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Use of selected toxicology information resources in assessing relationships between chemical structure and biological activity.

This paper addresses the subject of the use of selected toxicology information resources in assessing relationships between chemical structure and specific biological end points. To assist the researcher in how to access the primary literature of genetic toxicology, teratogenesis, and carcinogenesis...

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Autor principal: Wassom, J S
Formato: Texto
Lenguaje:English
Publicado: 1985
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1568755/
https://www.ncbi.nlm.nih.gov/pubmed/4065070
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author Wassom, J S
author_facet Wassom, J S
author_sort Wassom, J S
collection PubMed
description This paper addresses the subject of the use of selected toxicology information resources in assessing relationships between chemical structure and specific biological end points. To assist the researcher in how to access the primary literature of genetic toxicology, teratogenesis, and carcinogenesis, three specific specialized information centers are discussed--Environmental Mutagen Information Center, Environmental Teratology Information Center, and Environmental Carcinogenesis Information Center. Also included are descriptions of information resources that contain evaluated (peer-reviewed) biological research results. The U.S. Environmental Protection Agency Genetic Toxicology Program, the International Agency for Research on Cancer Monographs, and the Toxicology Data Bank are the best sources currently available to obtain peer-reviewed results for compounds tested for genotoxicity, carcinogenicity, and other toxicological end points. The value of published information lies in its use. It has become evident that most information cannot be accepted at face value for interpretation and analysis when subjected to stringent quality evaluation criteria. This deficit can be corrected by rigid editorship and the cognizance of authors. Increased interest in alternative methods to in vivo animal testing will be exemplified by use of short-term bioassays and in structure-activity relationship studies. With respect to this latter area, it must be remembered that mechanically (computer generated) derived data cannot substitute, at least at this stage, for data obtained from actual animal testing. The future of structure-activity relationship studies will rest only in their use as a predictive tool.
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spelling pubmed-15687552006-09-18 Use of selected toxicology information resources in assessing relationships between chemical structure and biological activity. Wassom, J S Environ Health Perspect Research Article This paper addresses the subject of the use of selected toxicology information resources in assessing relationships between chemical structure and specific biological end points. To assist the researcher in how to access the primary literature of genetic toxicology, teratogenesis, and carcinogenesis, three specific specialized information centers are discussed--Environmental Mutagen Information Center, Environmental Teratology Information Center, and Environmental Carcinogenesis Information Center. Also included are descriptions of information resources that contain evaluated (peer-reviewed) biological research results. The U.S. Environmental Protection Agency Genetic Toxicology Program, the International Agency for Research on Cancer Monographs, and the Toxicology Data Bank are the best sources currently available to obtain peer-reviewed results for compounds tested for genotoxicity, carcinogenicity, and other toxicological end points. The value of published information lies in its use. It has become evident that most information cannot be accepted at face value for interpretation and analysis when subjected to stringent quality evaluation criteria. This deficit can be corrected by rigid editorship and the cognizance of authors. Increased interest in alternative methods to in vivo animal testing will be exemplified by use of short-term bioassays and in structure-activity relationship studies. With respect to this latter area, it must be remembered that mechanically (computer generated) derived data cannot substitute, at least at this stage, for data obtained from actual animal testing. The future of structure-activity relationship studies will rest only in their use as a predictive tool. 1985-09 /pmc/articles/PMC1568755/ /pubmed/4065070 Text en
spellingShingle Research Article
Wassom, J S
Use of selected toxicology information resources in assessing relationships between chemical structure and biological activity.
title Use of selected toxicology information resources in assessing relationships between chemical structure and biological activity.
title_full Use of selected toxicology information resources in assessing relationships between chemical structure and biological activity.
title_fullStr Use of selected toxicology information resources in assessing relationships between chemical structure and biological activity.
title_full_unstemmed Use of selected toxicology information resources in assessing relationships between chemical structure and biological activity.
title_short Use of selected toxicology information resources in assessing relationships between chemical structure and biological activity.
title_sort use of selected toxicology information resources in assessing relationships between chemical structure and biological activity.
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1568755/
https://www.ncbi.nlm.nih.gov/pubmed/4065070
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