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Xenobiotica
the fate of foreign compounds in biological systems
Volume 20, 1990 - Issue 9
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Original Article

Effects of glutathione depletion, chelation and diuresis on iron nitrilotriacetate-induced lipid peroxidation in rats and mice

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Pages 879-886 | Received 03 May 1989, Accepted 08 Sep 1989, Published online: 27 Aug 2009

References

  • Anderson R. L., Bishop W. E., Campbell R. L. A review of the environmental and mammalian toxicology of nitrilotriacetate. Critical Reviews in Toxicology 1985; 15: 1–102
  • Bailey R. R., Natale R., Turnbull D. I., Linton A. L. Protective effect of frusemide in acute tubular necrosis and acute renal failure. Clinical Science and Molecular Medicine 1973; 45: 1–17
  • Booth J., Boyland E., Cooling C. The respiration of human liver tissue. Biochemical Pharmacology 1967; 16: 721–724
  • Brezis M., Rosen S., Silva P., Epstein F. H. Selective glutathione depletion on function and structure of the isolated perfused kidney. Kidney International 1983; 24: 178–184
  • Burton G. W., Aherene G. W. Sensitive measurement of glutathione using isocratic high-performance liquid chromatography. Journal of Chromatography 1986; 382: 253–257
  • Cadenas E., Wefers H., Sies H. Low level chemiluminescence of isolated hepatocytes. European Journal of Biochemistry 1981; 119: 531–536
  • Cadenas E., Muller A., Brigelius R., Esterbauer H., Sies H. Effects of 4-hydroxynonenal on isolated hepatocytes. Studies on chemiluminescence response, alkane production and glutathione status. Biochemical Journal 1983; 214: 479–487
  • Carlberg I., Mannervik B. Purification and characterisation of the flavoenzyme glutathione reductase from rat liver. Journal of Biological Chemistry 1975; 250: 5475–5480
  • Casini A. F., Pompella A., Comporti M. Liver glutathione depletion induced by bromobenzene, relation to lipid peroxidation and necrosis. American Journal of Pathology 1985; 118: 225–237
  • Dierickx P. J., Asnong C. J. Inhibition of glutathione biosynthesis by buthionine sulfoximine in rat liver. I.R.C.S. Medical Science 1983; 11: 89–90
  • Draper H. H., Polensck L., Hadley M., McGirr L. G. Urinary malondialdehyde as an indicator of lipid peroxidation in the diet and in the tissues. Lipids 1984; 19: 989–995
  • Drew R., Miners J. O. The effects of buthionine sulfoximine (BSO) on glutathione depletion and xenobiotic transformation. Biochemical Pharmacology 1984; 33: 2989–2994
  • Eyer P., Podhradsky D. Evaluation of the micro-method for the determination of glutathione using enzymatic cycling and Ellman's reagent. Analytical Biochemistry 1986; 153: 57–66
  • Goddard J. G., Sweeney G. D. Ferric nitrilotriacetate: a potent stimulant of in vivo lipid peroxidation in mice. Biochemical Pharmacology 1983; 32: 3879–3882
  • Griffith O. W. Determination of glutathione and glutathione disulfide using glutathione reductase and 2-vinylpyridine. Analytical Biochemistry 1980; 106: 207–212
  • Griffith O. W., Meister A. Glutathione: interorgan translocation, turnover and metabolism. Proceedings of the National Academy of Sciences, USA 1979; 76: 5606–5610
  • Gstraunthaler G., Pfaller W., Kotanko P. Glutathione depletion and in vitro lipid peroxidation in mercury or maleate induced acute renal failure. Biochemical Pharmacology 1983; 32: 2969–2972
  • Gulumian M., Sardianos F., Kilrose-Smith T., Ockerse G. Lipid peroxidation in microsomes induced by crocidolite fibres. Chemico-Biological Interactions 1983; 44: 111–118
  • Gutteridge J. M. C., Richmond R., Halliwell B. Inhibition of the iron-catalysed formation of hydroxyl radicals from superoxide by desferrioxamine. Biochemistry Journal 1979; 184: 469–472
  • Habig W. H., Pabst M. J., Jakoby W. B. Glutathione S-transferases the first step in mercapturic acid formation. Journal of Biological Chemistry 1974; 249: 7130–7139
  • Halliwell B., Gutteridge J. M. C. Oxygen free radicals and iron in relation to biology and medicine: some problems and concepts. Archives of Biochemistry and Biophysics 1986; 246: 501–514
  • Hamazaki S., Okada S., Ebina Y., Midorixawa O. Acute renal failure and glucosuria induced by ferric nitrilotriacetate in rats. Toxicolocy and Applied Pharmacology 1985; 77: 267–274
  • Hamazaki S., Okada S., Li J.-L., Toyokuni S., Midorikawa O. Oxygen reduction and lipid peroxidation by iron chelates with special reference to ferric nitrilotriacetate. Archives of Biochemistry and Biophysics 1989; 272: 10–17
  • Hue D. P., Griffith K. L., McLean A. E. M. Hepatocytes in primary culture become susceptible to paracetamol injury after depletion of glutathione using DL-buthionine-SR-sulphoximine (BSO). Biochemical Pharmacology 1985; 34: 4341–4344
  • Huebers H. Iron overloads: pathogenesis and treatment with chelating agents. Blut 1983; 47: 61–67
  • Kera Y., Kiriyama T., Komura S. Acceleration of hepatic lipid peroxidation by long-term depletion of reduced glutathione in rats. I.R.C.S. Medical Science and Biochemistry 1985; 13: 787–788
  • Kramer R. A., Schuller H. M., Smith A. C., Boyd M. R. Effects of buthione sulfoximine on the nephrotoxicity of 1-(2-chloroethyl)-3-(trans-4-methylcyclohexyl)-1-nitroso-urea (Me CCNU). Journal of Pharmacological and Experimental Therapeutics 1985; 234: 498–506
  • Meister A., Anderson M. E. Glutathione. Annual Review of Biochemistry 1983; 52: 711–760
  • Minchinton A. I. Measurement of glutathione and other thiols in cells and tissues: a simplified procedure based on the H.P.L.C. separation of monobromobimane derivatives of thiols. International Journal of Radiation Oncology, Biology and Physics 1984; 10: 1503–1506
  • Minchinton A. I., Rojas A., Smith K. A., Soranson J. A., Shrieve D. C., Jones N. R., Bremner J. C. Glutathione depletion in tissues after administration of buthionine sulfoximine. International Journal of Radiation Oncology, Biology and Physics 1984; 10: 1261–1264
  • Mitchell J. R., Smith C. V., Hughes H., Lauterburg B. H., Horning E. C. Drug-induced lipid peroxidation and hepatocellular necrosis: cause or result?. Gastroenterology 1979; 77: A28
  • Nielands J. B. Microbial iron compounds. Annual Review of Biochemistry 1981; 25: 509–528
  • Owens C. W. I., Belcher R. V. A colorimetric micro-method for the determination of glutathione. Biochemical Journal 1965; 94: 705–711
  • Pollack S., Ruocco S. Synergistic effect of nitrilotriacetate on iron mobilization by desferrioxamine in vivo. Blood 1981; 57: 1117–1118
  • Preece N. E., Evans P. F., Howarth J. A., King L. A., Parke D. V. The induction of autoxidative tissue damage by iron nitrilotriacetate in rats and mice. Toxicology and Applied Pharmacology 1988; 93: 89–100
  • Preece N. E., Hall D. E., Howarth J. A., King L. J., Parke D. V. Effects of acute and sub-chronic administration of iron nitrilotriacetate on tissue injury in the rat. Toxicology 1989, (in press)
  • Schnellmann R. G., Mandel L. J. Multiple effects of presumed glutathione depletors on rabbit proximal tubules. Kidney International 1986; 29: 858–862
  • Thiel G., Brunner F., Wunderlich P. Protection of rat kidneys against HgCl2-induced acute renal failure by induction of high urine flow without renin suppression. Kidney International 1976; 10: S191–S200
  • Van Doorn R., Leijdekkers C. M., Henderson P. T. Synergistic effect of phorone on the hepatotoxicity of bromobenzene and paracetamol in mice. Toxicology 1978; 11: 225–233
  • Weitzman S. A., Weitberg A. B. Asbestos-catalysed lipid peroxidation and its inhibition by desferrioxamine. Biochemical Journal 1985; 225: 259–262
  • White R. D., Norton R., Bus J. S. The effect of buthionine sulfoximine, an inhibitor of glutathione synthesis, on hepatic drug-metabolism in the male mouse. Toxicological Letters 1984; 23: 25–32
  • Yamanoi Y., Matsuura R., Awai M. Mechanism of iron toxicity in the liver and pancreas after a single injection of ferric nitrilotriacetate. Acta Haematologica Japan 1982; 45: 1229–1235
  • Yoshida T., Ogura T., Numazawa S., Kuroiwa Y. Effects of phorone (diisopropylidine acetone) a glutathione (GSH) depletor, on hepatic enzymes involved in drug and heme metabolism in rats: evidence that phorone is a potent inducer of heme oxygenase. Biochemical and Biophysical Research Communications 1987; 145: 502–508
  • Younes M., Siegers C.-P. The role of iron in the paracetamol- and CCl4-induced lipid peroxidation and hepatotoxicity. Chemico-Biological Interactions 1985; 55: 327–334
  • Younes M., Albrecht M., Siegers C.-P. The role of iron in the NADPH-dependent lipid peroxidation due to glutathione depletion by phorone. Pharmacological Research Communications 1984; 16: 153–160

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