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RECORD NUMBER: 7 OF 59

OLS Field Name OLS Field Data
Main Title Biologically Based Dose Response Models for Developmental Toxicity Risk Assessment.
Author Kavlock., R. J. ;
CORP Author Health Effects Research Lab., Research Triangle Park, NC. Developmental Toxicology Div.
Publisher 1991
Year Published 1991
Report Number EPA/600/D-91/215;
Stock Number PB91-233338
Additional Subjects Teratogenic compounds ; Toxicity ; Risk assessment ; Dose-response relationships ; Carcinogenesis ; Pharmacokinetics ; Growth ; Biological models ; Embryo ; Genetic recombination ; Fetus ; Health hazards ; Mutations ;
Holdings
Library Call Number Additional Info Location Last
Modified
Checkout
Status
NTIS  PB91-233338 Most EPA libraries have a fiche copy filed under the call number shown. Check with individual libraries about paper copy. NTIS 11/26/1991
Collation 10p
Abstract
Present risk assessment procedures for non-cancer endpoints generally rely on the determination of No Observed Adverse Effects levels (NOAELS) in animal models followed by the application of various Uncertainty Factors (UFs) to account for unknowns in extrapolating high dose toxicology studies to potentially sensitive human subpopulations. The Reference Dose (RfD) or Concentration (RfC) which results from the process is an estimate, with an uncertainty spanning an order of magnitude, of the exposure level to the human population that is likely to be without appreciable risk of deleterious effects during a lifetime. The US Environmental Protection Agency, through its Research to Improve Health Risk Assessment Program (RIHRA), has embarked on a concerted effort to introduce more pharmacokinetic and mechanistic information into the risk assessment process for non-cancer endpoints and to do this in a quantitative and predictive fashion. Such approaches are collectively termed biologically based dose-response (BBDR) models, and the presentation will focus on examples of such research in the area of developmental toxicity currently being conducted or supported by the EPA.