude Knauf, Miguel A. Iglesias, Marjorie Poggi, Delphine Bastelica, Chantal Chabo, Evelyne Delmée, Béatrice Cousin
2007-06-27

LPS/CD14 systemhigh-fat dietinsulin resistancelipopolysaccharide (LPS)metabolic endotoxemia
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.
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.

Metabolic endotoxemia (elevated plasma lipopolysaccharide levels) in mice

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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Authors
Jean‐François Tanti
Glenn R. Gibson
Francesca Fava
Kieran Tuohy
B Chamontin
Jean Ferrières
Patrice D. Cani
Aurélie Waget
Rémy Burcelin
Louis Casteilla
Nathalie M. Delzenne
Jacques Amar
Marie‐Christine Alessi
Thierry Sulpice
Audrey M. Neyrinck
Claude Knauf
Miguel A. Iglesias
Marjorie Poggi
Delphine Bastelica
Chantal Chabo
Evelyne Delmée
Béatrice Cousin
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