Intravascular flow decreases erythrocyte consumption of nitric oxide
- 20 July 1999
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 96 (15) , 8757-8761
- https://doi.org/10.1073/pnas.96.15.8757
Abstract
Nitric oxide (NO) produced by the endothelium diffuses both into the lumen and to the smooth muscle cells according to the concentration gradient in each direction. The extremely high reaction rate between NO and hemoglobin (Hb), k Hb = 3–5 × 10 7 M −1 ⋅s −1 , suggests that most of the NO produced would be consumed by Hb in the red blood cells (RBCs), which then would block the biological effect of NO. Therefore, specific mechanisms must exist under physiological conditions to reduce the NO consumption by RBCs, in which the Hb concentration is very high (24 mM heme). By using isolated microvessels as a bioassay, here we show that physiological concentrations of RBCs in the presence of intravascular flow does not inhibit NO-mediated vessel dilation, suggesting that RBCs under this condition are not an NO scavenger. On the other hand, RBCs (50% hematocrit) without intravascular flow reduce NO-mediated dilation to serotonin by 30%. In contrast, free Hb (10 μM) completely inhibits NO-mediated dilation with or without intravascular flow. The effect of flow on NO consumption by RBCs may be attributed to the formation of an RBC-free zone near the vessel wall, which is caused by hydrodynamic forces on particles. Intravascular flow does not affect the reaction rate between NO and free Hb in the lumen, because the latter forms a homogeneous solution and is not subject to the hydrodynamic separation. However, intravascular flow only partially contributes to the reduced consumption of NO by RBCs, because without the flow, the NO consumption by RBCs is already about 3 orders of magnitude slower than free Hb.Keywords
This publication has 32 references indexed in Scilit:
- Tetrahydrobiopterin, a Cofactor for Nitric Oxide Synthase, Produces Endothelium-Dependent Dilation of Mouse Pial ArteriolesStroke, 1997
- S-nitrosohaemoglobin: a dynamic activity of blood involved in vascular controlNature, 1996
- Nitric Oxide Mitigates Leukocyte Adhesion and Vascular Leak After Myocardial IschemiaJournal of Molecular and Cellular Cardiology, 1996
- Mechanism of NO-Induced Oxidation of Myoglobin and HemoglobinBiochemistry, 1996
- Role of Nitric Oxide in the Regulation of Coronary Vascular Tone in Hearts From Hypertensive RatsHypertension, 1995
- Recombinant Human Hemoglobin Inhibits Both Constitutive and Cytokine-Induced Nitric Oxide-Mediated Relaxation of Rabbit Isolated Aortic RingsJournal of Cardiovascular Pharmacology, 1994
- Cell-Free Hemoglobin Reverses the Endotoxin-Mediated Hyporesponsivity of Rat Aortic Rings to α-Adrenergic AgentsBiochemical and Biophysical Research Communications, 1994
- Inhibition of endothelium-dependent vasorelaxation by sickle erythrocytesAmerican Heart Journal, 1993
- Effects of inhibition of nitric oxide formation on basal vasomotion and endothelium-dependent responses of the coronary arteries in awake dogs.Journal of Clinical Investigation, 1991
- Conformation, co-operativity and ligand binding in human hemoglobinJournal of Molecular Biology, 1975