SummaryLow-grade inflammation in fat is associated with insulin resistance, although the mechanisms are unclear. We report that mice deficient in the immune cell transcription factor T-bet have lower energy expenditure and increased visceral fat compared with wild-type mice, yet paradoxically are more insulin sensitive. This striking phenotype, present in young T-bet−/− mice, persisted with high-fat diet and increasing host age and was associated with altered immune cell numbers and cytokine secretion specifically in visceral adipose tissue. However, the favorable metabolic phenotype observed in T-bet-deficient hosts was lost in T-bet−/− mice also lacking adaptive immunity (T-bet−/−xRag2−/−), demonstrating that T-bet expression in the adapt...
International audienceThe implication of αβ and γδ T cells in obesity-associated inflammation and in...
The role of adipose tissue, or fat, in the development and treatment of metabolic disease is the sub...
Obesity-induced inflammation is associated with insulin resistance and morphologically characterized...
Low-grade inflammation in fat is associated with insulin resistance, although the mechanisms are unc...
Obesity-associated insulin resistance is accompanied by an alteration in the Th1/Th2 balance in adip...
Although increasing adiposity is usually associated with adipose tissue infiltration by inflammatory...
Adipose tissue (AT)-resident regulatory T cells (Tregs) are important regulators of local and system...
IntroductionChronic low-grade inflammation is associated with obesity and diabetes. However, what ca...
Obesity is a major predisposing factor for the development of type 2 diabetes (T2D) and is an escala...
Obesity is associated with adipose tissue inflammation, insulin resistance, and the development of t...
Obesity is characterized by a dysregulated immune system, which may causally associate with insulin ...
The development of insulin resistance (IR) in mouse models of obesity and type 2 diabetes mellitus (...
Obesity-induced inflammation in visceral adipose tissue (VAT) is a major contributor to insulin resi...
AIMS/HYPOTHESIS: Inflammation contributes to both insulin resistance and pancreatic beta cell failur...
Obesity is characterized by a dysregulated immune system, which may causally associate with insulin ...
International audienceThe implication of αβ and γδ T cells in obesity-associated inflammation and in...
The role of adipose tissue, or fat, in the development and treatment of metabolic disease is the sub...
Obesity-induced inflammation is associated with insulin resistance and morphologically characterized...
Low-grade inflammation in fat is associated with insulin resistance, although the mechanisms are unc...
Obesity-associated insulin resistance is accompanied by an alteration in the Th1/Th2 balance in adip...
Although increasing adiposity is usually associated with adipose tissue infiltration by inflammatory...
Adipose tissue (AT)-resident regulatory T cells (Tregs) are important regulators of local and system...
IntroductionChronic low-grade inflammation is associated with obesity and diabetes. However, what ca...
Obesity is a major predisposing factor for the development of type 2 diabetes (T2D) and is an escala...
Obesity is associated with adipose tissue inflammation, insulin resistance, and the development of t...
Obesity is characterized by a dysregulated immune system, which may causally associate with insulin ...
The development of insulin resistance (IR) in mouse models of obesity and type 2 diabetes mellitus (...
Obesity-induced inflammation in visceral adipose tissue (VAT) is a major contributor to insulin resi...
AIMS/HYPOTHESIS: Inflammation contributes to both insulin resistance and pancreatic beta cell failur...
Obesity is characterized by a dysregulated immune system, which may causally associate with insulin ...
International audienceThe implication of αβ and γδ T cells in obesity-associated inflammation and in...
The role of adipose tissue, or fat, in the development and treatment of metabolic disease is the sub...
Obesity-induced inflammation is associated with insulin resistance and morphologically characterized...