A Comprehensive Structural Analysis of Hemoglobin Adducts Formed after in Vitro Exposure of Erythrocytes to Butadiene Monoxide
Author:
Affiliation:
1. Department of Comparative Biosciences and Center for Environmental Toxicology and Mass Spectrometry Facility, University of Wisconsin Biotechnology Center, University of Wisconsin, Madison, Wisconsin 53706-1102
Publisher
American Chemical Society (ACS)
Subject
Toxicology,General Medicine
Link
https://pubs.acs.org/doi/pdf/10.1021/tx000151f
Reference31 articles.
1. Biochemistry of 1,3-butadiene metabolism and its relevance to 1,3-butadiene-induced carcinogenicity
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1. Metabolism of Bis(4-fluorobenzyl)trisulfide and Its Formation of Hemoglobin Adduct in Rat Erythrocytes;Drug Metabolism and Disposition;2013-02-25
2. Alcohol Dehydrogenase- and Rat Liver Cytosol-Dependent Bioactivation of 1-Chloro-2-hydroxy-3-butene to 1-Chloro-3-buten-2-one, a Bifunctional Alkylating Agent;Chemical Research in Toxicology;2012-11-07
3. Globin Monoadducts and Cross-Links Provide Evidence for the Presence of S-(1,2-Dichlorovinyl)-l-cysteine Sulfoxide, Chlorothioketene, and 2-Chlorothionoacetyl Chloride in the Circulation in Rats Administered S-(1,2-Dichlorovinyl)-l-cysteine;Chemical Research in Toxicology;2009-08-20
4. Cysteine Conjugate β-Lyase Activity of Rat Erythrocytes and Formation of β-Lyase-Derived Globin Monoadducts and Cross-Links after in Vitro Exposure of Erythrocytes to S-(1,2-Dichlorovinyl)-l-cysteine;Chemical Research in Toxicology;2009-07-02
5. Mass Spectral Analyses of Hydroxymethylvinyl Ketone-Hemoglobin Adducts Formed after in Vivo Exposure of Sprague−Dawley Rats to 3-Butene-1,2-diol;Chemical Research in Toxicology;2009-05-07
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