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Original Article

Increase of Lipid Hydroperoxides in Liver Mitochondria and Inhibition of Cytochrome Oxidase by Carbon Tetrachloride -Intoxication in Rats

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Pages 403-410 | Received 14 Jan 1998, Published online: 07 Jul 2009

References

  • Zimmerman H. J. Hepatotoxicity, The Adverse Effects of Drugs and Other Chemicals on the Liver. Appleton-Century-Crofts, New York 1978
  • Recknagel R. O., Glende E. A., Jr., Hruszkewcyz A. M. Free Radicals in Biology, W. A. Pryor. Academic Press, New York 1977; Vol. III: 97–132
  • Recknagel R. O. A new direction in the study of carbon tetrachloride hepatotoxicity. Life Sciences 1983; 33: 401–408
  • Pronzato M. A., Domenicotti C., Rosso E., Bellocchio A., Patrone M., Marinari U. M., Melloni E., Poli G. Modulation of rat liver protein kinase C during “in vivo” CCl4-induced oxidative stress. Biochemical arid Biopliysical Research Communications 1993; 194: 635–641
  • Thomas P. D., Poznansky M. J. Lipid peroxidation inactivates rat liver microsomal glycerol-3-phosphate acyl transferase. Effect of iron and copper salts and carbon tetrachloride. Journal of Biological Chemistry 1990; 265: 2684–2691
  • Takahashi H., Yamaguchi M. Activato effect of regucalcin on hepatic plasma membrane (Ca2+-Mg2+) ATPase is impaired by liver injury with carbon tetrachloride administration in rats. Molecular and Cellular Biochemistry 1996; 158: 9–16
  • Padron A. G., de Toranzo E. G. D., Castro J. A. Depresion of liver microsomal glucose 6-phosphatase activity in carbon tetrachloride-poisoned rats. Potential synergistic effects of lipid peroxidation and of covalent binding of haloalkane-derived free radicals to cellular components in the process. Free Radical Biology and Medicine 1996; 21: 81–87
  • Tokumaru S., Tsukamoto I., Iguchi H., Kojo S. Specific and sensitive determination of lipid hydroperoxides with chemical derivatization into 1-naphthyldiphenylphosphine oxide and high-performance liquid chromatography. Analytica Chimica Acta 1995; 307: 97–102
  • Tokumaru S., Takeshita S., Nakata R., Tsukamoto I., Kojo S. Change in the level of vitamin C and lipid peroxidation in tissues of the inherently scorbutic rat during ascorbate deficiency. Journal of Agricultural and Food Chemisty 1996; 44: 2748–2753
  • Tokumaru S., Ogino R., Shiromoto A., Iguchi H., Kojo S. Increase of lipid hydroperoxides in tissues of vitamin E-deficient rats. Free Radical Research 1997; 26: 169–174
  • Hogeboom G. H. Fractionation of cell compartments of animal tissues. Methods in Enzymology 1955; 1: 16–19
  • Takahashi T., Okamoto T., Mori K., Sayo H., Kishi T. Distribution of ubiquinone and ubiquinol homolopes in rat tissues and subcellular fractions. Lipids 1993; 28: 803–809
  • Wharton D. C., Tzagoloff A. Cytochrome oxidase from beef heart mitochondria. Methods in Enzymology 1967; 10: 245–250
  • Takahashi T., Shitashige K., Okamoto T., Kishi T., Goshima K. A novel ubiquinone reductase activity in rat cytosol. FEBS Letters 1992; 314: 331–334
  • Bergmeyer H. U., Bernt E. Methods of Enzymatic Analysis, H. U. Bergmeyer. Academic Press, New York 1974; Vol. 2: 574–579
  • Karmen A., Wroblewski F., La Due J. S. Transaminase activity in human blood. Journal of Clinical investigation 1955; 34: 126–133
  • Rieske J. S. The quantitative determination of mitochondrial hemoproteins. Methods in Enzymology 1967; 10: 488–493
  • Lowry O. H., Rosebrough N. J., Farr A. L., Randall J. Protein measurement with the folin phenol reagent. Journal of Biological Chemistry 1951; 19: 265–275
  • Recknagel R. O., Goshal A. K. Quantitative estimation of peroxidative degeneration of rat liver microsomal and mitochondrial lipids after carbon tetrachloride poisoning. Experimental and Molecular Pathology 1966; 5: 413–426
  • Nakata R., Tsukamoto I., Miyoshi M., Kojo S. Liver regeneration after carbon tetrachloride intoxication in the rat. Biochemical Pharmacology 1985; 34: 586–588
  • Recknagel R. O., Ghoshal A. K. Lipoperoxidation as a vector in carbon tetrachloride hepatotoxicity. Laboratoy Investigations 1966; 15: 132–146
  • Terao J., Asano I., Matsushita S. High-performance liquid chromatographic determination of phospholipid peroxidation products of rat liver after carbon tetrachloride administration. Archives of Biochemistry and Biophysics 1984; 235: 326–333
  • Miyazawa T., Suzuki T., Fujimoto K., Kaneda T. Phospholipid hydroperoxide accumulation in liver of rats intoxicated with carbon tetrachloride and its inhibition by dietary α-tocopherol. Journal of Biochemisty (Tokyo) 1990; 107: 689–693
  • Reynolds E. S., Thiers R. E., Vallee B. L. Mitochondrial function and metal content in carbon tetrachloride poisoning. Journal of Biological Chemistry 1962; 237: 3546–3551
  • Reynolds E. S. Liver parenchymal cell injury II. cytochemical events concerned with mitochondrial dysfunction following poisoning with carbon tetrachloride. Laboratory Investigations 1964; 13: 1457–1470
  • Albano E., Bellomo G., Carini R., Biasi F., Poli G., Dianzani M. U. Mechanism responsible for carbon tetrachloride-induced perturbation of mitochondrial calcium homeostasis. FEBS Letters 1995; 192: 184–188
  • Richter C., Schweizer M., Cossarizza A., Franceschi C. Control of apoptosis by the cellular ATP level. FEBS Letters 1996; 378: 107–110
  • Eguchi Y., Shimizu S., Tsujimoto Y. Intracellular, ATP levels determine cell death fate by apoptosis or necrosis. Cancer Research 1997; 57: 1835–1845
  • De Groot H., Haas W. Self-catalyzed, O2-independent inactivation of NADPH- or dithionite-reduced microsomal cytochrome P450 by carbon tetrachloride. Biochemical Pharmacology 1981; 16: 2343–2347
  • Davies H. W., Britt S. G., Pohl L. R. Carbon tetrachloride and 2-isopropyl-4-pentamide-induced inactivation of cytochrome P-450 leads to heme-derived protein adducts. Archives of Biochemisty and Biophysics 1986; 244: 387–392
  • Manno M., De Matteis F., King L. J. The mechanism of the suicidal, reductive inactivation of microsomal cytochrome P-450 by carbon tetrachloride. Biochemical Pharmacology 1988; 37: 1981–1990
  • Hidalgo F. J., Zamora R., Tappel A. L. Oxidant-induced haemoprotein degradation in rat tissue slices: effect of bromotrichloromethane, antioxidants and chelators. Biochimica et Biophysica Acta 1199; 1037: 313–320
  • Klingenberg M. Methods of Enzymatic Analysis, H. U. Bergmeyer, J. Bergmeyer, M. Grassl. VCH Verlagsgesellschaft, WeinheimGermany 1985; Vol. VII: 251–271
  • Tomasi A., Albano E., Banni S., Botti B., Corongiu F., Dessi M. A., Iannone A., Vannini V., Dianzani M. U. Free-radical metabolism of carbon tetrachloride in rat liver mitochondria. A study of the mechanism of activation. Biochemical Journal 1987; 246: 313–317
  • Tanaka A., Morimoto T., Wakashiro S., Ikai I., Ozawa K., Orii Y. Kinetic alterations of cytochrome c oxidase in carbon tetrachloride-induced cirrhotic rat liver. Life Sciences 1987; 41: 741–748
  • Morimoto T., Tanaka A., Taki Y., Noguchi M., Yokoo N., Nishihara T., Nishikawa K., Yamamoto S., Nitta N., Jikkoh A., Kamiyama Y., Yamaoka Y., Ozawa K. Changes in concentrations of respiratory components and cytochrome oxidase activity in mitochondria obtained from carbon tetrachloride-induced cirrhotic rat liver. Clinical Science 1988; 74: 485–489
  • Ragan C. I., Wilson M. T., Darley-Usmar V. M., Lowe P. N. Sub-fractionation of mitochondria and isolation of the proteins of oxidative phosphorylation. Mitochondria. A Practical Approach, V. M. Darley-Usmar, D. Rickwood, M. T. Wilson. IRL Press, Oxford 1987; 79–112

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