Cargando…

Thrombin modifies growth, proliferation and apoptosis of human colon organoids: a protease‐activated receptor 1‐ and protease‐activated receptor 4‐dependent mechanism

BACKGROUND AND PURPOSE: Thrombin is massively released upon tissue damage associated with bleeding or chronic inflammation. The effects of this thrombin on tissue regrowth and repair has been scarcely addressed and only in cancer cell lines. Hence, the purpose of the present study was to determine t...

Descripción completa

Detalles Bibliográficos
Autores principales: Sébert, Morgane, Denadai‐Souza, Alexandre, Quaranta, Muriel, Racaud‐Sultan, Claire, Chabot, Sophie, Lluel, Philippe, Monjotin, Nicolas, Alric, Laurent, Portier, Guillaume, Kirzin, Sylvain, Bonnet, Delphine, Ferrand, Audrey, Vergnolle, Nathalie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6109216/
https://www.ncbi.nlm.nih.gov/pubmed/29959891
http://dx.doi.org/10.1111/bph.14430
_version_ 1783350284930514944
author Sébert, Morgane
Denadai‐Souza, Alexandre
Quaranta, Muriel
Racaud‐Sultan, Claire
Chabot, Sophie
Lluel, Philippe
Monjotin, Nicolas
Alric, Laurent
Portier, Guillaume
Kirzin, Sylvain
Bonnet, Delphine
Ferrand, Audrey
Vergnolle, Nathalie
author_facet Sébert, Morgane
Denadai‐Souza, Alexandre
Quaranta, Muriel
Racaud‐Sultan, Claire
Chabot, Sophie
Lluel, Philippe
Monjotin, Nicolas
Alric, Laurent
Portier, Guillaume
Kirzin, Sylvain
Bonnet, Delphine
Ferrand, Audrey
Vergnolle, Nathalie
author_sort Sébert, Morgane
collection PubMed
description BACKGROUND AND PURPOSE: Thrombin is massively released upon tissue damage associated with bleeding or chronic inflammation. The effects of this thrombin on tissue regrowth and repair has been scarcely addressed and only in cancer cell lines. Hence, the purpose of the present study was to determine thrombin's pharmacological effects on human intestinal epithelium growth, proliferation and apoptosis, using three‐dimensional cultures of human colon organoids. EXPERIMENTAL APPROACH: Crypts were isolated from human colonic resections and cultured for 6 days, forming human colon organoids. Cultured organoids were exposed to 10 and 50 mU·mL(−1) of thrombin, in the presence or not of protease‐activated receptor (PAR) antagonists. Organoid morphology, metabolism, proliferation and apoptosis were followed. KEY RESULTS: Thrombin favoured organoid maturation leading to a decreased number of immature cystic structures and a concomitant increased number of larger structures releasing cell debris and apoptotic cells. The size of budding structures, metabolic activity and proliferation were significantly reduced in organoid cultures exposed to thrombin, while apoptosis was dramatically increased. Both PAR1 and PAR4 antagonists inhibited apoptosis regardless of thrombin doses. Thrombin‐induced inhibition of proliferation and metabolic activity were reversed by PAR4 antagonist for thrombin's lowest dose and by PAR1 antagonist for thrombin's highest dose. CONCLUSIONS AND IMPLICATIONS: Overall, our data suggest that the presence of thrombin in the vicinity of human colon epithelial cells favours their maturation at the expense of their regenerative capacities. Our data point to thrombin and its two receptors PAR1 and PAR4 as potential molecular targets for epithelial repair therapies.
format Online
Article
Text
id pubmed-6109216
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-61092162018-08-28 Thrombin modifies growth, proliferation and apoptosis of human colon organoids: a protease‐activated receptor 1‐ and protease‐activated receptor 4‐dependent mechanism Sébert, Morgane Denadai‐Souza, Alexandre Quaranta, Muriel Racaud‐Sultan, Claire Chabot, Sophie Lluel, Philippe Monjotin, Nicolas Alric, Laurent Portier, Guillaume Kirzin, Sylvain Bonnet, Delphine Ferrand, Audrey Vergnolle, Nathalie Br J Pharmacol Research Papers BACKGROUND AND PURPOSE: Thrombin is massively released upon tissue damage associated with bleeding or chronic inflammation. The effects of this thrombin on tissue regrowth and repair has been scarcely addressed and only in cancer cell lines. Hence, the purpose of the present study was to determine thrombin's pharmacological effects on human intestinal epithelium growth, proliferation and apoptosis, using three‐dimensional cultures of human colon organoids. EXPERIMENTAL APPROACH: Crypts were isolated from human colonic resections and cultured for 6 days, forming human colon organoids. Cultured organoids were exposed to 10 and 50 mU·mL(−1) of thrombin, in the presence or not of protease‐activated receptor (PAR) antagonists. Organoid morphology, metabolism, proliferation and apoptosis were followed. KEY RESULTS: Thrombin favoured organoid maturation leading to a decreased number of immature cystic structures and a concomitant increased number of larger structures releasing cell debris and apoptotic cells. The size of budding structures, metabolic activity and proliferation were significantly reduced in organoid cultures exposed to thrombin, while apoptosis was dramatically increased. Both PAR1 and PAR4 antagonists inhibited apoptosis regardless of thrombin doses. Thrombin‐induced inhibition of proliferation and metabolic activity were reversed by PAR4 antagonist for thrombin's lowest dose and by PAR1 antagonist for thrombin's highest dose. CONCLUSIONS AND IMPLICATIONS: Overall, our data suggest that the presence of thrombin in the vicinity of human colon epithelial cells favours their maturation at the expense of their regenerative capacities. Our data point to thrombin and its two receptors PAR1 and PAR4 as potential molecular targets for epithelial repair therapies. John Wiley and Sons Inc. 2018-08-07 2018-09 /pmc/articles/PMC6109216/ /pubmed/29959891 http://dx.doi.org/10.1111/bph.14430 Text en © 2018 The Authors. British Journal of Pharmacology published by John Wiley & Sons Ltd on behalf of British Pharmacological Society. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Research Papers
Sébert, Morgane
Denadai‐Souza, Alexandre
Quaranta, Muriel
Racaud‐Sultan, Claire
Chabot, Sophie
Lluel, Philippe
Monjotin, Nicolas
Alric, Laurent
Portier, Guillaume
Kirzin, Sylvain
Bonnet, Delphine
Ferrand, Audrey
Vergnolle, Nathalie
Thrombin modifies growth, proliferation and apoptosis of human colon organoids: a protease‐activated receptor 1‐ and protease‐activated receptor 4‐dependent mechanism
title Thrombin modifies growth, proliferation and apoptosis of human colon organoids: a protease‐activated receptor 1‐ and protease‐activated receptor 4‐dependent mechanism
title_full Thrombin modifies growth, proliferation and apoptosis of human colon organoids: a protease‐activated receptor 1‐ and protease‐activated receptor 4‐dependent mechanism
title_fullStr Thrombin modifies growth, proliferation and apoptosis of human colon organoids: a protease‐activated receptor 1‐ and protease‐activated receptor 4‐dependent mechanism
title_full_unstemmed Thrombin modifies growth, proliferation and apoptosis of human colon organoids: a protease‐activated receptor 1‐ and protease‐activated receptor 4‐dependent mechanism
title_short Thrombin modifies growth, proliferation and apoptosis of human colon organoids: a protease‐activated receptor 1‐ and protease‐activated receptor 4‐dependent mechanism
title_sort thrombin modifies growth, proliferation and apoptosis of human colon organoids: a protease‐activated receptor 1‐ and protease‐activated receptor 4‐dependent mechanism
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6109216/
https://www.ncbi.nlm.nih.gov/pubmed/29959891
http://dx.doi.org/10.1111/bph.14430
work_keys_str_mv AT sebertmorgane thrombinmodifiesgrowthproliferationandapoptosisofhumancolonorganoidsaproteaseactivatedreceptor1andproteaseactivatedreceptor4dependentmechanism
AT denadaisouzaalexandre thrombinmodifiesgrowthproliferationandapoptosisofhumancolonorganoidsaproteaseactivatedreceptor1andproteaseactivatedreceptor4dependentmechanism
AT quarantamuriel thrombinmodifiesgrowthproliferationandapoptosisofhumancolonorganoidsaproteaseactivatedreceptor1andproteaseactivatedreceptor4dependentmechanism
AT racaudsultanclaire thrombinmodifiesgrowthproliferationandapoptosisofhumancolonorganoidsaproteaseactivatedreceptor1andproteaseactivatedreceptor4dependentmechanism
AT chabotsophie thrombinmodifiesgrowthproliferationandapoptosisofhumancolonorganoidsaproteaseactivatedreceptor1andproteaseactivatedreceptor4dependentmechanism
AT lluelphilippe thrombinmodifiesgrowthproliferationandapoptosisofhumancolonorganoidsaproteaseactivatedreceptor1andproteaseactivatedreceptor4dependentmechanism
AT monjotinnicolas thrombinmodifiesgrowthproliferationandapoptosisofhumancolonorganoidsaproteaseactivatedreceptor1andproteaseactivatedreceptor4dependentmechanism
AT alriclaurent thrombinmodifiesgrowthproliferationandapoptosisofhumancolonorganoidsaproteaseactivatedreceptor1andproteaseactivatedreceptor4dependentmechanism
AT portierguillaume thrombinmodifiesgrowthproliferationandapoptosisofhumancolonorganoidsaproteaseactivatedreceptor1andproteaseactivatedreceptor4dependentmechanism
AT kirzinsylvain thrombinmodifiesgrowthproliferationandapoptosisofhumancolonorganoidsaproteaseactivatedreceptor1andproteaseactivatedreceptor4dependentmechanism
AT bonnetdelphine thrombinmodifiesgrowthproliferationandapoptosisofhumancolonorganoidsaproteaseactivatedreceptor1andproteaseactivatedreceptor4dependentmechanism
AT ferrandaudrey thrombinmodifiesgrowthproliferationandapoptosisofhumancolonorganoidsaproteaseactivatedreceptor1andproteaseactivatedreceptor4dependentmechanism
AT vergnollenathalie thrombinmodifiesgrowthproliferationandapoptosisofhumancolonorganoidsaproteaseactivatedreceptor1andproteaseactivatedreceptor4dependentmechanism