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Cell specificity in DNA binding and repair of chemical carcinogens.

Many animal models for organ specific neoplasia have been developed and used to study the pathogenesis of cancer. Morphologic studies have usually concentrated on the response of target cells, whereas biochemical investigations have usually employed whole organ homogenates. Since hepatocytes compris...

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Detalles Bibliográficos
Autores principales: Swenberg, J A, Rickert, D E, Baranyi, B L, Goodman, J I
Formato: Texto
Lenguaje:English
Publicado: 1983
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1569133/
https://www.ncbi.nlm.nih.gov/pubmed/6832089
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author Swenberg, J A
Rickert, D E
Baranyi, B L
Goodman, J I
author_facet Swenberg, J A
Rickert, D E
Baranyi, B L
Goodman, J I
author_sort Swenberg, J A
collection PubMed
description Many animal models for organ specific neoplasia have been developed and used to study the pathogenesis of cancer. Morphologic studies have usually concentrated on the response of target cells, whereas biochemical investigations have usually employed whole organ homogenates. Since hepatocytes comprise nearly 90% of the liver's mass and 70-80% of its DNA, alterations in DNA replication, covalent binding and DNA repair of nonparenchymal cells are usually obscured when whole organ homogenates are used. By utilizing cell separation methods, we have been able to demonstrate differences between hepatocyte and nonparenchymal cell replication. DNA damage and repair following exposure to a variety of hepatocarcinogen. Differences in removal of simple O6-alkylguanine and DNA replication correlate with cell specific carcinogenesis of simply alkylating agents. For several other procarcinogens, including 2-acetylaminofluorene and dinitroluene, cell specificity appears to reside primarily in the differential metabolic competence of hepatocytes and nonparenchymal cells. This results in greater covalent binding of the carcinogen to hepatocyte DNA, although the DNA adducts are removed at a similar rate in both cell types.
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spelling pubmed-15691332006-09-18 Cell specificity in DNA binding and repair of chemical carcinogens. Swenberg, J A Rickert, D E Baranyi, B L Goodman, J I Environ Health Perspect Research Article Many animal models for organ specific neoplasia have been developed and used to study the pathogenesis of cancer. Morphologic studies have usually concentrated on the response of target cells, whereas biochemical investigations have usually employed whole organ homogenates. Since hepatocytes comprise nearly 90% of the liver's mass and 70-80% of its DNA, alterations in DNA replication, covalent binding and DNA repair of nonparenchymal cells are usually obscured when whole organ homogenates are used. By utilizing cell separation methods, we have been able to demonstrate differences between hepatocyte and nonparenchymal cell replication. DNA damage and repair following exposure to a variety of hepatocarcinogen. Differences in removal of simple O6-alkylguanine and DNA replication correlate with cell specific carcinogenesis of simply alkylating agents. For several other procarcinogens, including 2-acetylaminofluorene and dinitroluene, cell specificity appears to reside primarily in the differential metabolic competence of hepatocytes and nonparenchymal cells. This results in greater covalent binding of the carcinogen to hepatocyte DNA, although the DNA adducts are removed at a similar rate in both cell types. 1983-03 /pmc/articles/PMC1569133/ /pubmed/6832089 Text en
spellingShingle Research Article
Swenberg, J A
Rickert, D E
Baranyi, B L
Goodman, J I
Cell specificity in DNA binding and repair of chemical carcinogens.
title Cell specificity in DNA binding and repair of chemical carcinogens.
title_full Cell specificity in DNA binding and repair of chemical carcinogens.
title_fullStr Cell specificity in DNA binding and repair of chemical carcinogens.
title_full_unstemmed Cell specificity in DNA binding and repair of chemical carcinogens.
title_short Cell specificity in DNA binding and repair of chemical carcinogens.
title_sort cell specificity in dna binding and repair of chemical carcinogens.
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1569133/
https://www.ncbi.nlm.nih.gov/pubmed/6832089
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