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Human erythrocyte superoxide dismutase activity during deep diving
Summary
High pressure oxygen (HPO) exposure decreases erythrocyte superoxide dismutase (SOD) activity in divers. This loss of immuno-measurable enzyme, not Heinz bodies, occurs at depths over 150m.
Area of Science:
- Biomedical Science
- Occupational Health
- Marine Biology
Background:
- High pressure oxygen (HPO) is increasingly used in clinical settings and offshore industries.
- Understanding HPO's toxic effects, particularly on red blood cells, is crucial for safety.
Purpose of the Study:
- To investigate the impact of high pressure exposure on erythrocyte superoxide dismutase (SOD) activity in divers.
- To determine the mechanism behind SOD activity changes and assess red blood cell resistance to oxygen toxicity.
Main Methods:
- Monitoring erythrocyte SOD activity in divers at depths greater than 150m.
- Assaying total red cell SOD protein and activity, and examining for intra-cellular Heinz bodies.
- Measuring intra-membrane lipid peroxidation products in red blood cell fractions.
- Conducting in vitro experiments on pressure-stressed human red blood cells at varying oxygen pressures.
Main Results:
- Erythrocyte SOD activity decreased by an average of 20% at depths exceeding 150m.
- The reduction in SOD activity was attributed to the loss of immuno-measurable enzyme, not Heinz body formation.
- Increased intra-membrane lipid peroxidation products were observed in denser red cell fractions.
- Human red blood cells demonstrated resistance to oxygen up to 0.021 MPa (0.21 bar), after which SOD activity loss and hemolysis occurred during decompression.
Conclusions:
- High pressure oxygen exposure significantly impacts erythrocyte SOD activity in divers.
- The primary mechanism involves the loss of functional SOD enzyme, with lipid peroxidation as a secondary effect.
- Human red blood cells have a defined tolerance limit to high pressure oxygen before experiencing detrimental effects like hemolysis.