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TGFβs Modulate Permeability of the Blood-Epididymis Barrier in an In Vitro Model

The blood-epididymis barrier (BEB) is formed by epithelial tight junctions mediating selective permeability of the epididymal epithelium. Defective barrier function can disturb the balance of the epididymal milieu, which may result in infertility. The stroma of the epididymis contains high amounts o...

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Autores principales: Stammler, Angelika, Müller, Dieter, Tabuchi, Yoshiaki, Konrad, Lutz, Middendorff, Ralf
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3827453/
https://www.ncbi.nlm.nih.gov/pubmed/24236189
http://dx.doi.org/10.1371/journal.pone.0080611
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author Stammler, Angelika
Müller, Dieter
Tabuchi, Yoshiaki
Konrad, Lutz
Middendorff, Ralf
author_facet Stammler, Angelika
Müller, Dieter
Tabuchi, Yoshiaki
Konrad, Lutz
Middendorff, Ralf
author_sort Stammler, Angelika
collection PubMed
description The blood-epididymis barrier (BEB) is formed by epithelial tight junctions mediating selective permeability of the epididymal epithelium. Defective barrier function can disturb the balance of the epididymal milieu, which may result in infertility. The stroma of the epididymis contains high amounts of cytokines of the TGFβ family of unknown function. We screened possible effects of all three TGFβ isoforms on paracellular tightness in a BEB in vitro model based on the strongly polarized mouse epididymal epithelial MEPC5 cells in the transwell system. In this model we found a robust transepithelial electrical resistance (TER) of about 840 Ω x cm(2). Effects on the paracellular permeability were evaluated by two methods, TER and FITC-Dextran-based tracer diffusion assays. Both assays add up to corresponding results indicating a time-dependent disturbance of the BEB differentially for the three TGFβ isoforms (TGFβ3>TGFβ1>TGFβ2) in a TGFβ-recetor-1 kinase- and Smad-dependent manner. The tight junction protein claudin-1 was found to be reduced by the treatment with TGFβs, whereas occludin was not influenced. Epididymal epithelial cells are predominantly responsive to TGFβs from the basolateral side, suggesting that TGFβ may have an impact on the epididymal epithelium from the stroma in vivo. Our data show for the first time that TGFβs decrease paracellular tightness in epididymal epithelial cells, thus establishing a novel mechanism of regulation of BEB permeability, which is elementary for sperm maturation and male fertility.
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spelling pubmed-38274532013-11-14 TGFβs Modulate Permeability of the Blood-Epididymis Barrier in an In Vitro Model Stammler, Angelika Müller, Dieter Tabuchi, Yoshiaki Konrad, Lutz Middendorff, Ralf PLoS One Research Article The blood-epididymis barrier (BEB) is formed by epithelial tight junctions mediating selective permeability of the epididymal epithelium. Defective barrier function can disturb the balance of the epididymal milieu, which may result in infertility. The stroma of the epididymis contains high amounts of cytokines of the TGFβ family of unknown function. We screened possible effects of all three TGFβ isoforms on paracellular tightness in a BEB in vitro model based on the strongly polarized mouse epididymal epithelial MEPC5 cells in the transwell system. In this model we found a robust transepithelial electrical resistance (TER) of about 840 Ω x cm(2). Effects on the paracellular permeability were evaluated by two methods, TER and FITC-Dextran-based tracer diffusion assays. Both assays add up to corresponding results indicating a time-dependent disturbance of the BEB differentially for the three TGFβ isoforms (TGFβ3>TGFβ1>TGFβ2) in a TGFβ-recetor-1 kinase- and Smad-dependent manner. The tight junction protein claudin-1 was found to be reduced by the treatment with TGFβs, whereas occludin was not influenced. Epididymal epithelial cells are predominantly responsive to TGFβs from the basolateral side, suggesting that TGFβ may have an impact on the epididymal epithelium from the stroma in vivo. Our data show for the first time that TGFβs decrease paracellular tightness in epididymal epithelial cells, thus establishing a novel mechanism of regulation of BEB permeability, which is elementary for sperm maturation and male fertility. Public Library of Science 2013-11-13 /pmc/articles/PMC3827453/ /pubmed/24236189 http://dx.doi.org/10.1371/journal.pone.0080611 Text en © 2013 Stammler et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Stammler, Angelika
Müller, Dieter
Tabuchi, Yoshiaki
Konrad, Lutz
Middendorff, Ralf
TGFβs Modulate Permeability of the Blood-Epididymis Barrier in an In Vitro Model
title TGFβs Modulate Permeability of the Blood-Epididymis Barrier in an In Vitro Model
title_full TGFβs Modulate Permeability of the Blood-Epididymis Barrier in an In Vitro Model
title_fullStr TGFβs Modulate Permeability of the Blood-Epididymis Barrier in an In Vitro Model
title_full_unstemmed TGFβs Modulate Permeability of the Blood-Epididymis Barrier in an In Vitro Model
title_short TGFβs Modulate Permeability of the Blood-Epididymis Barrier in an In Vitro Model
title_sort tgfβs modulate permeability of the blood-epididymis barrier in an in vitro model
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3827453/
https://www.ncbi.nlm.nih.gov/pubmed/24236189
http://dx.doi.org/10.1371/journal.pone.0080611
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