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WISP1/CCN4: A Potential Target for Inhibiting Prostate Cancer Growth and Spread to Bone

Prostate cancer (PC) is a leading cause of death in men however the factors that regulate its progression and eventual metastasis to bone remain unclear. Here we show that WISP1/CCN4 expression in prostate cancer tissues was up-regulated in early stages of the disease and, further, that it correlate...

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Autores principales: Ono, Mitsuaki, Inkson, Colette A., Sonn, Robert, Kilts, Tina M., de Castro, Luis F., Maeda, Azusa, Fisher, Larry W., Robey, Pamela G., Berendsen, Agnes D., Li, Li, McCartney-Francis, Nancy, Brown, Aaron C., Crawford, Nigel P. S., Molinolo, Alfredo, Jain, Alka, Fedarko, Neal S., Young, Marian F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3743748/
https://www.ncbi.nlm.nih.gov/pubmed/23977121
http://dx.doi.org/10.1371/journal.pone.0071709
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author Ono, Mitsuaki
Inkson, Colette A.
Sonn, Robert
Kilts, Tina M.
de Castro, Luis F.
Maeda, Azusa
Fisher, Larry W.
Robey, Pamela G.
Berendsen, Agnes D.
Li, Li
McCartney-Francis, Nancy
Brown, Aaron C.
Crawford, Nigel P. S.
Molinolo, Alfredo
Jain, Alka
Fedarko, Neal S.
Young, Marian F.
author_facet Ono, Mitsuaki
Inkson, Colette A.
Sonn, Robert
Kilts, Tina M.
de Castro, Luis F.
Maeda, Azusa
Fisher, Larry W.
Robey, Pamela G.
Berendsen, Agnes D.
Li, Li
McCartney-Francis, Nancy
Brown, Aaron C.
Crawford, Nigel P. S.
Molinolo, Alfredo
Jain, Alka
Fedarko, Neal S.
Young, Marian F.
author_sort Ono, Mitsuaki
collection PubMed
description Prostate cancer (PC) is a leading cause of death in men however the factors that regulate its progression and eventual metastasis to bone remain unclear. Here we show that WISP1/CCN4 expression in prostate cancer tissues was up-regulated in early stages of the disease and, further, that it correlated with increased circulating levels of WISP1 in the sera of patients at early stages of the disease. WISP1 was also elevated in the mouse prostate cancer model TRAMP in the hypoplastic diseased tissue that develops prior to advanced carcinoma formation. When the ability of anti-WISP1 antibodies to reduce the spread of PC3-Luc cells to distant sites was tested it showed that twice weekly injections of anti-WISP1 antibodies reduced the number and overall size of distant tumors developed after intracardiac (IC) injection of PC3-Luc cells in mice. The ability of antibodies against WISP1 to inhibit growth of PC3-Luc cancer cells in mice was also evaluated and showed that twice weekly injections of anti-WISP1 antibodies reduced local tumor growth when examined in xenografts. To better understand the mechanism of action, the migration of PC3-Luc cells through membranes with or without a Matrigel™ barrier showed the cells were attracted to WISP1, and that this attraction was inhibited by treatment with anti-WISP1 antibodies. We also show the expression of WISP1 at the bone-tumor interface and in the stroma of early grade cancers suggested WISP1 expression is well placed to play roles in both fostering growth of the cancer and its spread to bone. In summary, the up-regulation of WISP1 in the early stages of cancer development coupled with its ability to inhibit spread and growth of prostate cancer cells makes it both a potential target and an accessible diagnostic marker for prostate cancer.
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spelling pubmed-37437482013-08-23 WISP1/CCN4: A Potential Target for Inhibiting Prostate Cancer Growth and Spread to Bone Ono, Mitsuaki Inkson, Colette A. Sonn, Robert Kilts, Tina M. de Castro, Luis F. Maeda, Azusa Fisher, Larry W. Robey, Pamela G. Berendsen, Agnes D. Li, Li McCartney-Francis, Nancy Brown, Aaron C. Crawford, Nigel P. S. Molinolo, Alfredo Jain, Alka Fedarko, Neal S. Young, Marian F. PLoS One Research Article Prostate cancer (PC) is a leading cause of death in men however the factors that regulate its progression and eventual metastasis to bone remain unclear. Here we show that WISP1/CCN4 expression in prostate cancer tissues was up-regulated in early stages of the disease and, further, that it correlated with increased circulating levels of WISP1 in the sera of patients at early stages of the disease. WISP1 was also elevated in the mouse prostate cancer model TRAMP in the hypoplastic diseased tissue that develops prior to advanced carcinoma formation. When the ability of anti-WISP1 antibodies to reduce the spread of PC3-Luc cells to distant sites was tested it showed that twice weekly injections of anti-WISP1 antibodies reduced the number and overall size of distant tumors developed after intracardiac (IC) injection of PC3-Luc cells in mice. The ability of antibodies against WISP1 to inhibit growth of PC3-Luc cancer cells in mice was also evaluated and showed that twice weekly injections of anti-WISP1 antibodies reduced local tumor growth when examined in xenografts. To better understand the mechanism of action, the migration of PC3-Luc cells through membranes with or without a Matrigel™ barrier showed the cells were attracted to WISP1, and that this attraction was inhibited by treatment with anti-WISP1 antibodies. We also show the expression of WISP1 at the bone-tumor interface and in the stroma of early grade cancers suggested WISP1 expression is well placed to play roles in both fostering growth of the cancer and its spread to bone. In summary, the up-regulation of WISP1 in the early stages of cancer development coupled with its ability to inhibit spread and growth of prostate cancer cells makes it both a potential target and an accessible diagnostic marker for prostate cancer. Public Library of Science 2013-08-14 /pmc/articles/PMC3743748/ /pubmed/23977121 http://dx.doi.org/10.1371/journal.pone.0071709 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Ono, Mitsuaki
Inkson, Colette A.
Sonn, Robert
Kilts, Tina M.
de Castro, Luis F.
Maeda, Azusa
Fisher, Larry W.
Robey, Pamela G.
Berendsen, Agnes D.
Li, Li
McCartney-Francis, Nancy
Brown, Aaron C.
Crawford, Nigel P. S.
Molinolo, Alfredo
Jain, Alka
Fedarko, Neal S.
Young, Marian F.
WISP1/CCN4: A Potential Target for Inhibiting Prostate Cancer Growth and Spread to Bone
title WISP1/CCN4: A Potential Target for Inhibiting Prostate Cancer Growth and Spread to Bone
title_full WISP1/CCN4: A Potential Target for Inhibiting Prostate Cancer Growth and Spread to Bone
title_fullStr WISP1/CCN4: A Potential Target for Inhibiting Prostate Cancer Growth and Spread to Bone
title_full_unstemmed WISP1/CCN4: A Potential Target for Inhibiting Prostate Cancer Growth and Spread to Bone
title_short WISP1/CCN4: A Potential Target for Inhibiting Prostate Cancer Growth and Spread to Bone
title_sort wisp1/ccn4: a potential target for inhibiting prostate cancer growth and spread to bone
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3743748/
https://www.ncbi.nlm.nih.gov/pubmed/23977121
http://dx.doi.org/10.1371/journal.pone.0071709
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