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AB012. E-cadherin is down-regulated in benign prostate hyperplasia and required for tight junction formation and permeability barrier in prostatic epithelial cell monolayer

BACKGROUND: Prostate specific antigen (PSA), which is expressed by luminal epithelial cells in prostate was recently shown in the stromal compartment of benign prostatic hyperplasia (BPH). Since the stromal compartment does not express PSA, epithelial barrier integrity in BPH nodules might be compro...

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Autores principales: Li, Feng, Pascal, Laura E., Parwani, Anil, Dhir, Rajiv, Nelson, Joel B., Guo, Peng, He, Dalin, Wang, Zhou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AME Publishing Company 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6186698/
http://dx.doi.org/10.21037/tau.2018.AB012
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author Li, Feng
Pascal, Laura E.
Parwani, Anil
Dhir, Rajiv
Nelson, Joel B.
Guo, Peng
He, Dalin
Wang, Zhou
author_facet Li, Feng
Pascal, Laura E.
Parwani, Anil
Dhir, Rajiv
Nelson, Joel B.
Guo, Peng
He, Dalin
Wang, Zhou
author_sort Li, Feng
collection PubMed
description BACKGROUND: Prostate specific antigen (PSA), which is expressed by luminal epithelial cells in prostate was recently shown in the stromal compartment of benign prostatic hyperplasia (BPH). Since the stromal compartment does not express PSA, epithelial barrier integrity in BPH nodules might be compromised through loss of cell junctions, resulting in the leakage of PSA and other secreted proteins into the stromal compartment and subsequently promoting BPH pathogenesis. E-cadherin, an important cell junction regulator, is found to be down-regulated in epithelial cells in clinical BPH specimens. Whether E-cadherin downregulation affects epithelial barrier permeability is unknown. This research is aimed at examining epithelial barrier permeability change in BPH and exploring the potential role of E-cadherin in prostatic luminal epithelial permeability. METHODS: Explants derived from BPH patients were used to study epithelial barrier permeability in BPH nodules and its normal adjacent tissues by FITC-dextran assay. These specimens were also used to study tight junctions in BPH nodules and normal prostate tissues using transmission electron microscopy (TEM), and used to study the expression of junctional proteins ZO-1, ZO-2, ZO-3 and E-cadherin using immunofluorescence staining. The expression of E-cadherin in these specimens was also determined by immunohistochemistry staining. Normal prostatic luminal epithelial cell lines BHPrE-1 and BPH-1 were utilized to perform in vitro studies. Two independent siRNAs were used to knockdown E-cadherin expression. Permeability and tight junctions of cell monolayers in trans-well inserts with/without E-cadherin knockdown were evaluated by trans-epithelium electrical resistant (TER) assay and FITC-dextran trans-well assay, and TEM respectively. Expression of E-cadherin following siRNAs treatment was determined by reverse transcription-polymerase chain reaction (RT-PCR) and western-blot (WB). RESULTS: FITC-dextran assay detected an increased epithelial barrier permeability in BPH tissues but not in the adjacent normal prostate in explants derived from BPH patients. Tight junctions as well as junctional proteins were decreased in BPH tissues as compared to the normal prostate, suggesting the compromise of luminal epithelial barriers in BPH. E-cadherin was down-regulated and displayed a discontinuous pattern in BPH. E-cadherin expression was negatively correlated with prostatic epithelial monolayer permeability, and E-cadherin knockdown increased monolayer permeability and disrupted tight junction formation. CONCLUSIONS: Epithelial barrier permeability is increased in BPH and loss of E-cadherin is potentially an important underlying mechanism, suggesting blocking E-cadherin loss could be a potential approach to prevent or treat BPH.
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spelling pubmed-61866982018-10-26 AB012. E-cadherin is down-regulated in benign prostate hyperplasia and required for tight junction formation and permeability barrier in prostatic epithelial cell monolayer Li, Feng Pascal, Laura E. Parwani, Anil Dhir, Rajiv Nelson, Joel B. Guo, Peng He, Dalin Wang, Zhou Transl Androl Urol Podium Lecture BACKGROUND: Prostate specific antigen (PSA), which is expressed by luminal epithelial cells in prostate was recently shown in the stromal compartment of benign prostatic hyperplasia (BPH). Since the stromal compartment does not express PSA, epithelial barrier integrity in BPH nodules might be compromised through loss of cell junctions, resulting in the leakage of PSA and other secreted proteins into the stromal compartment and subsequently promoting BPH pathogenesis. E-cadherin, an important cell junction regulator, is found to be down-regulated in epithelial cells in clinical BPH specimens. Whether E-cadherin downregulation affects epithelial barrier permeability is unknown. This research is aimed at examining epithelial barrier permeability change in BPH and exploring the potential role of E-cadherin in prostatic luminal epithelial permeability. METHODS: Explants derived from BPH patients were used to study epithelial barrier permeability in BPH nodules and its normal adjacent tissues by FITC-dextran assay. These specimens were also used to study tight junctions in BPH nodules and normal prostate tissues using transmission electron microscopy (TEM), and used to study the expression of junctional proteins ZO-1, ZO-2, ZO-3 and E-cadherin using immunofluorescence staining. The expression of E-cadherin in these specimens was also determined by immunohistochemistry staining. Normal prostatic luminal epithelial cell lines BHPrE-1 and BPH-1 were utilized to perform in vitro studies. Two independent siRNAs were used to knockdown E-cadherin expression. Permeability and tight junctions of cell monolayers in trans-well inserts with/without E-cadherin knockdown were evaluated by trans-epithelium electrical resistant (TER) assay and FITC-dextran trans-well assay, and TEM respectively. Expression of E-cadherin following siRNAs treatment was determined by reverse transcription-polymerase chain reaction (RT-PCR) and western-blot (WB). RESULTS: FITC-dextran assay detected an increased epithelial barrier permeability in BPH tissues but not in the adjacent normal prostate in explants derived from BPH patients. Tight junctions as well as junctional proteins were decreased in BPH tissues as compared to the normal prostate, suggesting the compromise of luminal epithelial barriers in BPH. E-cadherin was down-regulated and displayed a discontinuous pattern in BPH. E-cadherin expression was negatively correlated with prostatic epithelial monolayer permeability, and E-cadherin knockdown increased monolayer permeability and disrupted tight junction formation. CONCLUSIONS: Epithelial barrier permeability is increased in BPH and loss of E-cadherin is potentially an important underlying mechanism, suggesting blocking E-cadherin loss could be a potential approach to prevent or treat BPH. AME Publishing Company 2018-09 /pmc/articles/PMC6186698/ http://dx.doi.org/10.21037/tau.2018.AB012 Text en 2018 Translational Andrology and Urology. All rights reserved.
spellingShingle Podium Lecture
Li, Feng
Pascal, Laura E.
Parwani, Anil
Dhir, Rajiv
Nelson, Joel B.
Guo, Peng
He, Dalin
Wang, Zhou
AB012. E-cadherin is down-regulated in benign prostate hyperplasia and required for tight junction formation and permeability barrier in prostatic epithelial cell monolayer
title AB012. E-cadherin is down-regulated in benign prostate hyperplasia and required for tight junction formation and permeability barrier in prostatic epithelial cell monolayer
title_full AB012. E-cadherin is down-regulated in benign prostate hyperplasia and required for tight junction formation and permeability barrier in prostatic epithelial cell monolayer
title_fullStr AB012. E-cadherin is down-regulated in benign prostate hyperplasia and required for tight junction formation and permeability barrier in prostatic epithelial cell monolayer
title_full_unstemmed AB012. E-cadherin is down-regulated in benign prostate hyperplasia and required for tight junction formation and permeability barrier in prostatic epithelial cell monolayer
title_short AB012. E-cadherin is down-regulated in benign prostate hyperplasia and required for tight junction formation and permeability barrier in prostatic epithelial cell monolayer
title_sort ab012. e-cadherin is down-regulated in benign prostate hyperplasia and required for tight junction formation and permeability barrier in prostatic epithelial cell monolayer
topic Podium Lecture
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6186698/
http://dx.doi.org/10.21037/tau.2018.AB012
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