Role of Nitric Oxide, Adenosine, and ATP-Sensitive Potassium Channels in Insulin-Induced Vasodilation
- 1 August 1996
- journal article
- Published by Wolters Kluwer Health in Hypertension
- Vol. 28 (2) , 202-208
- https://doi.org/10.1161/01.hyp.28.2.202
Abstract
The resistance of various tissues to the vasodilator and metabolic effects of insulin may be an important risk factor in the genesis of hypertension observed in several pathological states. Because of this, it is important to understand the mechanisms by which insulin causes vasodilation. Because insulin is known to raise metabolism, one mechanism by which insulin causes vasodilation could be through metabolic vasodilation. Recently, however, it has been suggested that the insulin-induced vasodilation is mediated by the release of endothelium-derived nitric oxide. Using a model of muscle microcirculation (hamster cremaster), we examined the interactions between insulin, nitric oxide, and tissue metabolism to understand the potential mechanisms by which insulin causes vasodilation. Topical application of insulin (200 microU/mL) to the cremaster resulted in significant increases in arteriolar diameter. Second-order arteriolar diameter increased from 69.6 +/- 6 to 79.8 +/- 5 microns and fourth-order arteriolar diameter from 11.3 +/- 1 to 15.1 +/- 2 microns (n = 8). During nitric oxide synthase inhibition, topical application of insulin caused significant vasodilation in both second- and fourth-order arterioles. In contrast, both adenosine receptor antagonism and blockade of ATP-sensitive potassium channels prevented insulin-induced increases in arteriolar diameter. Our findings suggest a role for increased tissue metabolism, particularly the metabolite adenosine, in mediating insulin-induced vasodilation.Keywords
This publication has 25 references indexed in Scilit:
- Nitric oxide release accounts for insulin's vascular effects in humans.Journal of Clinical Investigation, 1994
- Interactions between insulin and norepinephrine on blood pressure and insulin sensitivity. Studies in lean and obese men.Journal of Clinical Investigation, 1994
- Insulin-mediated vasodilation: impairment with increased blood pressure and body massThe Lancet, 1993
- Differential effects of hyperinsulinemia and carbohydrate metabolism on sympathetic nerve activity and muscle blood flow in humans.Journal of Clinical Investigation, 1993
- The vasodilator action of insulin. Implications for the insulin hypothesis of hypertension.Hypertension, 1993
- Skeletal muscle blood flow. A possible link between insulin resistance and blood pressure.Hypertension, 1993
- Insulin resistance and blood pressure regulation in obese and nonobese subjects. Special lecture.Hypertension, 1991
- Chronic hyperinsulinemia and blood pressure. Interaction with catecholamines?Hypertension, 1990
- Anatomic and hemodynamic characteristics of the blood vessels feeding the cremaster skeletal muscle in the ratMicrovascular Research, 1986
- An open cremaster muscle preparation for the study of blood vessels by in vivo microscopyMicrovascular Research, 1973