Reactions of Nitric Oxide with Nitronyl Nitroxides and Oxygen: Prediction of Nitrite and Nitrate Formation by Kinetic Simulation
- 1 January 1995
- journal article
- research article
- Published by Taylor & Francis in Free Radical Research
- Vol. 22 (1) , 47-56
- https://doi.org/10.3109/10715769509147527
Abstract
Nitric oxide reacts with nitronyl nitroxides (NNO) to form imino nitroxides (INO) and this transformation can be monitored using electron spin resonance spectroscopy. Recently, Akaike et al., reported that NNO such as 2-phenyl-4,4,5,5-tetramethylimidazoline-3-oxide-1-oxyl (PTIO) and its derivatives (e.g., carboxy-PTIO) react with nitric oxide (.NO) in a 1:1 stoichiometry forming 2-phenyl-4,4,5,5-tetramethylimidazoline-1-oxyl (PTI) or the respective product (e.g., carboxy-PTI) together with nitrite and nitrate (Akaike et al., Biochemistry 32, 827-332, 1993). In this paper, we reevaluate their results and show that the stoichiometry of the reaction between PTIO and .NO is 0.63 +/- 0.06:1.0. The reason for this discrepancy is due to an erroneous assumption by Akaike et al., that the stoichiometry for the reaction between .NO and O2 is 2:1 in aqueous solution. If the data reported by Akaike et al., were recalculated using a 4:1 stoichiometry established for the aqueous oxidation of .NO, the reaction between .NO and PTIO would give a stoichiometry of 0.5:1.0 in closer agreement with our data. We propose mechanism for the reaction between PTIO and .NO in aqueous solution. This mechanism predicts that the stoichiometry between carboxy-PTIO and .NO is dependent on the rate of generation of .NO and is 1:1 only at low rates of .NO generation (i.e., 10(-13) M/s). However the stoichiometry approaches 0.5:1.0 at higher rates of .NO production or when it is added as a bolus. The ratio between nitrite and nitrate also varies as a function of the rate of generation of .NO. The model agrees with previous experimental observations that the aqueous oxidation of .NO in air saturated solutions will exclusively form nitrite and predicts that .NO will only generate substantial amounts of nitrate if it is released at a rate less than 10(-17) M/s. This may have important consequences in cellular systems where the concentration of .NO is typically measured from nitrite production.Keywords
This publication has 14 references indexed in Scilit:
- Autoxidation kinetics of aqueous nitric oxideFEBS Letters, 1993
- Trapping of Nitric Oxide by Nitronyl Nitroxides: An Electron Spin Resonance InvestigationBiochemical and Biophysical Research Communications, 1993
- Antagonistic action of imidazolineoxyl N-oxides against endothelium-derived relaxing factor/.bul.NO (nitric oxide) through a radical reactionBiochemistry, 1993
- Reactions of the bioregulatory agent nitric oxide in oxygenated aqueous media: Determination of the kinetics for oxidation and nitrosation by intermediates generated in the nitric oxide/oxygen reactionChemical Research in Toxicology, 1993
- Biological Roles of Nitric OxideScientific American, 1992
- The Biochemical Pathways of Nitric Oxide Formation from NitrovasodilatorsJournal of Cardiovascular Pharmacology, 1991
- Oxidation of nitrogen oxides by bound dioxygen in hemoproteinsJournal of Inorganic Biochemistry, 1981
- A stable free radical reagent and solid phase suitable for a nitric oxide dosimeterAnalytical Chemistry, 1977
- Stable free radicals. X. Nitronyl nitroxide monoradicals and biradicals as possible small molecule spin labelsJournal of the American Chemical Society, 1972
- Studies of free radicals. I. .alpha.-Nitronyl nitroxides, a new class of stable radicalsJournal of the American Chemical Society, 1968