Relationships between polybrominated diphenyl ether concentrations in house dust and serum.

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2010-07-15

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Abstract

Polybrominated diphenyl ethers (PBDEs) have been measured in the home environment and in humans, but studies linking environmental levels to body burdens are limited. This study examines the relationship between PBDE concentrations in house dust and serum from adults residing in these homes. We measured PBDE concentrations in house dust from 50 homes and in serum of male-female couples from 12 of the homes. Detection rates, dust-serum, and within-matrix correlations varied by PBDE congener. There was a strong correlation (r = 0.65-0.89, p < 0.05) between dust and serum concentrations of several predominant PBDE congeners (BDE 47, 99, and 100). Dust and serum levels of BDE 153 were not correlated (r < 0.01). The correlation of dust and serum levels of BDE 209 could not be evaluated due to low detection rates of BDE 209 in serum. Serum concentrations of the sum of BDE 47, 99, and 100 were also strongly correlated within couples (r = 0.85, p = 0.0005). This study provides evidence that house dust is a primary exposure pathway of PBDEs and supports the use of dust PBDE concentrations as a marker for exposure to PBDE congeners other than BDE 153.

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10.1021/es100697q

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Johnson, Paula I, Heather M Stapleton, Andreas Sjodin and John D Meeker (2010). Relationships between polybrominated diphenyl ether concentrations in house dust and serum. Environ Sci Technol, 44(14). pp. 5627–5632. 10.1021/es100697q Retrieved from https://hdl.handle.net/10161/4025.

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Stapleton

Heather M. Stapleton

Ronie-Richele Garcia-Johnson Distinguished Professor

Professor Heather Stapleton is an environmental chemist and exposure scientist in the Nicholas School of the Environment at Duke University.  Her research interests focus on identification of halogenated and organophosphate chemicals in building materials, furnishings and consumer products, and estimation of human exposure, particularly in vulnerable populations such as pregnant women and children.  Her laboratory utilizes mass spectrometry, including targeted and nontargeted approaches, to characterize chemical burdens in both environmental samples and biological tissues to support environmental health research. Currently she serves as the Director for the Duke Superfund Research Center, and Director of the Duke Environmental Analysis Laboratory, which is part of NIH’s Human Health Environmental Analysis Resource.

 


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