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Precision-cut rat, mouse, and human intestinal slices as novel models for the early-onset of intestinal fibrosis

Intestinal fibrosis (IF) is a major complication of inflammatory bowel disease. IF research is limited by the lack of relevant in vitro and in vivo models. We evaluated precision-cut intestinal slices (PCIS) prepared from human, rat, and mouse intestine as ex vivo models mimicking the early-onset of...

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Autores principales: Pham, Bao Tung, van Haaften, Wouter Tobias, Oosterhuis, Dorenda, Nieken, Judith, de Graaf, Inge Anne Maria, Olinga, Peter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BlackWell Publishing Ltd 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4425951/
https://www.ncbi.nlm.nih.gov/pubmed/25907784
http://dx.doi.org/10.14814/phy2.12323
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author Pham, Bao Tung
van Haaften, Wouter Tobias
Oosterhuis, Dorenda
Nieken, Judith
de Graaf, Inge Anne Maria
Olinga, Peter
author_facet Pham, Bao Tung
van Haaften, Wouter Tobias
Oosterhuis, Dorenda
Nieken, Judith
de Graaf, Inge Anne Maria
Olinga, Peter
author_sort Pham, Bao Tung
collection PubMed
description Intestinal fibrosis (IF) is a major complication of inflammatory bowel disease. IF research is limited by the lack of relevant in vitro and in vivo models. We evaluated precision-cut intestinal slices (PCIS) prepared from human, rat, and mouse intestine as ex vivo models mimicking the early-onset of (human) IF. Precision-cut intestinal slices prepared from human (h), rat (r), and mouse (m) jejunum, were incubated up to 72 h, the viability of PCIS was assessed by ATP content and morphology, and the gene expression of several fibrosis markers was determined. The viability of rPCIS decreased after 24 h of incubation, whereas mPCIS and hPCIS were viable up to 72 h of culturing. Furthermore, during this period, gene expression of heat shock protein 47 and plasminogen activator inhibitor 1 increased in all PCIS in addition to augmented expression of synaptophysin in hPCIS, fibronectin (Fn2) and TGF-β1 in rPCIS, and Fn2 and connective tissue growth factor (Ctgf) in mPCIS. Addition of TGF-β1 to rPCIS or mPCIS induced the gene expression of the fibrosis markers Pro-collagen1a1, Fn2, and Ctgf in both species. However, none of the fibrosis markers was further elevated in hPCIS. We successfully developed a novel ex vivo model that can mimic the early-onset of fibrosis in the intestine using human, rat, and mouse PCIS. Furthermore, in rat and mouse PCIS, TGF-β1 was able to even further increase the gene expression of fibrosis markers. This indicates that PCIS can be used as a model for the early-onset of IF.
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spelling pubmed-44259512015-05-14 Precision-cut rat, mouse, and human intestinal slices as novel models for the early-onset of intestinal fibrosis Pham, Bao Tung van Haaften, Wouter Tobias Oosterhuis, Dorenda Nieken, Judith de Graaf, Inge Anne Maria Olinga, Peter Physiol Rep Original Research Intestinal fibrosis (IF) is a major complication of inflammatory bowel disease. IF research is limited by the lack of relevant in vitro and in vivo models. We evaluated precision-cut intestinal slices (PCIS) prepared from human, rat, and mouse intestine as ex vivo models mimicking the early-onset of (human) IF. Precision-cut intestinal slices prepared from human (h), rat (r), and mouse (m) jejunum, were incubated up to 72 h, the viability of PCIS was assessed by ATP content and morphology, and the gene expression of several fibrosis markers was determined. The viability of rPCIS decreased after 24 h of incubation, whereas mPCIS and hPCIS were viable up to 72 h of culturing. Furthermore, during this period, gene expression of heat shock protein 47 and plasminogen activator inhibitor 1 increased in all PCIS in addition to augmented expression of synaptophysin in hPCIS, fibronectin (Fn2) and TGF-β1 in rPCIS, and Fn2 and connective tissue growth factor (Ctgf) in mPCIS. Addition of TGF-β1 to rPCIS or mPCIS induced the gene expression of the fibrosis markers Pro-collagen1a1, Fn2, and Ctgf in both species. However, none of the fibrosis markers was further elevated in hPCIS. We successfully developed a novel ex vivo model that can mimic the early-onset of fibrosis in the intestine using human, rat, and mouse PCIS. Furthermore, in rat and mouse PCIS, TGF-β1 was able to even further increase the gene expression of fibrosis markers. This indicates that PCIS can be used as a model for the early-onset of IF. BlackWell Publishing Ltd 2015-04-23 /pmc/articles/PMC4425951/ /pubmed/25907784 http://dx.doi.org/10.14814/phy2.12323 Text en © 2015 The Authors. Physiological Reports published by Wiley Periodicals, Inc. on behalf of the American Physiological Society and The Physiological Society. http://creativecommons.org/licenses/by/4.0/ This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Pham, Bao Tung
van Haaften, Wouter Tobias
Oosterhuis, Dorenda
Nieken, Judith
de Graaf, Inge Anne Maria
Olinga, Peter
Precision-cut rat, mouse, and human intestinal slices as novel models for the early-onset of intestinal fibrosis
title Precision-cut rat, mouse, and human intestinal slices as novel models for the early-onset of intestinal fibrosis
title_full Precision-cut rat, mouse, and human intestinal slices as novel models for the early-onset of intestinal fibrosis
title_fullStr Precision-cut rat, mouse, and human intestinal slices as novel models for the early-onset of intestinal fibrosis
title_full_unstemmed Precision-cut rat, mouse, and human intestinal slices as novel models for the early-onset of intestinal fibrosis
title_short Precision-cut rat, mouse, and human intestinal slices as novel models for the early-onset of intestinal fibrosis
title_sort precision-cut rat, mouse, and human intestinal slices as novel models for the early-onset of intestinal fibrosis
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4425951/
https://www.ncbi.nlm.nih.gov/pubmed/25907784
http://dx.doi.org/10.14814/phy2.12323
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