Changes in markers of oxidative status in brain, liver and kidney of young and aged rats following exposure to aromatic white spirit
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G. Østergaard | S. X. Guo | S. Bondy | H. Lam | Ø. Ladefoged
[1] K. Ameno,et al. Regional brain distribution of toluene in rats and in a human autopsy , 2006, Archives of Toxicology.
[2] O. Ladefoged,et al. Three weeks' exposure of rats to dearomatized white spirit modifies indices of oxidative stress in brain, kidney, and liver. , 1994, Biochemical pharmacology.
[3] R. S. Sohal,et al. Relationship between mitochondrial superoxide and hydrogen peroxide production and longevity of mammalian species. , 1993, Free radical biology & medicine.
[4] J. Adams,et al. New aspects of brain oxidative stress induced by tert-butylhydroperoxide. , 1993, Free radical biology & medicine.
[5] J. Adams,et al. Free radical induction in the brain and liver by products of toluene catabolism. , 1993, Biochemical pharmacology.
[6] H. Jeppesen,et al. Solvent-induced chronic toxic encephalopathy. , 1993, American journal of industrial medicine.
[7] S. Ali,et al. Toluene-induced oxidative stress in several brain regions and other organs. , 1993, Molecular and chemical neuropathology.
[8] O. Ladefoged,et al. Effects of six months' white spirit inhalation exposure in adult and old rats. , 1993, Acta Pharmacologica et Toxicologica.
[9] E. Stadtman. Protein oxidation and aging , 2006, Science.
[10] K. Schaller,et al. Neurotoxicity of solvent mixtures in spray painters , 1992, International archives of occupational and environmental health.
[11] T. Rechlin,et al. Neurotoxicity of solvent mixtures in spray painters , 1992, International archives of occupational and environmental health.
[12] O. Ladefoged,et al. Brain concentrations of white spirit components and neurotransmitters following a three week inhalation exposure of rats. , 1992, Pharmacology & toxicology.
[13] V. Ravindranath,et al. Selective modulation of glutathione in mouse brain regions and its effect on acrylamide-induced neurotoxicity. , 1992, Biochemical pharmacology.
[14] P. McCay,et al. Hydroxyl radicals are generated by hepatic microsomes during NADPH oxidation: relationship to ethanol metabolism. , 1992, Free radical research communications.
[15] O. Ladefoged,et al. Report on a conference on organic solvents and the nervous system. , 1992, Neurotoxicology and teratology.
[16] S. Bondy,et al. Effects of toluene and its metabolites on cerebral reactive oxygen species generation. , 1991, Biochemical pharmacology.
[17] O. Ladefoged,et al. Irreversible effects in rats of toluene (inhalation) exposure for six months. , 1991, Pharmacology & toxicology.
[18] R. Floyd,et al. Reversal of age-related increase in brain protein oxidation, decrease in enzyme activity, and loss in temporal and spatial memory by chronic administration of the spin-trapping compound N-tert-butyl-alpha-phenylnitrone. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[19] D. Eaton,et al. Effect of styrene oxide on rat brain glutathione. , 1991, Neurotoxicology.
[20] G. Pryor. A toluene-induced motor syndrome in rats resembling that seen in some human solvent abusers. , 1991, Neurotoxicology and teratology.
[21] O. Ladefoged,et al. Effect of toluene on ethanol preference in rats. , 1990, Pharmacology & toxicology.
[22] J. Rungby,et al. The effect of low-level toluene exposure on the developing hippocampal region of the rat: histological evidence and volumetric findings. , 1990, Toxicology.
[23] S. Khan,et al. Generation of hydroxyl radicals during benzene toxicity. , 1990, Biochemical pharmacology.
[24] A. Cederbaum,et al. Generation of reactive oxygen species and reduction of ferric chelates by microsomes in the presence of a reconstituted system containing ethanol, NAD+ and alcohol dehydrogenase. , 1990, Alcoholism, clinical and experimental research.
[25] R. Schatz,et al. Toluene-induced alterations in rat synaptosomal membrane composition and function. , 1988, Journal of biochemical toxicology.
[26] D. Shrieve,et al. Heterogeneity of cellular glutathione among cells derived from a murine fibrosarcoma or a human renal cell carcinoma detected by flow cytometric analysis. , 1988, The Journal of biological chemistry.
[27] D. Shrieve,et al. Quantitative analysis of cellular glutathione by flow cytometry utilizing monochlorobimane: some applications to radiation and drug resistance in vitro and in vivo. , 1986, Cancer research.
[28] S. Mikkelsen,et al. A cohort study of disability pension and death among painters with special regard to disabling presenile dementia as an occupational disease. , 1980, Scandinavian journal of social medicine. Supplementum.
[29] R. Verschoyle,et al. The behavioral and neuropathologic sequelae of intoxication by trimethyltin compounds in the rat. , 1979, The American journal of pathology.
[30] M. M. Bradford. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. , 1976, Analytical biochemistry.
[31] A. Meister,et al. [129] Glutamine synthetase (sheep brain)☆ , 1970 .
[32] L. Iversen,et al. REGIONAL STUDIES OF CATECHOLAMINES IN THE RAT BRAIN‐I , 1966, Journal of neurochemistry.