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In Vitro Chronic Administration of ERbeta Selective Ligands and Prostate Cancer Cell Growth: Hypotheses on the Selective Role of 3beta-Adiol in AR-Positive RV1 Cells

Prostate cancer (PC) progression from androgen-dependent (AD) to castration-resistant (CR) disease is a process caused by modifications of different signal transduction pathways within tumor microenvironment. Reducing cell proliferation, estrogen receptor beta (ERbeta) is emerging as a potential tar...

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Autores principales: Colciago, Alessandra, Ruscica, Massimiliano, Mornati, Ornella, Piccolella, Margherita, Montagnani-Marelli, Marina, Eberini, Ivano, Festuccia, Claudio, Magni, Paolo, Motta, Marcella, Negri-Cesi, Paola
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4022250/
https://www.ncbi.nlm.nih.gov/pubmed/24877132
http://dx.doi.org/10.1155/2014/801473
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author Colciago, Alessandra
Ruscica, Massimiliano
Mornati, Ornella
Piccolella, Margherita
Montagnani-Marelli, Marina
Eberini, Ivano
Festuccia, Claudio
Magni, Paolo
Motta, Marcella
Negri-Cesi, Paola
author_facet Colciago, Alessandra
Ruscica, Massimiliano
Mornati, Ornella
Piccolella, Margherita
Montagnani-Marelli, Marina
Eberini, Ivano
Festuccia, Claudio
Magni, Paolo
Motta, Marcella
Negri-Cesi, Paola
author_sort Colciago, Alessandra
collection PubMed
description Prostate cancer (PC) progression from androgen-dependent (AD) to castration-resistant (CR) disease is a process caused by modifications of different signal transduction pathways within tumor microenvironment. Reducing cell proliferation, estrogen receptor beta (ERbeta) is emerging as a potential target in PC chemoprevention. Among the known selective ERbeta ligands, 3beta-Adiol, the endogenous ligand in the prostate, has been proved to counteract PC progression. This study compares the effects of chronic exposure (1–12 weeks) to different ERbeta selective ligands (DPN, 8beta-VE2, 3beta-Adiol) on proliferation of human androgen-responsive CWR22Rv1 cells, representing an intermediate phenotype between the AD- and CR-PC. 3beta-Adiol (10 nM) is the sole ligand decreasing cell proliferation and increasing p21 levels. In vitro transcriptional activity assays were performed to elucidate different behavior between 3beta-Adiol and the other ligands; in these experiments the endogenous and the main ERbeta subtype activation were considered. It is concluded that ERbeta activation has positive effects also in androgen-responsive PC. The underlying mechanisms are still to be clarified and may include the interplay among different ERbeta subtypes and the specific PC microenvironment. ERbeta agonists might be useful in counteracting PC progression, although the final outcome may depend upon the molecular pattern specific to each PC lesion.
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spelling pubmed-40222502014-05-29 In Vitro Chronic Administration of ERbeta Selective Ligands and Prostate Cancer Cell Growth: Hypotheses on the Selective Role of 3beta-Adiol in AR-Positive RV1 Cells Colciago, Alessandra Ruscica, Massimiliano Mornati, Ornella Piccolella, Margherita Montagnani-Marelli, Marina Eberini, Ivano Festuccia, Claudio Magni, Paolo Motta, Marcella Negri-Cesi, Paola Biomed Res Int Research Article Prostate cancer (PC) progression from androgen-dependent (AD) to castration-resistant (CR) disease is a process caused by modifications of different signal transduction pathways within tumor microenvironment. Reducing cell proliferation, estrogen receptor beta (ERbeta) is emerging as a potential target in PC chemoprevention. Among the known selective ERbeta ligands, 3beta-Adiol, the endogenous ligand in the prostate, has been proved to counteract PC progression. This study compares the effects of chronic exposure (1–12 weeks) to different ERbeta selective ligands (DPN, 8beta-VE2, 3beta-Adiol) on proliferation of human androgen-responsive CWR22Rv1 cells, representing an intermediate phenotype between the AD- and CR-PC. 3beta-Adiol (10 nM) is the sole ligand decreasing cell proliferation and increasing p21 levels. In vitro transcriptional activity assays were performed to elucidate different behavior between 3beta-Adiol and the other ligands; in these experiments the endogenous and the main ERbeta subtype activation were considered. It is concluded that ERbeta activation has positive effects also in androgen-responsive PC. The underlying mechanisms are still to be clarified and may include the interplay among different ERbeta subtypes and the specific PC microenvironment. ERbeta agonists might be useful in counteracting PC progression, although the final outcome may depend upon the molecular pattern specific to each PC lesion. Hindawi Publishing Corporation 2014 2014-04-29 /pmc/articles/PMC4022250/ /pubmed/24877132 http://dx.doi.org/10.1155/2014/801473 Text en Copyright © 2014 Alessandra Colciago et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Colciago, Alessandra
Ruscica, Massimiliano
Mornati, Ornella
Piccolella, Margherita
Montagnani-Marelli, Marina
Eberini, Ivano
Festuccia, Claudio
Magni, Paolo
Motta, Marcella
Negri-Cesi, Paola
In Vitro Chronic Administration of ERbeta Selective Ligands and Prostate Cancer Cell Growth: Hypotheses on the Selective Role of 3beta-Adiol in AR-Positive RV1 Cells
title In Vitro Chronic Administration of ERbeta Selective Ligands and Prostate Cancer Cell Growth: Hypotheses on the Selective Role of 3beta-Adiol in AR-Positive RV1 Cells
title_full In Vitro Chronic Administration of ERbeta Selective Ligands and Prostate Cancer Cell Growth: Hypotheses on the Selective Role of 3beta-Adiol in AR-Positive RV1 Cells
title_fullStr In Vitro Chronic Administration of ERbeta Selective Ligands and Prostate Cancer Cell Growth: Hypotheses on the Selective Role of 3beta-Adiol in AR-Positive RV1 Cells
title_full_unstemmed In Vitro Chronic Administration of ERbeta Selective Ligands and Prostate Cancer Cell Growth: Hypotheses on the Selective Role of 3beta-Adiol in AR-Positive RV1 Cells
title_short In Vitro Chronic Administration of ERbeta Selective Ligands and Prostate Cancer Cell Growth: Hypotheses on the Selective Role of 3beta-Adiol in AR-Positive RV1 Cells
title_sort in vitro chronic administration of erbeta selective ligands and prostate cancer cell growth: hypotheses on the selective role of 3beta-adiol in ar-positive rv1 cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4022250/
https://www.ncbi.nlm.nih.gov/pubmed/24877132
http://dx.doi.org/10.1155/2014/801473
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