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      Depleted nitrite and enhanced oxidative stress in urolithiasis

      , , , ,
      Indian Journal of Clinical Biochemistry
      Springer Nature

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          Osteopontin--a molecule for all seasons

          M Mazzali (2002)
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            Lipid peroxidation in ethylene glycol induced hyperoxaluria and calcium oxalate nephrolithiasis.

            To determine if lipid peroxidation plays a role in renal injury associated with experimental nephrolithiasis. Hyperoxaluria was produced in rats by ethylene glycol in drinking water. At 15, 30 and 60 days of treatment, urinary oxalate, lipid peroxide, calcium oxalate crystals, enzymes and tissue lipid peroxide were measured. Urinary oxalate increased significantly at all time periods and was associated with crystalluria. Lipid peroxides in kidney tissue and urine increased at all time periods. Tissue calcium oxalate crystal deposits from 0 to 1+ were present on day 15, but present in all animals on days 30 and 60. Renal tubular cell damage was confirmed by an increase in urinary marker enzymes. Renal cell damage is associated with lipid peroxide production indicating cell injury due to the production of free radicals. The damage appears due primarily to hyperoxaluria and is augmented by crystal deposition in the renal tubules.
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              Expression of Osteopontin in Rat Kidneys: Induction During Ethylene Glycol Induced Calcium Oxalate Nephrolithiasis

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                Author and article information

                Journal
                Indian Journal of Clinical Biochemistry
                Indian J Clin Biochem
                Springer Nature
                0970-1915
                0974-0422
                September 2006
                September 2006
                : 21
                : 2
                : 177-180
                Article
                10.1007/BF02912938
                23105640
                53115c4a-fa34-482a-9959-37d4f958845d
                © 2006
                History

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