Disparate effects of insulin on isolated rabbit afferent and efferent arterioles.
Open Access
- 1 October 1993
- journal article
- research article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 92 (4) , 1981-1985
- https://doi.org/10.1172/jci116792
Abstract
Despite evidence that insulin per se may be an important regulator of glomerular hemodynamics, little is known about its direct action on the glomerular afferent arterioles (Af-Art) and efferent arterioles (Ef-Art), the crucial vascular segments that control glomerular hemodynamics. In the present study, we examined the direct effect of physiological concentrations of insulin on isolated microperfused rabbit Af- and Ef-Arts. After cannulation, vessels were equilibrated in insulin-free medium for 30 min. To determine whether insulin causes vasodilation or constriction, increasing doses (5, 20, and 200 microU/ml) were added to the bath and lumen of arterioles that were either preconstricted to 50% of control diameter with norepinephrine or left nonpreconstricted. Insulin caused no vasoconstriction in either Af- or Ef-Arts, but it reversed norepinephrine-induced constriction in Ef-Arts but not Af-Arts (suggesting a vasodilator action selective to the Ef-Art): at 200 microU/ml, insulin increased Ef-Art luminal diameter by 75.8 +/- 7.0% from the preconstricted level (n = 6; P < 0.008). The vasorelaxant effect of insulin on Ef-Arts was not affected by blockade of either endothelium-derived relaxing factor/nitric oxide or prostaglandin synthesis. Despite the lack of effect of insulin on Af-Art when added after the equilibration period, when Af-Arts were equilibrated in the presence of either 20 or 200 microU/ml insulin, their basal diameter was significantly reduced (11.7 +/- 0.9 microns; P < 0.025, n = 6, and 12.0 +/- 0.9 microns; P < 0.025, n = 7, respectively) compared with nontreated Af-Arts (16.2 +/- 1.3 microns; n = 7). In conclusion, this study demonstrates that at physiological concentrations, insulin dilates NE-constricted Ef-Arts, while insulin pretreatment enhances Af-Art tone. The disparate actions of insulin on the Af- vs the Ef-Art may contribute to its beneficial effect on glomerular hypertension.Keywords
This publication has 32 references indexed in Scilit:
- Glomerular hemodynamic alterations during acute hyperinsulinemia in normal and diabetic ratsKidney International, 1992
- Insulin attenuates vasopressin-induced calcium transients and a voltage-dependent calcium response in rat vascular smooth muscle cells.Journal of Clinical Investigation, 1991
- An in vitro approach to the study of macula densa-mediated glomerular hemodynamicsKidney International, 1990
- Mouse Glomerular Endothelial Cells Have an Insulin ReceptorHormone and Metabolic Research, 1990
- Chronic hyperinsulinemia and blood pressure. Interaction with catecholamines?Hypertension, 1990
- Control of glomerular hypertension by insulin administration in diabetic rats.Journal of Clinical Investigation, 1989
- Evidence against increased glomerular pressure initiating diabetic nephropathyKidney International, 1987
- Effects of indomethacin on glomerular hemodynamics in experimental diabetesKidney International, 1986
- The Effects of Insulin on Vasoconstrictor Responses in Pithed RatsThe Journal of Clinical Pharmacology, 1981
- The effects of glucose and insulin on renal electrolyte transport.Journal of Clinical Investigation, 1976