We have tested the hypothesis that oxidation of lung surfactant results in loss of surface tension lowering function. Porcine lung surfactant was exposed to conditions known to cause lipid peroxidation (0.2 mM FeCl2 + 0.1 mM H2O2 or 5 microM CuCl2). Lipid peroxidation was verified by detection of conjugated dienes, thiobarbituric acid reactive substances, fluorescent products, hydroxy alkenals, and loss of unsaturated fatty acids. Exposed samples had significantly diminished surface tension lowering ability in vitro as measured in a bubble surfactometer. Samples exposed to FeCl2 + H2O2 had significantly diminished surface tension lowering ability in vivo as indicated by their reduced ability to improve lung compliance of surfactant-deficient fetal rabbits. Oxidation of phospholipid mixtures with surface tension lowering activity and containing unsaturated acyl groups resulted in partial loss of activity as determined in vitro. These results suggest that the effect of oxidants on lung surfactant function is due, in part, to effects on the phospholipid components and that acute pulmonary inflammation accompanied by oxygen radical production may result in surfactant lipid peroxidation and loss of surface tension lowering function.
N Gilliard, G P Heldt, J Loredo, H Gasser, H Redl, T A Merritt, R G Spragg
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Oxidative Stress in Lung Diseases: Volume 2
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2019 | |
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Comprehensive Physiology | 2012 |
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A Dushianthan, R Cusack, V Goss, AD Postle, MP Grocott |
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Multiscale and Multiphysics Computational Frameworks for Nano- and Bio-Systems
H Kim |
2010 | |
Time Resolved Studies of Interfacial Reactions of Ozone with Pulmonary Phospholipid Surfactants Using Field Induced Droplet Ionization Mass Spectrometry
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2007 | |
Reactive Oxygen Species Inactivation of Surfactant Involves Structural and Functional Alterations to Surfactant Proteins SP-B and SP-C
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JW Anseth, AJ Goffin, GG Fuller, AJ Ghio, PN Kao, D Upadhyay |
American journal of respiratory cell and molecular biology | 2005 |
Pulmonary surfactant protein A inhibits the lipid peroxidation stimulated by linoleic acid hydroperoxide of rat lung mitochondria and microsomes
AM Terrasa, MH Guajardo, E de Armas Sanabria, A Catalá |
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M Ochs, H Fehrenbach, J Richter |
The Anatomical Record | 2004 |
Hyperoxia exposure impairs surfactant function and metabolism
H Zenri, K Rodriquez-Capote, L McCaig, LJ Yao, A Brackenbury, F Possmayer, R Veldhuizen, J Lewis |
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Ontogeny of the Pulmonary Surfactant and Antioxidant Enzyme Systems in the Viviparous Lizard, Tiliqua rugosa
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Comparative Biochemistry and Physiology - Part A Molecular & Integrative Physiology | 2001 |
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HP Haagsman |
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Mechanisms of Surfactant Dysfunction in Early Acute Lung Injury
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Yearbook of Intensive Care and Emergency Medicine 1997
JL Vincent |
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Toxic oxidant species and their impact on the pulmonary surfactant system
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Nitric oxide and lung surfactant
M Hallman, K Bry |
Seminars in Perinatology | 1996 |
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Journal of Clinical Investigation | 1995 |