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A retrospective evaluation of COMPACT predictions of the outcome of NTP rodent carcinogenicity testing.

The carcinogenic potentials of 40 National Toxicology Program chemicals previously predicted by Computer Optimised Molecular Parametric Analysis for Chemical Toxicity (COMPACT), based on the identification of potential substrates of cytochromes P4501A and 2E (CYP1A and CYP2E), have been compared wit...

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Detalles Bibliográficos
Autores principales: Lewis, D F, Ioannides, C, Parke, D V
Formato: Texto
Lenguaje:English
Publicado: 1995
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1519006/
https://www.ncbi.nlm.nih.gov/pubmed/7737067
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author Lewis, D F
Ioannides, C
Parke, D V
author_facet Lewis, D F
Ioannides, C
Parke, D V
author_sort Lewis, D F
collection PubMed
description The carcinogenic potentials of 40 National Toxicology Program chemicals previously predicted by Computer Optimised Molecular Parametric Analysis for Chemical Toxicity (COMPACT), based on the identification of potential substrates of cytochromes P4501A and 2E (CYP1A and CYP2E), have been compared with new rodent carcinogenicity results. The COMPACT predictions have also been compared with published Ames mutagenicity data and with our own Hazardexpert predictions for carcinogenicity. Concordance evaluations between rodent carcinogenicity (1/4 segments positive) and predictions by COMPACT or Hazardexpert were 64% for COMPACT (CYP1A only), 72% for COMPACT (CYP1A plus CYP2E), 70% for Hazardexpert alone, and 86% for COMPACT (CYP1A plus CYP2E) plus Hazardexpert. Sensitivities of the predictions were for COMPACT, 75%; Hazardexpert, 60%; and Ames, 54%. Positive predictivities were for COMPACT, 75%; Hazardexpert, 78%; and Ames 81%. Negative predictivites were for COMPACT, 62%; Hazardexpert, 52%; and Ames, 42%.
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spelling pubmed-15190062006-07-28 A retrospective evaluation of COMPACT predictions of the outcome of NTP rodent carcinogenicity testing. Lewis, D F Ioannides, C Parke, D V Environ Health Perspect Research Article The carcinogenic potentials of 40 National Toxicology Program chemicals previously predicted by Computer Optimised Molecular Parametric Analysis for Chemical Toxicity (COMPACT), based on the identification of potential substrates of cytochromes P4501A and 2E (CYP1A and CYP2E), have been compared with new rodent carcinogenicity results. The COMPACT predictions have also been compared with published Ames mutagenicity data and with our own Hazardexpert predictions for carcinogenicity. Concordance evaluations between rodent carcinogenicity (1/4 segments positive) and predictions by COMPACT or Hazardexpert were 64% for COMPACT (CYP1A only), 72% for COMPACT (CYP1A plus CYP2E), 70% for Hazardexpert alone, and 86% for COMPACT (CYP1A plus CYP2E) plus Hazardexpert. Sensitivities of the predictions were for COMPACT, 75%; Hazardexpert, 60%; and Ames, 54%. Positive predictivities were for COMPACT, 75%; Hazardexpert, 78%; and Ames 81%. Negative predictivites were for COMPACT, 62%; Hazardexpert, 52%; and Ames, 42%. 1995-02 /pmc/articles/PMC1519006/ /pubmed/7737067 Text en
spellingShingle Research Article
Lewis, D F
Ioannides, C
Parke, D V
A retrospective evaluation of COMPACT predictions of the outcome of NTP rodent carcinogenicity testing.
title A retrospective evaluation of COMPACT predictions of the outcome of NTP rodent carcinogenicity testing.
title_full A retrospective evaluation of COMPACT predictions of the outcome of NTP rodent carcinogenicity testing.
title_fullStr A retrospective evaluation of COMPACT predictions of the outcome of NTP rodent carcinogenicity testing.
title_full_unstemmed A retrospective evaluation of COMPACT predictions of the outcome of NTP rodent carcinogenicity testing.
title_short A retrospective evaluation of COMPACT predictions of the outcome of NTP rodent carcinogenicity testing.
title_sort retrospective evaluation of compact predictions of the outcome of ntp rodent carcinogenicity testing.
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1519006/
https://www.ncbi.nlm.nih.gov/pubmed/7737067
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