Effect of n-hexane on the disposition and toxicity of the 1,3-butadiene metabolite 3-butene-1,2-diol.
暂无分享,去创建一个
[1] A. Elfarra,et al. Mass spectral analyses of hemoglobin adducts formed after in vitro exposure of erythrocytes to hydroxymethylvinyl ketone. , 2007, Chemico-biological interactions.
[2] R. Henderson,et al. Age-, gender-, and species-dependent mutagenicity in T cells of mice and rats exposed by inhalation to 1,3-butadiene. , 2007, Chemico-biological interactions.
[3] Y. Li,et al. Quantification of DNA and hemoglobin adducts of 3,4-epoxy-1,2-butanediol in rodents exposed to 3-butene-1,2-diol. , 2005, Carcinogenesis.
[4] J. Swenberg,et al. Analysis of Diepoxide-Specific Cyclic N-Terminal Globin Adducts in Mice and Rats after Inhalation Exposure to 1,3-Butadiene , 2004, Cancer Research.
[5] A. Elfarra,et al. Species and tissue differences in the toxicity of 3-butene-1,2-diol in male Sprague-Dawley rats and B6C3F1 mice. , 2004, Toxicological sciences : an official journal of the Society of Toxicology.
[6] A. Elfarra,et al. Mercapturic acid urinary metabolites of 3-butene-1,2-diol as in vivo evidence for the formation of hydroxymethylvinyl ketone in mice and rats. , 2004, Chemical research in toxicology.
[7] R. Henderson,et al. Analysis of butadiene urinary metabolites by liquid chromatography-triple quadrupole mass spectrometry. , 2004, Journal of analytical toxicology.
[8] R. Verbeeck,et al. Age-related changes in the protein and mRNA levels of CYP2E1 and CYP3A isoforms as well as in their hepatic activities in Wistar rats. What role for oxidative stress? , 2004, Archives of Toxicology.
[9] F. Gonzalez,et al. Functional Cyp2e1 is required for substantial in vivo formation of 2,5-hexanedione from n-hexane in the mouse , 2000, Archives of Toxicology.
[10] A. Elfarra,et al. Metabolism of 3-butene-1,2-diol in B6C3F1 mice. Evidence for involvement of alcohol dehydrogenase and cytochrome p450. , 1998, Drug metabolism and disposition: the biological fate of chemicals.
[11] H. Scholl,et al. Pharmacokinetics of and CYP1A induction by pyridine and acetone in the rat: interactions and effects of route of exposure. , 1997, Xenobiotica; the fate of foreign compounds in biological systems.
[12] P. Cole,et al. A follow-up study of synthetic rubber workers. , 1996, Toxicology.
[13] J. Huff,et al. Carcinogenicity of 1,3-butadiene in C57BL/6 x C3H F1 mice at low exposure concentrations. , 1990, Cancer research.
[14] I. Gaunt,et al. Inhalation toxicity studies with 1,3-butadiene. 3. Two year toxicity/carcinogenicity study in rats. , 1987, American Industrial Hygiene Association journal.
[15] T. Sofuni,et al. An application of Acridine Orange fluorescent staining to the micronucleus test. , 1983, Mutation research.
[16] G. Divincenzo,et al. The relative neurotoxicity of methyl-n-butyl ketone, n-hexane and their metabolites. , 1980, Toxicology and applied pharmacology.
[17] P. Spencer,et al. On the specific molecular configuration of neurotoxic aliphatic hexacarbon compounds causing central--peripheral distal axonopathy. , 1978, Toxicology and applied pharmacology.
[18] G. Divincenzo,et al. Metabolic fate and disposition of 14C-labeled methyl n-butyl ketone in the rat. , 1977, Toxicology and applied pharmacology.
[19] S. Silver. Constant flow gassing chambers; principles influencing design and operation. , 1946, The Journal of laboratory and clinical medicine.