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Immunohistochemistry using an antibody to unphosphorylated connexin 43 to identify human myometrial interstitial cells

BACKGROUND: Myometrial smooth myocytes contract as a result of electrical signalling via a process called excitation-contraction coupling. This process is understood in great detail at the cellular level but the generation and coordination of electrical signals throughout the myometrium are incomple...

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Autores principales: Hutchings, Graham, Gevaert, Thomas, Deprest, Jan, Roskams, Tania, Van Lommel, Alfons, Nilius, Bernd, De Ridder, Dirk
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2553078/
https://www.ncbi.nlm.nih.gov/pubmed/18796153
http://dx.doi.org/10.1186/1477-7827-6-43
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author Hutchings, Graham
Gevaert, Thomas
Deprest, Jan
Roskams, Tania
Van Lommel, Alfons
Nilius, Bernd
De Ridder, Dirk
author_facet Hutchings, Graham
Gevaert, Thomas
Deprest, Jan
Roskams, Tania
Van Lommel, Alfons
Nilius, Bernd
De Ridder, Dirk
author_sort Hutchings, Graham
collection PubMed
description BACKGROUND: Myometrial smooth myocytes contract as a result of electrical signalling via a process called excitation-contraction coupling. This process is understood in great detail at the cellular level but the generation and coordination of electrical signals throughout the myometrium are incompletely understood. Recent evidence concerning the vital role of interstitial cells of Cajal in tissue-level signalling in gastrointestinal tract, and the presence of similar cells in urinary tract smooth muscle may be relevant for future research into myometrial contractility but there remains a lack of evidence regarding these cells in the myometrium. METHODS: Single stain immunohistochemical and double stain immunofluorescence techniques visualised antibodies directed against total connexin 43, unphosphorylated connexin 43, KIT, alpha-SMA and prolyl 4-hydroxylase in myometrial biopsies from 26 women representing all stages of reproductive life. RESULTS: Myometrial smooth myocytes from term uterine biopsies expressed connexin 43 in a punctate pattern typical of gap junctions. However, on the boundaries of the smooth muscle bundles, cells were present with a more uniform staining pattern. These cells continued to possess the same staining characteristics in non-pregnant biopsies whereas the smooth myocytes no longer expressed connexin 43. Immunohistochemistry using an antibody directed against connexin 43 unphosphorylated at serine 368 showed that it is this isoform that is expressed continually by these cells. Double-stain immunofluorescence for unphosphorylated connexin 43 and KIT, an established marker for interstitial cells, revealed a complete match indicating these cells are myometrial interstitial cells (MICs). MICs had elongated cell processes and were located mainly on the surface of the smooth muscle bundles and within the fibromuscular septum. No particular arrangement of cells as plexuses was observed. Antibody to prolyl 4-hydroxylase identified fibroblasts as separate from MICs. CONCLUSION: MICs are identified consistently on the boundaries of smooth muscle bundles in both the pregnant and non-pregnant uterus and are distinct from fibroblasts. The uniform distribution of connexin 43 on the cell membrane of MICs, rather than localisation in gap junction plaques, may represent the presence of connexin hemichannels. This antibody specificity may aid future study of this potentially important cell type.
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spelling pubmed-25530782008-09-25 Immunohistochemistry using an antibody to unphosphorylated connexin 43 to identify human myometrial interstitial cells Hutchings, Graham Gevaert, Thomas Deprest, Jan Roskams, Tania Van Lommel, Alfons Nilius, Bernd De Ridder, Dirk Reprod Biol Endocrinol Research BACKGROUND: Myometrial smooth myocytes contract as a result of electrical signalling via a process called excitation-contraction coupling. This process is understood in great detail at the cellular level but the generation and coordination of electrical signals throughout the myometrium are incompletely understood. Recent evidence concerning the vital role of interstitial cells of Cajal in tissue-level signalling in gastrointestinal tract, and the presence of similar cells in urinary tract smooth muscle may be relevant for future research into myometrial contractility but there remains a lack of evidence regarding these cells in the myometrium. METHODS: Single stain immunohistochemical and double stain immunofluorescence techniques visualised antibodies directed against total connexin 43, unphosphorylated connexin 43, KIT, alpha-SMA and prolyl 4-hydroxylase in myometrial biopsies from 26 women representing all stages of reproductive life. RESULTS: Myometrial smooth myocytes from term uterine biopsies expressed connexin 43 in a punctate pattern typical of gap junctions. However, on the boundaries of the smooth muscle bundles, cells were present with a more uniform staining pattern. These cells continued to possess the same staining characteristics in non-pregnant biopsies whereas the smooth myocytes no longer expressed connexin 43. Immunohistochemistry using an antibody directed against connexin 43 unphosphorylated at serine 368 showed that it is this isoform that is expressed continually by these cells. Double-stain immunofluorescence for unphosphorylated connexin 43 and KIT, an established marker for interstitial cells, revealed a complete match indicating these cells are myometrial interstitial cells (MICs). MICs had elongated cell processes and were located mainly on the surface of the smooth muscle bundles and within the fibromuscular septum. No particular arrangement of cells as plexuses was observed. Antibody to prolyl 4-hydroxylase identified fibroblasts as separate from MICs. CONCLUSION: MICs are identified consistently on the boundaries of smooth muscle bundles in both the pregnant and non-pregnant uterus and are distinct from fibroblasts. The uniform distribution of connexin 43 on the cell membrane of MICs, rather than localisation in gap junction plaques, may represent the presence of connexin hemichannels. This antibody specificity may aid future study of this potentially important cell type. BioMed Central 2008-09-16 /pmc/articles/PMC2553078/ /pubmed/18796153 http://dx.doi.org/10.1186/1477-7827-6-43 Text en Copyright © 2008 Hutchings et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Hutchings, Graham
Gevaert, Thomas
Deprest, Jan
Roskams, Tania
Van Lommel, Alfons
Nilius, Bernd
De Ridder, Dirk
Immunohistochemistry using an antibody to unphosphorylated connexin 43 to identify human myometrial interstitial cells
title Immunohistochemistry using an antibody to unphosphorylated connexin 43 to identify human myometrial interstitial cells
title_full Immunohistochemistry using an antibody to unphosphorylated connexin 43 to identify human myometrial interstitial cells
title_fullStr Immunohistochemistry using an antibody to unphosphorylated connexin 43 to identify human myometrial interstitial cells
title_full_unstemmed Immunohistochemistry using an antibody to unphosphorylated connexin 43 to identify human myometrial interstitial cells
title_short Immunohistochemistry using an antibody to unphosphorylated connexin 43 to identify human myometrial interstitial cells
title_sort immunohistochemistry using an antibody to unphosphorylated connexin 43 to identify human myometrial interstitial cells
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2553078/
https://www.ncbi.nlm.nih.gov/pubmed/18796153
http://dx.doi.org/10.1186/1477-7827-6-43
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