[No authors listed]
AIM:Accelerated thrombin action is associated with insulin resistance. It is known that upon activation by binding to dermatan sulfate proteoglycans, heparin cofactor â ¡(HCâ ¡) inactivates thrombin in tissues. Because HCâ ¡ may be involved in glucose metabolism, we investigated the relationship between plasma HCâ ¡ activity and insulin resistance. METHODS AND RESULTS:In a clinical study, statistical analysis was performed to examine the relationships between plasma HCâ ¡ activity, glycosylated hemoglobin (HbA1c), fasting plasma glucose (FPG), and homeostasis model assessment-insulin resistance (HOMA-IR) in elderly Japanese individuals with lifestyle-related diseases. Multiple regression analysis showed significant inverse relationships between plasma HCâ ¡ activity and HbA1c (p=0.014), FPG (p=0.007), and HOMA-IR (p= 0.041) in elderly Japanese subjects. In an animal study, HCâ ¡ï¼/ï¼ mice and HCâ ¡ï¼/- mice were fed with a normal diet or high-fat diet (HFD) until 25 weeks of age. HFD-fed HCâ ¡ï¼/- mice exhibited larger adipocyte size, higher FPG level, hyperinsulinemia, compared to HFD-fed HCâ ¡ï¼/ï¼ mice. In addition, HFD-fed HCâ ¡ï¼/- mice exhibited augmented expression of monocyte chemoattractant protein-1 and tumor necrosis factor, and impaired phosphorylation of the serine/threonine kinase Akt and AMP-activated protein kinase in adipose tissue compared to HFD-fed HCâ ¡ï¼/ï¼ mice. The expression of phosphoenolpyruvate carboxykinase and glucose-6-phosphatase was also enhanced in the hepatic tissues of HFD-fed HCâ ¡ï¼/- mice. CONCLUSIONS:The present studies provide evidence to support the idea that HCâ ¡ plays an important role in the maintenance of glucose homeostasis by regulating insulin sensitivity in both humans and mice. Stimulators of HCâ ¡ production may serve as novel therapeutic tools for the treatment of type 2 diabetes.
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