A Pharmacokinetic Model of cis- and trans-Permethrin Disposition in Rats and Humans With Aggregate Exposure Application
Autor: | James M. Starr, Valerie Zartarian, Michael-Rock Goldsmith, Daniel T. Chang, Edward J. Scollon, Michael J. De Vito, Michael F. Hughes, Jimena Davis, Rogelio Tornero-Velez, Jianping Xue, R. Woodrow Setzer |
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Rok vydání: | 2012 |
Předmět: |
Male
Insecticides Population Food Contamination Pharmacology Toxicology Models Biological Risk Assessment chemistry.chemical_compound Isomerism Pharmacokinetics Oral administration parasitic diseases medicine Animals Humans Rats Long-Evans Tissue Distribution education Permethrin education.field_of_study business.industry Drug Administration Routes Environmental Exposure Environmental exposure Disposition Pesticide Diet Rats Deltamethrin chemistry Regional Blood Flow Microsomes Liver business medicine.drug |
Zdroj: | Toxicological Sciences. 130:33-47 |
ISSN: | 1096-0929 1096-6080 |
Popis: | Permethrin is a broad-spectrum pyrethroid insecticide and among the most widely used insecticides in homes and crops. Managing the risks for pesticides such as permethrin depends on the ability to consider diverse exposure scenarios and their relative risks. Physiologically based pharmacokinetic models of delta methrin disposition were modified to describe permethrin kinetics in the rat and human. Unlike formulated deltamethrin which consists of a single stereoisomer, permethrin is formulated as a blend of cis- and trans-diastereomers. We assessed time courses for cis-permethrin and trans-permethrin in several tissues (brain, blood, liver, and fat) in the rat following oral administration of 1 and 10mg/kg permethrin (cis/trans: 40/60). Accurate simulation of permethrin in the rat suggests that a generic model structure is promising for modeling pyrethroids. Human in vitro data and appropriate anatomical information were used to develop a provisional model of permethrin disposition with structures for managing oral, dermal, and inhalation routes of exposure. The human permethrin model was used to evaluate dietary and residential exposures in the U.S. population as estimated by EPA's Stochastic Human Exposure and Dose Simulation model. Simulated cis- and trans-DCCA, metabolites of permethrin, were consistent with measured values in the National Health and Nutrition Examination Survey, indicating that the model holds promise for assessing population exposures and quantifying dose metrics. |
Databáze: | OpenAIRE |
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