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      Oxidative damage and changes in the glutathione redox system in erythrocytes from rats treated with hexachlorocyclohexane

      , ,
      Food and Chemical Toxicology
      Elsevier BV

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          Most cited references15

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          The preparation and chemical characteristics of hemoglobin-free ghosts of human erythrocytes

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            GLUTATHIONE PEROXIDASE IN LENS AND A SOURCE OF HYDROGEN PEROXIDE IN AQUEOUS HUMOUR.

            A Pirie (1965)
            1. Glutathione peroxidase has been demonstrated in cattle, rabbit and guineapig lenses. 2. The enzyme will oxidize GSH either with hydrogen peroxide added at the start of the reaction or with hydrogen peroxide generated enzymically with glucose oxidase. 3. No product other than GSSG was detected. 4. Oxidation of GSH can be coupled with oxidation of malate through the intermediate reaction of glutathione reductase and NADPH(2). 5. Traces of hydrogen peroxide are present in aqueous humour: it is formed when the ascorbic acid of aqueous humour is oxidized. 6. Hydrogen peroxide will diffuse into the explanted intact lens and oxidize the contained GSH. The addition of glucose to the medium together with hydrogen peroxide maintains the concentration of lens GSH. 7. Glutathione peroxidase in lens extracts will couple with the oxidation of ascorbic acid. 8. It is suggested that, as there is only weak catalase activity in lens, glutathione peroxidase may act as one link between the oxygen of the aqueous humour and NADPH(2).
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              Dose-dependent study of the effects of acute lindane administration on rat liver superoxide anion production, antiooidant enzyme activities and lipid peroxidation

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                Author and article information

                Journal
                Food and Chemical Toxicology
                Food and Chemical Toxicology
                Elsevier BV
                02786915
                January 1991
                January 1991
                : 29
                : 7
                : 459-462
                Article
                10.1016/0278-6915(91)90091-K
                8531a3ca-3414-433b-86ef-1c3be4b9e522
                © 1991

                http://www.elsevier.com/tdm/userlicense/1.0/

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