Cargando…

Gene Expression Analysis of Biological Systems Driving an Organotypic Model of Endometrial Carcinogenesis and Chemoprevention

An organotypic model of endometrial carcinogenesis and chemoprevention was developed in which normal endometrial organotypic cultures exposed to the carcinogen, DMBA (7,12-dimethylbenz[a]anthracene), developed a cancerous phenotype in the absence, but not presence of subsequent treatment with a flex...

Descripción completa

Detalles Bibliográficos
Autores principales: Benbrook, Doris M., Lightfoot, Stan, Ranger-Moore, James, Liu, Tongzu, Chengedza, Shylet, Berry, William L., Dozmorov, Igor
Formato: Texto
Lenguaje:English
Publicado: Libertas Academica 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2733085/
https://www.ncbi.nlm.nih.gov/pubmed/19784388
_version_ 1782171087428124672
author Benbrook, Doris M.
Lightfoot, Stan
Ranger-Moore, James
Liu, Tongzu
Chengedza, Shylet
Berry, William L.
Dozmorov, Igor
author_facet Benbrook, Doris M.
Lightfoot, Stan
Ranger-Moore, James
Liu, Tongzu
Chengedza, Shylet
Berry, William L.
Dozmorov, Igor
author_sort Benbrook, Doris M.
collection PubMed
description An organotypic model of endometrial carcinogenesis and chemoprevention was developed in which normal endometrial organotypic cultures exposed to the carcinogen, DMBA (7,12-dimethylbenz[a]anthracene), developed a cancerous phenotype in the absence, but not presence of subsequent treatment with a flexible heteroarotinoid (Flex-Het), called SHetA2. A discriminant function based on karyometric features of cellular nuclei and an agar clonogenic assay confirmed these histologic changes. Interpretation of microarray data using an internal standard approach identified major pathways associated with carcinogenesis and chemoprevention governed by c-myc, p53, TNFα and Jun genes. Cluster analysis of functional associations of hypervariable genes demonstrated that carcinogenesis is accompanied by a stimulating association between a module of genes that includes tumor necrosis factor α (TNFα), c-myc, and epidermal growth factor-receptor (EGF-R) and a module that includes insulin-like growth factor I-receptor (IGF-IR), p53, and Jun genes. Two secreted proteins involved in these systems, tenascin C and inhibin A, were validated at the protein level. Tenascin C is an EGF-R ligand, and therefore may contribute to the increased EGF-R involvement in carcinogenesis. The known roles of the identified molecular systems in DMBA and endometrial carcinogenesis and chemoprevention supports the validity of this model and the potential clinical utility of SHetA2 in chemoprevention.
format Text
id pubmed-2733085
institution National Center for Biotechnology Information
language English
publishDate 2008
publisher Libertas Academica
record_format MEDLINE/PubMed
spelling pubmed-27330852009-09-28 Gene Expression Analysis of Biological Systems Driving an Organotypic Model of Endometrial Carcinogenesis and Chemoprevention Benbrook, Doris M. Lightfoot, Stan Ranger-Moore, James Liu, Tongzu Chengedza, Shylet Berry, William L. Dozmorov, Igor Gene Regul Syst Bio Original Research An organotypic model of endometrial carcinogenesis and chemoprevention was developed in which normal endometrial organotypic cultures exposed to the carcinogen, DMBA (7,12-dimethylbenz[a]anthracene), developed a cancerous phenotype in the absence, but not presence of subsequent treatment with a flexible heteroarotinoid (Flex-Het), called SHetA2. A discriminant function based on karyometric features of cellular nuclei and an agar clonogenic assay confirmed these histologic changes. Interpretation of microarray data using an internal standard approach identified major pathways associated with carcinogenesis and chemoprevention governed by c-myc, p53, TNFα and Jun genes. Cluster analysis of functional associations of hypervariable genes demonstrated that carcinogenesis is accompanied by a stimulating association between a module of genes that includes tumor necrosis factor α (TNFα), c-myc, and epidermal growth factor-receptor (EGF-R) and a module that includes insulin-like growth factor I-receptor (IGF-IR), p53, and Jun genes. Two secreted proteins involved in these systems, tenascin C and inhibin A, were validated at the protein level. Tenascin C is an EGF-R ligand, and therefore may contribute to the increased EGF-R involvement in carcinogenesis. The known roles of the identified molecular systems in DMBA and endometrial carcinogenesis and chemoprevention supports the validity of this model and the potential clinical utility of SHetA2 in chemoprevention. Libertas Academica 2008-02-10 /pmc/articles/PMC2733085/ /pubmed/19784388 Text en © 2008 by the authors http://creativecommons.org/licenses/by/3.0 This article is an open-access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Original Research
Benbrook, Doris M.
Lightfoot, Stan
Ranger-Moore, James
Liu, Tongzu
Chengedza, Shylet
Berry, William L.
Dozmorov, Igor
Gene Expression Analysis of Biological Systems Driving an Organotypic Model of Endometrial Carcinogenesis and Chemoprevention
title Gene Expression Analysis of Biological Systems Driving an Organotypic Model of Endometrial Carcinogenesis and Chemoprevention
title_full Gene Expression Analysis of Biological Systems Driving an Organotypic Model of Endometrial Carcinogenesis and Chemoprevention
title_fullStr Gene Expression Analysis of Biological Systems Driving an Organotypic Model of Endometrial Carcinogenesis and Chemoprevention
title_full_unstemmed Gene Expression Analysis of Biological Systems Driving an Organotypic Model of Endometrial Carcinogenesis and Chemoprevention
title_short Gene Expression Analysis of Biological Systems Driving an Organotypic Model of Endometrial Carcinogenesis and Chemoprevention
title_sort gene expression analysis of biological systems driving an organotypic model of endometrial carcinogenesis and chemoprevention
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2733085/
https://www.ncbi.nlm.nih.gov/pubmed/19784388
work_keys_str_mv AT benbrookdorism geneexpressionanalysisofbiologicalsystemsdrivinganorganotypicmodelofendometrialcarcinogenesisandchemoprevention
AT lightfootstan geneexpressionanalysisofbiologicalsystemsdrivinganorganotypicmodelofendometrialcarcinogenesisandchemoprevention
AT rangermoorejames geneexpressionanalysisofbiologicalsystemsdrivinganorganotypicmodelofendometrialcarcinogenesisandchemoprevention
AT liutongzu geneexpressionanalysisofbiologicalsystemsdrivinganorganotypicmodelofendometrialcarcinogenesisandchemoprevention
AT chengedzashylet geneexpressionanalysisofbiologicalsystemsdrivinganorganotypicmodelofendometrialcarcinogenesisandchemoprevention
AT berrywilliaml geneexpressionanalysisofbiologicalsystemsdrivinganorganotypicmodelofendometrialcarcinogenesisandchemoprevention
AT dozmorovigor geneexpressionanalysisofbiologicalsystemsdrivinganorganotypicmodelofendometrialcarcinogenesisandchemoprevention