Age-related changes in superoxide dismutase, glutathione peroxidase, catalase and xanthine oxidoreductase/xanthine oxidase activities in the rabbit cornea
Autor: | Pláteník J, Stanislav Štípek, Jitka Cejkova, Martin Vejrazka |
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Rok vydání: | 2004 |
Předmět: |
Xanthine Oxidase
Aging medicine.medical_specialty Antioxidant medicine.medical_treatment medicine.disease_cause Biochemistry Cornea Superoxide dismutase chemistry.chemical_compound Endocrinology Internal medicine Genetics medicine Animals Xanthine oxidase Molecular Biology chemistry.chemical_classification Glutathione Peroxidase Reactive oxygen species biology Superoxide Dismutase Glutathione peroxidase Epithelium Corneal Cell Biology Catalase eye diseases Oxidative Stress Enzyme chemistry biology.protein Female Rabbits sense organs Oxidoreductases Oxidative stress |
Zdroj: | Experimental Gerontology. 39:1537-1543 |
ISSN: | 0531-5565 |
Popis: | The activities of superoxide dismutase, glutathione peroxidase (GPX) and catalase—the enzymatic scavengers of reactive oxygen species and the activities of xanthine oxidoreductase and xanthine oxidase, an enzyme known to generate reactive oxygen species, were studied in the corneas of normal rabbit eyes of various ages (1 month—young eyes; 4–9.5 months—young adult eyes; 2.0–2.75 years—middle aged eyes; 3.0–5.0 years—aged eyes). The activities of GPX, superoxide dismutase, xanthine oxidoreductase and xanthine oxidase were investigated biochemically in the scraped corneal epithelium. Catalase activity was detected histochemically in the corneal epithelium and endothelium. The results show that young corneas revealed lower activities of all the antioxidant enzymes investigated than did young adult corneas, in which enzymatic activities reached their maximum. In middle-aged corneas, GPX and catalase activities remained approximately at the same levels as seen in young adult corneas, whereas superoxide dismutase activity was decreased. In aged corneas, the activities of all antioxidant enzymes were dramatically decreased or even lost (catalase activity in the corneal endothelium). In contrast, xanthine oxidoreductase activity only slightly decreased with age and the xanthine oxidase proportion of total xanthine oxidoreductase remained unchanged. GPX, superoxide dismutase and catalase are important antioxidant enzymes protecting the cornea against the oxidative damage. Because the activities of these enzymes are lower in young animals and greatly reduced in aged animals, it is suggested that young and particularly aged corneas might be more susceptible to oxidative stress than are young adult corneas. This presumption is supported by the fact that the activities of prooxidant enzymes (xanthine oxidoreductase/xanthine oxidase) are only slightly decreased in aged corneas as compared to young adult corneas so that some imbalance between antioxidant and prooxidant enzymes exists already in the normal aged corneas. |
Databáze: | OpenAIRE |
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