Hypoadiponectinaemia is closely associated with endothelial dysfunction and insulin resistance, and microvasculature plays a critical role in the regulation of insulin action in muscle. Here we tested whether adiponectin replenishment could improve metabolic insulin sensitivity in male rats fed a high-fat diet (HFD) via the modulation of microvascular insulin responses. Male Sprague–Dawley rats were fed either a HFD or low-fat diet (LFD) for 4 weeks. Small resistance artery myograph changes in tension, muscle microvascular recruitment and metabolic response to insulin were determined. Compared with rats fed a LFD, HFD feeding abolished the vasodilatory actions of globular adiponectin (gAd) and insulin on pre-constricted distal saphenous art...
Obesity-related insulin resistance is accompanied by impaired microvascular recruitment within skele...
Adiponectin is a protein secreted specifically by adipose cells that may couple regulation of insuli...
BACKGROUND: Insulin-induced microvascular recruitment is important for optimal muscle glucose uptake...
Adiponectin enhances insulin action and induces nitric oxide–dependent vasodilatation. Insulin deliv...
Endothelial dysfunction and vascular insulin resistance usually coexist and chronic inflammation eng...
Insulin resistance is characterised by an impaired ability of insulin to stimulate glucose uptake, ...
Background Adiponectin is able to induce NO-dependent vasodilation in Zucker lean (ZL) rats, but thi...
Obesity is related to insulin resistance and hypertension, but the underlying mechanisms are unclear...
Type 2 diabetes is a disease characterised by a decrease in the sensitivity to insulin. Recently evi...
Defects in microvascular perfusion, which is important for nutrient exchange in skeletal muscle, con...
Skeletal muscle triglyceride accumulation is associated with insulin resistance in obesity. Recently...
Aim. - Adiponectin levels in skeletal muscle and adipose tissue have been reported to be involved in...
Insulin resistance is an early marker of Type II diabetes. Excessive lipid accumulation in muscle an...
BACKGROUND AND PURPOSE Adiponectin, the most abundant peptide secreted by adipocytes, is involved i...
Aim: The aetiology of the development of type 2 diabetes remains unresolved. In the present study, w...
Obesity-related insulin resistance is accompanied by impaired microvascular recruitment within skele...
Adiponectin is a protein secreted specifically by adipose cells that may couple regulation of insuli...
BACKGROUND: Insulin-induced microvascular recruitment is important for optimal muscle glucose uptake...
Adiponectin enhances insulin action and induces nitric oxide–dependent vasodilatation. Insulin deliv...
Endothelial dysfunction and vascular insulin resistance usually coexist and chronic inflammation eng...
Insulin resistance is characterised by an impaired ability of insulin to stimulate glucose uptake, ...
Background Adiponectin is able to induce NO-dependent vasodilation in Zucker lean (ZL) rats, but thi...
Obesity is related to insulin resistance and hypertension, but the underlying mechanisms are unclear...
Type 2 diabetes is a disease characterised by a decrease in the sensitivity to insulin. Recently evi...
Defects in microvascular perfusion, which is important for nutrient exchange in skeletal muscle, con...
Skeletal muscle triglyceride accumulation is associated with insulin resistance in obesity. Recently...
Aim. - Adiponectin levels in skeletal muscle and adipose tissue have been reported to be involved in...
Insulin resistance is an early marker of Type II diabetes. Excessive lipid accumulation in muscle an...
BACKGROUND AND PURPOSE Adiponectin, the most abundant peptide secreted by adipocytes, is involved i...
Aim: The aetiology of the development of type 2 diabetes remains unresolved. In the present study, w...
Obesity-related insulin resistance is accompanied by impaired microvascular recruitment within skele...
Adiponectin is a protein secreted specifically by adipose cells that may couple regulation of insuli...
BACKGROUND: Insulin-induced microvascular recruitment is important for optimal muscle glucose uptake...