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Lipopolysaccharide activates an innate immune system response in human adipose tissue in obesity and type 2 diabetes

American Journal of Physiology-Endocrinology and Metabolism · 2006 · Vol. 292(3) · pp. E740–E747

Abstract

2.7+/-0.5 vs. NF-kappaB inhibitor: 2.1+/-0.4 ng/ml; P<0.001). AbdSc AT protein expression for TLR-2, MyD88, TRAF6, and NF-kappaB was increased in T2DM patients (P<0.05), and TLR-2, TRAF-6, and NF-kappaB were increased in LPS-treated adipocytes (P<0.05). Circulating LPS was 76% higher in T2DM subjects compared with matched controls. LPS correlated with insulin in controls (r=0.678, P<0.0001). Rosiglitazone (RSG) significantly reduced both fasting serum insulin levels (reduced by 51%, P=0.0395) and serum LPS (reduced by 35%, P=0.0139) in a subgroup of previously untreated T2DM patients. In summary, our results suggest that T2DM is associated with increased endotoxemia, with AT able to initiate an innate immune response. Thus, increased adiposity may increase proinflammatory cytokines and therefore contribute to the pathogenic risk of T2DM.

Adipokines, Inflammation, and Metabolic DiseasesImmune Response and InflammationIL-33, ST2, and ILC PathwaysInternal medicineEndocrinologyInflammationAdipose tissueLipopolysaccharideAdipokineInnate immune systemTumor necrosis factor alphaImmune systemMedicine

MeSH terms

AdultAgedCells, CulturedDiabetes Mellitus, Type 2FemaleHumansImmunity, InnateLipopolysaccharidesMaleMiddle AgedObesityNF-kappa BTNF Receptor-Associated Factor 6Subcutaneous Fat, AbdominalToll-Like Receptors
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