Mammalian toxicology and human exposures to the flame retardant 2,2′,6,6′-tetrabromo-4,4′-isopropylidenediphenol (TBBPA): implications for risk assessment

Author:

Colnot Thomas,Kacew Sam,Dekant Wolfgang

Publisher

Springer Science and Business Media LLC

Subject

Health, Toxicology and Mutagenesis,Toxicology,General Medicine

Reference98 articles.

1. Abdallah MA, Harrad S (2011) Tetrabromobisphenol-A, hexabromocyclododecane and its degradation products in UK human milk: relationship to external exposure. Environ Int 37:443–448. doi: 10.1016/j.envint.2010.11.008

2. Al-Mousa F, Michelangeli F (2012) Some commonly used brominated flame retardants cause Ca2+ -ATPase inhibition, beta-amyloid peptide release and apoptosis in SH-SY5Y neuronal cells. PLoS ONE 7:33059

3. Alberta (2008) Chemicals in serum of pregnant women in Alberta. Alberta Health and Wellness, Alberta Biomonitoring Program, Edmonton Surveillance and Environmental Health, Public Health Division ISBN: 978-0-7785-6695-3, pp 148. http://www.health.alberta.ca/documents/Chemical-Biomonitoring-2008.pdf

4. Arcadis (2011) Evaluation of data on flame retardants in consumer products—final report prepared for European Commission—DG Health and Consumers, Brussel by ARCADIS, Berchem, Belgium Contract number 17020200/09/549040

5. Banasik M, Hardy M, Harbison RD, Hsu CH, Stedeford T (2009) Tetrabromobisphenol A and model-derived risks for reproductive toxicity. Toxicology 260:150–152 (author reply 153–154)

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