Literature DB >> 6138222

Distribution, excretion, and metabolism of 2,3,7,8-tetrachlorodibenzo-p-dioxin in C57BL/6J, DBA/2J, and B6D2F1/J mice.

T A Gasiewicz, L E Geiger, G Rucci, R A Neal.   

Abstract

The strains of mice, C57BL/6J, DBA/2J, and B6D2F1/J, have been used as models to study the mechanism of action of 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD). The distribution, excretion, and metabolism of this compound was studied in male C57BL/6J, DBA/2J, and B6D2F1/J mice following the intraperitoneal administration of radiolabeled TCDD at a dose of 10 micrograms/kg. In all strains, the liver and adipose tissue were the major sites for the accumulation of 3H-TCDD, with more 3H-TCDD being distributed to the livers of the C57BL/6J and B6D2F1/J strains as compared to the DBA/2J strain. While in all strains the feces were the major route of elimination, the total amount of 3H-TCDD-derived radioactivity excreted in the feces amounted to approximately 72% of the original dose in the C57BL/6J and B6D2F1/J strains whereas this was only 54% in the DBA/2J strain. The half-lives for the cumulative excretion of radioactivity in the feces were similar in all strains. The half-life for the excretion of radioactivity in the urine was considerably greater in the DBA/2J strain as compared to the C57BL/6J and B6D2F1/J strains. The estimated half-lives for the total cumulative excretion of 3H-TCDD-derived radioactivity by all routes was 11.0, 24.4, and 12.6 days for the C57BL/6J, DBA/2J, and B6D2F1/J strains, respectively. Greater than 85% of the total radioactivity excreted in urine, bile, and feces from all three mouse strains was present as metabolites of TCDD.

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Year:  1983        PMID: 6138222

Source DB:  PubMed          Journal:  Drug Metab Dispos        ISSN: 0090-9556            Impact factor:   3.922


  41 in total

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3.  Comparisons of differential gene expression elicited by TCDD, PCB126, βNF, or ICZ in mouse hepatoma Hepa1c1c7 cells and C57BL/6 mouse liver.

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4.  Activation of aryl hydrocarbon receptor by TCDD prevents diabetes in NOD mice and increases Foxp3+ T cells in pancreatic lymph nodes.

Authors:  Nancy I Kerkvliet; Linda B Steppan; William Vorachek; Shannon Oda; David Farrer; Carmen P Wong; Duy Pham; Dan V Mourich
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5.  Targeted deletion of the aryl hydrocarbon receptor in dendritic cells prevents thymic atrophy in response to dioxin.

Authors:  Celine A Beamer; Joanna M Kreitinger; Shelby L Cole; David M Shepherd
Journal:  Arch Toxicol       Date:  2018-11-29       Impact factor: 5.153

6.  Activation of the aryl hydrocarbon receptor by TCDD inhibits mammary tumor metastasis in a syngeneic mouse model of breast cancer.

Authors:  Tao Wang; Katie L Wyrick; Gary G Meadows; Tamara B Wills; Beth A Vorderstrasse
Journal:  Toxicol Sci       Date:  2011-09-26       Impact factor: 4.849

7.  Developmental exposure to 2,3,7,8 tetrachlorodibenzo-p-dioxin attenuates later-life Notch1-mediated T cell development and leukemogenesis.

Authors:  Lori S Ahrenhoerster; Tess C Leuthner; Everett R Tate; Peter A Lakatos; Michael D Laiosa
Journal:  Toxicol Appl Pharmacol       Date:  2015-01-10       Impact factor: 4.219

8.  2,3,7,8-Tetrachlorodibenzo-p-dioxin (TCDD) and 2,3,7,8-tetrachlorodibenzofuran (TCDF) in pregnant C57BL/6N mice: distribution to the embryo and excretion.

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Journal:  Arch Toxicol       Date:  1985-08       Impact factor: 5.153

9.  Physiological and genetic analyses of inbred mouse strains with a type I iodothyronine 5' deiodinase deficiency.

Authors:  M J Berry; D Grieco; B A Taylor; A L Maia; J D Kieffer; W Beamer; E Glover; A Poland; P R Larsen
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10.  Treatment of mice with the Ah receptor agonist and human carcinogen dioxin results in altered numbers and function of hematopoietic stem cells.

Authors:  Kameshwar P Singh; Amber Wyman; Fanny L Casado; Russell W Garrett; Thomas A Gasiewicz
Journal:  Carcinogenesis       Date:  2008-09-26       Impact factor: 4.944

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