Adducts to N-terminal valines in hemoglobin from butadiene metabolites.
暂无分享,去创建一个
[1] B. Weiss,et al. The intersection of risk assessment and neurobehavioral toxicity. , 1996, Environmental health perspectives.
[2] D. Segerbäck,et al. Oxazolidonylethyl adducts to hemoglobin and DNA following nornitrogen mustard exposure. , 1996, Chemico-biological interactions.
[3] R. Henderson,et al. Disposition of butadiene monoepoxide and butadiene diepoxide in various tissues of rats and mice following a low-level inhalation exposure to 1,3-butadiene. , 1995, Carcinogenesis.
[4] F. Guengerich,et al. Enhancement of bacterial mutagenicity of bifunctional alkylating agents by expression of mammalian glutathione S-transferase. , 1995, Chemical research in toxicology.
[5] J. A. Bond,et al. Epidemiological and mechanistic data suggest that 1,3-butadiene will not be carcinogenic to humans at exposures likely to be encountered in the environment or workplace. , 1995, Carcinogenesis.
[6] L. Ehrenberg,et al. On Cancer Risk Estimation of Urban Air Pollution , 1994 .
[7] J. A. Bond,et al. Comparison of blood concentrations of 1,3-butadiene and butadiene epoxides in mice and rats exposed to 1,3-butadiene by inhalation. , 1994, Carcinogenesis.
[8] T. Skopek,et al. Mutagenicity of butadiene and its epoxide metabolites: I. Mutagenic potential of 1,2-epoxybutene, 1,2,3,4-diepoxybutane and 3,4-epoxy-1,2-butanediol in cultured human lymphoblasts. , 1994, Carcinogenesis.
[9] J. A. Bond,et al. Comparison of the biotransformation of 1,3-butadiene and its metabolite, butadiene monoepoxide, by hepatic and pulmonary tissues from humans, rats and mice. , 1992, Carcinogenesis.
[10] J. Huff,et al. Carcinogenicity of 1,3-butadiene in C57BL/6 x C3H F1 mice at low exposure concentrations. , 1990, Cancer research.
[11] B. J. Divine. An update on mortality among workers at a 1,3-butadiene facility--preliminary results. , 1990, Environmental health perspectives.
[12] G. Matanoski,et al. Mortality of a cohort of workers in the styrene-butadiene polymer manufacturing industry (1943-1982). , 1990, Environmental health perspectives.
[13] K. Svensson,et al. Adducts of malonaldehyde and a few other aldehydes to hemoglobin. , 1989, Carcinogenesis.
[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] L. Ehrenberg,et al. Monitoring of environmental cancer initiators through hemoglobin adducts by a modified Edman degradation method. , 1986, Analytical biochemistry.
[16] M. Abdel-monem,et al. Glutathione S-transferases catalyzed conjugation of 1,4-disubstituted butanes with glutathione in vitro. , 1985, Biochemical and biophysical research communications.
[17] Kenji Inoue,et al. THE NUCLEOPHILIC REACTIVITY OF VALINE METHYLAMIDE. A MODEL OF THE N-TERMINAL VALINE RESIDUES OF HEMOGLOBIN , 1984 .
[18] W. A. Dietz,et al. Response Factors for Gas Chromatographic Analyses , 1967 .
[19] M. Törnqvist. Epoxide adducts to N-terminal valine of hemoglobin. , 1994, Methods in enzymology.
[20] M. Törnqvist. Monitoring and cancer risk assessment of carcinogens, particularly alkenes in urban air , 1989 .
[21] L. Ehrenberg,et al. Genetic toxicity of some important epoxides. , 1981, Mutation research.
[22] A. J. Kirby,et al. Effective Molarities for Intramolecular Reactions , 1980 .
[23] F. H. Pollard,et al. Chromatographic studies on the oxidation of sulphurous acid by ferric iron in aqueous acid solution , 1961 .