Key result
Adiponectin gene delivery improves endothelial vasodilation in diabetic mice by reducing superoxide and inflammation.
Why the study?
It is unclear whether adiponectin improves endothelial-dependent nitric oxide-mediated vasodilation in type 2 diabetes and the mechanisms involved.
Does exogenous adiponectin delivery improve endothelial function in type 2 diabetic mice?
Does exogenous adiponectin delivery improve endothelial function in type 2 diabetic mice?
Exogenous adiponectin improves endothelial function in type 2 diabetic mice by reducing oxidative stress and inflammation, highlighting its potential vascular protective role.
Extends preclinical support for adiponectin in diabetic endothelial dysfunction; leaves open translation to human therapy.
Adiponectin (APN) can confer protection against metabolism-related illnesses in organs such as fat, the liver, and skeletal muscle. However, it is unclear whether APN improves endothelial-dependent nitric oxide-mediated vasodilation in type 2 diabetes and, if so, by what mechanism. We tested whether exogenous APN delivery improves endothelial function in type 2 diabetic mice and explored the mechanisms underlying the observed improvement. To test the hypothesis, we injected adenovirus APN (Ad-APN) or adenovirus β-galactosidase (Ad-βgal; control virus) via the tail vein in control (m Lepr(db)) and diabetic (Lepr(db); db/db) mice and studied vascular function of the aorta ex vivo. Ad-APN improved endothelial-dependent vasodilation in db/db mice compared with Ad-βgal, whereas Ad-APN had no further improvement on endothelial function in control mice. This improvement was completely inhibited by a nitric oxide synthase inhibitor (N(G)-nitro-l-arginine methyl ester). Serum triglyceride and total cholesterol levels were increased in db/db mice, and Ad-APN significantly reduced triglyceride levels but not total cholesterol levels. Immunoblot results showed that interferon-γ, gp91(phox), and nitrotyrosine were markedly increased in the aorta of db/db mice. Ad-APN treatment decreased the expression of these proteins. In addition, mRNA expression of TNF-α, IL-6, and ICAM-1 was elevated in db/db mice, and Ad-APN treatment decreased these expressions in the aorta. Our findings suggest that APN may contribute to an increase in nitric oxide bioavailability by decreasing superoxide production as well as by inhibiting inflammation and adhesion molecules in the aorta in type 2 diabetic mice.
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Lee et al. (2012) studied Type 2 diabetes. Adenovirus adiponectin (Ad-APN) vs. Adenovirus β-galactosidase (Ad-βgal) was evaluated on Endothelial-dependent vasodilation of the aorta ex vivo. Adenovirus-mediated adiponectin delivery improved endothelial-dependent vasodilation in type 2 diabetic mice by decreasing superoxide production and inhibiting inflammation.
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