4.7 Article

Biomarkers of oxidative stress study VI. Endogenous plasma antioxidants fail as useful biomarkers of endotoxin-induced oxidative stress

Journal

FREE RADICAL BIOLOGY AND MEDICINE
Volume 81, Issue -, Pages 100-106

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.freeradbiomed.2015.01.006

Keywords

LPS; Oxidative stress; Biomarkers; Plasma antioxidants; Mini-pig model; Free radicals

Funding

  1. National Institute of Environmental Health Sciences Intramural Research Program, National Institutes of Health

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This is the newest report in a series of publications aiming to identify a blood-based antioxidant biomarker that could serve as an in vivo indicator of oxidative stress. The goal of the study was to test whether acutely exposing Gottingen mini pigs to the endotoxin lipopolysaccharide (LPS) results in a loss of antioxidants from plasma. We set as a criterion that a significant effect should be measured in plasma and seen at both doses and at more than one time point Animals were injected with two doses of LPS at 2.5 and 514/kg iv. Control plasma was collected from each animal before the LPS injection. After the LPS injection, plasma samples were collected at 2, 16, 48, and 72 h. Compared with the controls at the same time point, statistically significant losses were not found for either dose at multiple time points in any of the following potential markers: ascorbic acid, tocopherols (alpha, delta, gamma), ratios of GSH/GSSG and cysteine/cystine, mixed disulfides, and total antioxidant capacity. However, uric acid, total GSH, and total Cys were significantly increased, probably because LPS had a harmful effect on the liver. The leakage of substances from damaged cells into the plasma may have increased plasma antioxidant concentrations, making changes difficult to interpret Although this study used a mini-pig animal model of LPS-induced oxidative stress, it confirmed our previous findings in different rat models that measurement of antioxidants in plasma is not useful for the assessment of oxidative damage in vivo. Published by Elsevier Inc.

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