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A E Aust

Showing results (21-30 of 34) with videos related to

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Chemical Research in Toxicology|December 22, 1998
Mobilization of iron from coal fly ash was dependent upon the particle size and the source of coalK R Smith, J M Veranth, J S Lighty, et al.
Journal of the Air & Waste Management Association (1995)|December 9, 2000
The formation of reactive oxygen species catalyzed by neutral, aqueous extracts of NIST ambient particulate matter and diesel engine particlesJ C Ball, A M Straccia, W C Young, et al.
Archives of Biochemistry and Biophysics|November 1, 1994
Iron mobilization from crocidolite asbestos by human lung carcinoma cellsC C Chao, L G Lund, K R Zinn, et al.
Occupational and Environmental Medicine|March 1, 1994
Iron associated with asbestos bodies is responsible for the formation of single strand breaks in phi X174 RFI DNAL G Lund, M G Williams, R F Dodson, et al.
Inhalation Toxicology|July 29, 2003
Bioavailability of iron from coal fly ash: mechanisms of mobilization and of biological effectsB R Ball, K R Smith, J M Veranth, et al.
Cancer Research|November 1, 1980
Human cell-mediated benzo(a)pyrene cytotoxicity and mutagenicity in human diploid fibroblastsA E Aust, K J Falahee, V M Maher, et al.
Journal of Supramolecular Structure and Cellular Biochemistry|January 1, 1981
Identifying human cells capable of metabolizing various classes of carcinogensA E Aust, M R Antczak, V M Maher, et al.
Mutation Research|January 1, 1984
Comparison of the frequency of diphtheria toxin and thioguanine resistance induced by a series of carcinogens to analyze their mutational specificities in diploid human fibroblastsA E Aust, N R Drinkwater, K Debien, et al.
Chemical Research in Toxicology|May 17, 2000
Mobilization of iron from coal fly ash was dependent upon the particle size and source of coal: analysis of rates and mechanismsJ M Veranth, K R Smith, A A Hu, et al.
Chemical Research in Toxicology|February 25, 2000
Interleukin-8 levels in human lung epithelial cells are increased in response to coal fly ash and vary with the bioavailability of iron, as a function of particle size and source of coalK R Smith, J M Veranth, A A Hu, et al.
Pageof 4

Showing results (21-30 of 34) with videos related to

Sort By:
Pageof 4
Chemical Research in Toxicology|December 22, 1998
Mobilization of iron from coal fly ash was dependent upon the particle size and the source of coalK R Smith, J M Veranth, J S Lighty, et al.
Journal of the Air & Waste Management Association (1995)|December 9, 2000
The formation of reactive oxygen species catalyzed by neutral, aqueous extracts of NIST ambient particulate matter and diesel engine particlesJ C Ball, A M Straccia, W C Young, et al.
Archives of Biochemistry and Biophysics|November 1, 1994
Iron mobilization from crocidolite asbestos by human lung carcinoma cellsC C Chao, L G Lund, K R Zinn, et al.
Occupational and Environmental Medicine|March 1, 1994
Iron associated with asbestos bodies is responsible for the formation of single strand breaks in phi X174 RFI DNAL G Lund, M G Williams, R F Dodson, et al.
Inhalation Toxicology|July 29, 2003
Bioavailability of iron from coal fly ash: mechanisms of mobilization and of biological effectsB R Ball, K R Smith, J M Veranth, et al.
Cancer Research|November 1, 1980
Human cell-mediated benzo(a)pyrene cytotoxicity and mutagenicity in human diploid fibroblastsA E Aust, K J Falahee, V M Maher, et al.
Journal of Supramolecular Structure and Cellular Biochemistry|January 1, 1981
Identifying human cells capable of metabolizing various classes of carcinogensA E Aust, M R Antczak, V M Maher, et al.
Mutation Research|January 1, 1984
Comparison of the frequency of diphtheria toxin and thioguanine resistance induced by a series of carcinogens to analyze their mutational specificities in diploid human fibroblastsA E Aust, N R Drinkwater, K Debien, et al.
Chemical Research in Toxicology|May 17, 2000
Mobilization of iron from coal fly ash was dependent upon the particle size and source of coal: analysis of rates and mechanismsJ M Veranth, K R Smith, A A Hu, et al.
Chemical Research in Toxicology|February 25, 2000
Interleukin-8 levels in human lung epithelial cells are increased in response to coal fly ash and vary with the bioavailability of iron, as a function of particle size and source of coalK R Smith, J M Veranth, A A Hu, et al.
Pageof 4