Literature DB >> 8260069

Developmental and reproductive toxicity of dioxins and related compounds: cross-species comparisons.

R E Peterson1, H M Theobald, G L Kimmel.   

Abstract

Developmental toxicity to TCDD-like congeners in fish, birds, and mammals, and reproductive toxicity in mammals are reviewed. In fish and bird species, the developmental lesions observed are species dependent, but any given species responds similarly to different TCDD-like congeners. Developmental toxicity in fish resembles "blue sac disease," whereas structural malformations can occur in at least one bird species. In mammals, developmental toxicity includes decreased growth, structural malformations, functional alterations, and prenatal mortality. At relatively low exposure levels, structural malformations are not common in mammalian species. In contrast, functional alterations are the most sensitive signs of developmental toxicity. These include effects on the male reproductive system and male reproductive behavior in rats, and neurobehavioral effects in monkeys. Human infants exposed during the Yusho and Yu-Cheng episodes, and monkeys and mice exposed perinatally to TCDD developed an ectodermal dysplasia syndrome that includes toxicity to the skin and teeth. Toxicity to the central nervous system in monkey and human infants is a potential part of the ectodermal dysplasia syndrome. Decreases in spermatogenesis and the ability to conceive and carry a pregnancy to term are the most sensitive signs of reproductive toxicity in male and female mammals, respectively.

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Year:  1993        PMID: 8260069     DOI: 10.3109/10408449309105013

Source DB:  PubMed          Journal:  Crit Rev Toxicol        ISSN: 1040-8444            Impact factor:   5.635


  101 in total

1.  Sensitivity to dioxin decreases as zebrafish mature.

Authors:  Kevin A Lanham; Richard E Peterson; Warren Heideman
Journal:  Toxicol Sci       Date:  2012-03-08       Impact factor: 4.849

2.  Comparative analysis of dioxin response elements in human, mouse and rat genomic sequences.

Authors:  Y V Sun; D R Boverhof; L D Burgoon; M R Fielden; T R Zacharewski
Journal:  Nucleic Acids Res       Date:  2004-08-24       Impact factor: 16.971

Review 3.  Reproductive and developmental toxicity of dioxin in fish.

Authors:  Tisha C King-Heiden; Vatsal Mehta; Kong M Xiong; Kevin A Lanham; Dagmara S Antkiewicz; Alissa Ganser; Warren Heideman; Richard E Peterson
Journal:  Mol Cell Endocrinol       Date:  2011-09-21       Impact factor: 4.102

4.  Roles of aryl hydrocarbon receptor in endothelial angiogenic responses†.

Authors:  Yan Li; Chi Zhou; Wei Lei; Kai Wang; Jing Zheng
Journal:  Biol Reprod       Date:  2020-10-29       Impact factor: 4.285

5.  2,3,7,8-Tetrachlorodibenzo-p-dioxin differentially suppresses angiogenic responses in human placental vein and artery endothelial cells.

Authors:  Yan Li; Kai Wang; Qing-Yun Zou; Ronald R Magness; Jing Zheng
Journal:  Toxicology       Date:  2015-08-11       Impact factor: 4.221

6.  TCDD increases inhibin A production by human luteinized granulosa cells in vitro.

Authors:  H M Ho; Ken-Ichi Ohshima; Gen Watanabe; Kazuyoshi Taya; E Y Strawn; Reinhold J Hutz
Journal:  J Reprod Dev       Date:  2006-04-21       Impact factor: 2.214

7.  Development of a high-throughput in vivo screening platform for particulate matter exposures.

Authors:  Courtney Roper; Staci L Massey Simonich; Robert L Tanguay
Journal:  Environ Pollut       Date:  2018-02-21       Impact factor: 8.071

8.  Dioxin inhibition of swim bladder development in zebrafish: is it secondary to heart failure?

Authors:  Monica S Yue; Richard E Peterson; Warren Heideman
Journal:  Aquat Toxicol       Date:  2015-03-02       Impact factor: 4.964

9.  Influence of food supply and chlorinated hydrocarbon contaminants on breeding success of bald eagles.

Authors:  Christopher E Gill; John E Elliott
Journal:  Ecotoxicology       Date:  2003 Feb-Aug       Impact factor: 2.823

10.  An aryl hydrocarbon receptor repressor from Xenopus laevis: function, expression, and role in dioxin responsiveness during frog development.

Authors:  Anna L Zimmermann; Elizabeth A King; Emelyne Dengler; Shana R Scogin; Wade H Powell
Journal:  Toxicol Sci       Date:  2008-04-02       Impact factor: 4.849

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