Half-life of nitric oxide in aqueous solutions with and without haemoglobin
- 1 November 1996
- journal article
- Published by IOP Publishing in Physiological Measurement
- Vol. 17 (4) , 267-277
- https://doi.org/10.1088/0967-3334/17/4/004
Abstract
Nitric oxide (NO) has been linked to many regulatory functions in mammalian cells. Studies of NO release are hampered by the short half-life of the molecule. In the blood, NO disappears within seconds because it binds avidly with haemoglobin (Hb). The relationship between Hb concentration and NO disappearance, however, has not been described. In this study we utilized an amperometric NO sensor (WPI, Sarasota, FL) to monitor continuously the disappearance of NO from an aqueous solution when Hb (free or as red blood cells) was added. The calibration and linearity of the NO sensor was checked frequently using a chemical reaction to generate a known concentration of NO. An aliquot of NO solution (prepared from authentic gas) was added to a glass beaker containing 20 ml saline to generate NO concentration of approximately 1200 nM. Under our experimental conditions , NO concentration fell slowly over 20 min with a half-life of 445 s. However, when haemoglobin was added, NO disappeared rapidly in proportion to Hb concentration. The results suggest that rapid binding of NO to Hb occurs in a 4:1 ratio. The maximum rate constant of NO disappearance due to binding with Hb was . The 4:1 binding ratio between NO:Hb may be used as a tool to quantitate NO release in some biological assays. The study supports the notion that NO acts as an autocoid because it disappears rapidly in the presence of Hb and is not likely to act as a circulating humoral substance. The NO sensor was useful for monitoring of NO concentration in Hb free solutions, but its response time limits its use in blood. Keywords: nitric oxide, haemoglobin, rate constant, temperature, meterKeywords
This publication has 27 references indexed in Scilit:
- Measurement of nitric oxide in biological modelsThe FASEB Journal, 1993
- The study of biological nitric oxideNeuroprotocols, 1992
- Inhaled nitric oxide. A selective pulmonary vasodilator reversing hypoxic pulmonary vasoconstriction.Circulation, 1991
- Use of thionitrobenzoic acid to characterize the stability of nitric oxide in aqueous solutions and in porcine aortic endothelial cell suspensionsAnalytical Biochemistry, 1990
- Human red blood cells inhibit endothelium-derived relaxing factor (EDRF) activityEuropean Journal of Pharmacology, 1989
- Correlation between nitric oxide formation during degradation of organic nitrates and activation of guanylate cyclaseEuropean Journal of Pharmacology, 1987
- Effects of exposure of blood hemoglobin to nitric oxideEnvironmental Research, 1985
- Oxidation of nitrogen oxides by bound dioxygen in hemoproteinsJournal of Inorganic Biochemistry, 1981
- Interactions of blood metalloproteins with nitrogen oxides and oxidant air pollutantsEnvironmental Research, 1979
- The kinetics and equilibria of the reactions of nitric oxide with sheep haemoglobinThe Journal of Physiology, 1957