Dietary antioxidants and cigarette smoke-induced biomolecular damage: a complex interaction
Open Access
- 1 December 1995
- journal article
- research article
- Published by Elsevier in The American Journal of Clinical Nutrition
- Vol. 62 (6) , 1490S-1500S
- https://doi.org/10.1093/ajcn/62.6.1490s
Abstract
Epidemiologic evidence suggests that cigarette smoking is a major risk factor for chronic obstructive pulmonary diseases such as chronic bronchitis and emphysema, for carcinogenesis, and for cardiovascular disease. However, the precise mechanisms of these effects are incompletely understood. The gas phase of cigarette smoke contains abundant free radicals including nitric oxide. Hence, cigarette smoke may induce some of its damaging effects by free radical mechanisms. We report that exposure of plasma, a model for respiratory tract lining fluids, to gas-phase cigarette smoke causes depletion of antioxidants, including ascorbate, urate, ubiquinol-10, and alpha-tocopherol, and a variety of carotenoids, including beta-carotene. Gas-phase cigarette smoke induced some lipid peroxidation, as measured by cholesteryl linoleate hydroperoxide (18:2OOH) formation. Ascorbate was effective in preventing 18:2OOH formation. In contrast to the low concentrations of lipid hydroperoxides measured (< 1 mumol/L), protein carbonyl formation, a measure of protein modification, increased by approximately 400 mumol/L after nine puffs of cigarette smoke. Reduced glutathione inhibited protein carbonyl formation, whereas other plasma antioxidants, including ascorbate, were ineffective. alpha, beta-Unsaturated aldehydes (acrolein and crotonaldehyde) in cigarette smoke may react with protein -SH and -NH2 groups by a Michael addition reaction that results in a protein-bound aldehyde functional group. Gas-phase cigarette smoke is capable of converting tyrosine to 3-nitrotyrosine and dityrosine, indicating free radical mechanisms of protein damage by nitrogen oxides. Aldehydes and nitrogen oxides in cigarette smoke may be significant contributors to biomolecular damage, and endogenous antioxidants can attenuate some of these adverse effects.Keywords
This publication has 99 references indexed in Scilit:
- Cigarette smoke extract inhibits oxidative modification of low density lipoproteinAtherosclerosis, 1995
- Cigarette Smoking Increases Monocyte Adherence to Cultured Endothelial Cell MonolayerBiochemical and Biophysical Research Communications, 1994
- Cigarette smoke chemistry: conversion of nitric oxide to nitrogen dioxide and reactions of nitrogen oxides with other smoke components as studied by Fourier transform infrared spectroscopyVibrational Spectroscopy, 1994
- Membrane Damage from Lipid Oxidation Induced by Free Radicals and Cigarette SmokeaAnnals of the New York Academy of Sciences, 1993
- The Pecking Order of Free Radicals and Antioxidants: Lipid Peroxidation, α-Tocopherol, and AscorbateArchives of Biochemistry and Biophysics, 1993
- Effects of Cigarette Smoke on the Glutathione Status of the Upper and Lower Respiratory Tract of RatsInhalation Toxicology, 1993
- Nephrotoxicity of the 1:1 acrolein-glutathione adduct in the ratToxicology and Applied Pharmacology, 1992
- Cigarette smoke-induced DNA damage in cultured human lung cells: Role of hydroxyl radicals and endonuclease activationChemico-Biological Interactions, 1992
- Beyond CholesterolNew England Journal of Medicine, 1989
- Co-oxidation of luminol by hypochlorite and hydrogen peroxide implications for neutrophil chemiluminescenceBiochemical and Biophysical Research Communications, 1985