A Biologically‐Based Dose—Response Model for Developmental Toxicology
- 1 August 1996
- journal article
- Published by Wiley in Risk Analysis
- Vol. 16 (4) , 449-458
- https://doi.org/10.1111/j.1539-6924.1996.tb01092.x
Abstract
The methods currently used to evaluate the risk of developmental defects in humans from exposure to potential toxic agents do not reflect biological processes in extrapolating estimated risks to low doses and from test species to humans. We develop a mathematical model to describe aspects of the dynamic process of organogenesis, based on branching process models of cell kinetics. The biological information that can be incorporated into the model includes timing and rates of dynamic cell processes such as differentiation, migration, growth, and replication. The dose-response models produced can explain patterns of malformation rates as a function of both dose and time of exposure, resulting in improvements in risk assessment and understanding of the underlying mechanistic processes. To illustrate the use of the model, we apply it to the prediction of the effects of methylmercury on brain development in rats.Keywords
This publication has 35 references indexed in Scilit:
- Applications of Multinomial Dose‐Response Models in Developmental Toxicity Risk AssessmentRisk Analysis, 1994
- Biologically Based Dose-Response Modeling in Developmental Toxicology: Biochemical and Cellular Sequelae of 5-Fluorouracil Exposure in the Developing RatToxicology and Applied Pharmacology, 1994
- Statistical model for fetal death, fetal weight, and malformation in developmental toxicity studiesTeratology, 1993
- Dose‐response models for developmental malformationsTeratology, 1993
- Process of building biologically based dose–response models for developmental defectsTeratology, 1992
- An Evaluation of the Rai and Van Ryzin Dose‐Response Model in TeratologyRisk Analysis, 1991
- Quantitative Risk Assessment for Teratological EffectsJournal of the American Statistical Association, 1989
- The Analysis of Multiple Correlated Binary Outcomes: Application to Rodent Teratology ExperimentsJournal of the American Statistical Association, 1989
- Overview of a workshop on quantitative models for developmental toxicity risk assessmentEnvironmental Health Perspectives, 1989
- Embryotoxic effects of methylmercuric chloride administered to mice and rats during organogenesisTeratology, 1978