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Application of genomics to toxicology research.

Traditional models of toxicity have relied on dissecting chemical action into pharmacokinetic and pharmacodynamic processes. However, the integration of genomic information with toxicology will enhance our basic understanding of these processes and significantly change the way we apply toxicological...

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Detalles Bibliográficos
Autores principales: Thomas, Russell S, Rank, David R, Penn, Sharron G, Zastrow, Gina M, Hayes, Kevin R, Hu, Tianhua, Pande, Kalyan, Lewis, Mark, Jovanovich, Stevan B, Bradfield, Christopher A
Formato: Texto
Lenguaje:English
Publicado: 2002
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1241273/
https://www.ncbi.nlm.nih.gov/pubmed/12634120
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author Thomas, Russell S
Rank, David R
Penn, Sharron G
Zastrow, Gina M
Hayes, Kevin R
Hu, Tianhua
Pande, Kalyan
Lewis, Mark
Jovanovich, Stevan B
Bradfield, Christopher A
author_facet Thomas, Russell S
Rank, David R
Penn, Sharron G
Zastrow, Gina M
Hayes, Kevin R
Hu, Tianhua
Pande, Kalyan
Lewis, Mark
Jovanovich, Stevan B
Bradfield, Christopher A
author_sort Thomas, Russell S
collection PubMed
description Traditional models of toxicity have relied on dissecting chemical action into pharmacokinetic and pharmacodynamic processes. However, the integration of genomic information with toxicology will enhance our basic understanding of these processes and significantly change the way we apply toxicological information to risk assessment and regulatory problems. In this article, we summarize the application of gene expression information and polymorphism discovery to four areas in toxicology: toxicity testing, cross-species extrapolation, understanding mechanism of action, and susceptibility.
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spelling pubmed-12412732005-11-08 Application of genomics to toxicology research. Thomas, Russell S Rank, David R Penn, Sharron G Zastrow, Gina M Hayes, Kevin R Hu, Tianhua Pande, Kalyan Lewis, Mark Jovanovich, Stevan B Bradfield, Christopher A Environ Health Perspect Research Article Traditional models of toxicity have relied on dissecting chemical action into pharmacokinetic and pharmacodynamic processes. However, the integration of genomic information with toxicology will enhance our basic understanding of these processes and significantly change the way we apply toxicological information to risk assessment and regulatory problems. In this article, we summarize the application of gene expression information and polymorphism discovery to four areas in toxicology: toxicity testing, cross-species extrapolation, understanding mechanism of action, and susceptibility. 2002-12 /pmc/articles/PMC1241273/ /pubmed/12634120 Text en
spellingShingle Research Article
Thomas, Russell S
Rank, David R
Penn, Sharron G
Zastrow, Gina M
Hayes, Kevin R
Hu, Tianhua
Pande, Kalyan
Lewis, Mark
Jovanovich, Stevan B
Bradfield, Christopher A
Application of genomics to toxicology research.
title Application of genomics to toxicology research.
title_full Application of genomics to toxicology research.
title_fullStr Application of genomics to toxicology research.
title_full_unstemmed Application of genomics to toxicology research.
title_short Application of genomics to toxicology research.
title_sort application of genomics to toxicology research.
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1241273/
https://www.ncbi.nlm.nih.gov/pubmed/12634120
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