PBTK modeling demonstrates contribution of dermal and inhalation exposure components to end-exhaled breath concentrations of naphthalene

被引:16
作者
Kim, David
Andersen, Melvin E.
Chao, Yi-Chun E.
Egehy, Peter P.
Rappaport, Stephen M.
Nylander-French, Leena A.
机构
[1] Univ N Carolina, Sch Publ Hlth, Dept Environm Sci & Engn, Chapel Hill, NC 27599 USA
[2] US EPA, Human Exposure & Atmospher Sci Div, Natl Exposure Res Lab, Res Triangle Pk, NC 27711 USA
[3] CIIT Ctr Hlth Res, Res Triangle Pk, NC USA
关键词
dermal; exposure assessment; inhalation; jet fuel; naphthalene; physiologically based toxicokinetic model;
D O I
10.1289/ehp.9778
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
BACKGROUND: Dermal and inhalation exposure to jet propulsion fuel 8 UP-8) have been measured in a few occupational exposure studies. However, a quantitative understanding of the relationship between external exposures and end-exhaled air concentrations has not been described for occupational and environmental exposure scenarios. OBJECTIVE: Our goal was to construct a physiologically based toxicokinetic (PBTK) model that quantitatively describes the relative contribution of dermal and inhalation exposures to the endexhaled air concentrations of naphthalene among U.S. Air Force personnel. METHODS: The PBTK model comprised five compartments representing the stratum corneum, viable epidermis, blood, fat, and other tissues. The parameters were optimized using exclusively human exposure and biological monitoring data. RESULTS: The optimized values of parameters for naphthalene were a) permeability coefficient for the stratum corneum 6.8 X 10-5 cm/hr, b) permeability coefficient for the viable epidermis 3.0 X 10-3 cm/hr, c) fat:blood partition coefficient 25.6, and 4 other tissue:blood partition coefficient 5.2. The skin permeability coefficient was comparable to the values estimated from in vitro studies. Based on simulations of workers' exposures to JP-8 during aircraft fuel-cell maintenance operations, the median relative contribution of dermal exposure to the end-exhaled breath concentration of naphthalene was 4% (10th percentile 1% and 90th percentile 11%). CONCLUSIONS: PBTK modeling allowed contributions of the end-exhaled air concentration of naphthalene to be partitioned between dermal and inhalation routes of exposure. Further study of inter- and intraindividual variations in exposure assessment is required to better characterize the toxicokinetic behavior ofJP-8 components after occupational and/or environmental exposures.
引用
收藏
页码:894 / 901
页数:8
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