Protection Against Lethal Hyperoxia by Tracheal Insufflation of Erythrocytes: Role of Red Cell Glutathione
- 15 February 1985
- journal article
- other
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 227 (4688) , 756-759
- https://doi.org/10.1126/science.2982213
Abstract
Intact erythrocytes placed into the tracheobronchial tree of hyperoxic rats dramatically improved their chances for survival. Over 70 percent of the animals so treated survived more than 12 days during continuous exposure to 95 percent oxygen, whereas all of the control animals died within 96 hours. Lungs from erythrocyte-protected rats showed almost none of the morphologic damage suffered by untreated animals. Erythrocytes containing cyanomethemoglobin were as beneficial as normal erythrocytes, but cells in which glutathione was partially blocked were significantly less protective. Analogous results were obtained in vitro: 51Cr-labeled target cells released 70 to 90 percent of their label when exposed briefly to hydrogen peroxide or to toxic oxygen species generated by phorbol ester-stimulated neutrophils. Addition of intact erythrocytes decreased release by approximately 75 percent, but significantly less than this if red blood cell glutathione was partially blocked. These results suggest that insufflated erythrocytes, through their recyclable glutathione, protect rats from toxic oxygen species engendered by hyperoxia.Keywords
This publication has 21 references indexed in Scilit:
- Glutathione redox cycle protects cultured endothelial cells against lysis by extracellularly generated hydrogen peroxide.Journal of Clinical Investigation, 1984
- Protection against oxygen toxicity by intravenous injection of liposome-entrapped catalase and superoxide dismutase.Journal of Clinical Investigation, 1984
- Biliary excretion of glutathione and glutathione disulfide in the rat. Regulation and response to oxidative stress.Journal of Clinical Investigation, 1984
- Pulmonary Oxygen ToxicityNew England Journal of Medicine, 1983
- Metabolism of deoxycorticosterone and deoxycorticosterone sulfate in men and women.Journal of Clinical Investigation, 1982
- Oxidant injury of lung parenchymal cells.Journal of Clinical Investigation, 1981
- The role of endotoxin in protection of adult rats from oxygen-induced lung toxicity.Journal of Clinical Investigation, 1978
- The nature of the membrane sites controlling anion permeability of human red blood cells as determined by studies with disulfonic stilbene derivativesThe Journal of Membrane Biology, 1972
- Oxidative Hemolysis and Erythrocyte Metabolism in Hereditary Acatalasia*Journal of Clinical Investigation, 1965
- EFFECTS OF SULFHYDRYL INHIBITION ON RED BLOOD CELLS. I. MECHANISM OF HEMOLYSIS*Journal of Clinical Investigation, 1962