This research is directed towards developing predictive models of the fate and accumulation of metals in benthic aquatic animals (e.g., crab, lobster, and benthic fishes) that are consumed by humans and may therefore represent an increased risk to public health. Metals released from Superfund sites may be stored in the sediments to elevated concentrations thereby representing a route of potentially higher doses of metals to humans than from drinking water. Also, the benthic biomass may significantly influence the time of recovery and bioavailability of metals at a site due to sediment mixing (bioturbation). With calibrated predictive modeling tools available, a more credible basis can then be established for estimating the effectiveness of remedial actions.
The specific aims of this research are to: (1) construct a generic model of metal accumulation in aquatic food webs with sediment interaction, (2) develop physiologically based toxicokinetic models of uptake and disposition of metals in benthic animals, (3) develop a modeling framework for the effect of sediment bioturbation due to benthic biomass on the flux of cadmium from sediments, and (4) apply the fate and accumulation modeling framework to cadmium in the blue crab of a Superfund site at Foundry Cove. These models will be calibrated using: (1) existing data from Superfund and other sites for the generic model of metals transfer, (2) laboratory data to be obtained by other components on Cd uptake in benthic invertebrates and Cd disposition in blue crab, Atlantic tomcod and killifish for use in the generic model and the PB-TK modeling, (3) data from measurements of Cd flux in the laboratory with varying densities of benthic biomass to develop the model of Cd flux due to bioturbation and (4) existing data to be supplemented by field work at Foundry Cove to calibrate the modeling framework of Cd in the blue crab under field conditions.

Project Start
Project End
Budget Start
Budget End
Support Year
6
Fiscal Year
1994
Total Cost
Indirect Cost
Name
New York University
Department
Type
DUNS #
004514360
City
New York
State
NY
Country
United States
Zip Code
10012
Sutherland, J E; Zhitkovich, A; Kluz, T et al. (2000) Rats retain chromium in tissues following chronic ingestion of drinking water containing hexavalent chromium. Biol Trace Elem Res 74:41-53
Corti, M; Snyder, C A (1998) Gender- and age-specific cytotoxic susceptibility to benzene metabolites in vitro. Toxicol Sci 41:42-8
Gong, Z; Evans, H L (1997) Effect of chelation with meso-dimercaptosuccinic acid (DMSA) before and after the appearance of lead-induced neurotoxicity in the rat. Toxicol Appl Pharmacol 144:205-14
Salnikow, K; Wang, S; Costa, M (1997) Induction of activating transcription factor 1 by nickel and its role as a negative regulator of thrombospondin I gene expression. Cancer Res 57:5060-6
Klein, C B; Costa, M (1997) DNA methylation, heterochromatin and epigenetic carcinogens. Mutat Res 386:163-80
Dowjat, W K; Kharatishvili, M; Costa, M (1996) DNA and RNA strand scission by copper, zinc and manganese superoxide dismutases. Biometals 9:327-35
Snyder, C A; Udasin, I; Waterman, S J et al. (1996) Reduced IL-6 levels among individuals in Hudson County, New Jersey, an area contaminated with chromium. Arch Environ Health 51:26-8
Corti, M; Snyder, C A (1996) Influences of gender, development, pregnancy and ethanol consumption on the hematotoxicity of inhaled 10 ppm benzene. Arch Toxicol 70:209-17
Garte, S J; Trachman, J; Crofts, F et al. (1996) Distribution of composite CYP1A1 genotypes in Africans, African-Americans and Caucasians. Hum Hered 46:121-7
Dowjat, W K; Huang, X; Cosentino, S et al. (1996) Peroxidase deficiency of nickel-transformed hamster cells correlates with their increased resistance to cytotoxicity of peroxides. Biometals 9:151-6

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