Cargando…

Infiltrating CCR2(+) monocytes and their progenies, fibrocytes, contribute to colon fibrosis by inhibiting collagen degradation through the production of TIMP-1

Intestinal fibrosis is a serious complication in inflammatory bowel disease (IBD). Despite the remarkable success of recent anti-inflammatory therapies for IBD, incidence of intestinal fibrosis and need for bowel resection have not significantly changed. To clarify the contribution of haematopoietic...

Descripción completa

Detalles Bibliográficos
Autores principales: Kuroda, Naoki, Masuya, Masahiro, Tawara, Isao, Tsuboi, Junya, Yoneda, Misao, Nishikawa, Kenichiro, Kageyama, Yuki, Hachiya, Kensuke, Ohishi, Kohshi, Miwa, Hiroshi, Yamada, Reiko, Hamada, Yasuhiko, Tanaka, Kyosuke, Kato, Takuma, Takei, Yoshiyuki, Katayama, Naoyuki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6562037/
https://www.ncbi.nlm.nih.gov/pubmed/31189971
http://dx.doi.org/10.1038/s41598-019-45012-6
_version_ 1783426221422411776
author Kuroda, Naoki
Masuya, Masahiro
Tawara, Isao
Tsuboi, Junya
Yoneda, Misao
Nishikawa, Kenichiro
Kageyama, Yuki
Hachiya, Kensuke
Ohishi, Kohshi
Miwa, Hiroshi
Yamada, Reiko
Hamada, Yasuhiko
Tanaka, Kyosuke
Kato, Takuma
Takei, Yoshiyuki
Katayama, Naoyuki
author_facet Kuroda, Naoki
Masuya, Masahiro
Tawara, Isao
Tsuboi, Junya
Yoneda, Misao
Nishikawa, Kenichiro
Kageyama, Yuki
Hachiya, Kensuke
Ohishi, Kohshi
Miwa, Hiroshi
Yamada, Reiko
Hamada, Yasuhiko
Tanaka, Kyosuke
Kato, Takuma
Takei, Yoshiyuki
Katayama, Naoyuki
author_sort Kuroda, Naoki
collection PubMed
description Intestinal fibrosis is a serious complication in inflammatory bowel disease (IBD). Despite the remarkable success of recent anti-inflammatory therapies for IBD, incidence of intestinal fibrosis and need for bowel resection have not significantly changed. To clarify the contribution of haematopoietic-derived cells in intestinal fibrosis, we prepared bone marrow (BM) chimeric mice (chimeras), which were reconstituted with BM cells derived from enhanced green fluorescent protein (EGFP)-transgenic mice or CC chemokine receptor 2 (CCR2)-deficient mice. After 2 months of transplantation, BM chimeras were treated with azoxymethane/dextran sodium sulphate. During chronic inflammation, CCR2(+) BM-derived monocyte and fibrocyte infiltration into the colon and CC chemokine ligand 2 production increased, leading to colon fibrosis in EGFP BM chimeras. In CCR2-deficient BM chimeras, monocyte and fibrocyte numbers in the colonic lamina propria significantly decreased, and colon fibrosis was attenuated. In colon tissue, mRNA expression of tissue inhibitor of metalloproteinase (TIMP)-1 but not of collagen I, transforming growth factor-β1 or matrix metalloproteinases was significantly different between the two chimeras. CCR2(+) monocytes and fibrocytes showed high Timp1 mRNA expression. Our results suggest that infiltrating CCR2(+) monocytes and their progenies, fibrocytes, promote colon fibrosis by inhibiting collagen degradation through TIMP-1 production.
format Online
Article
Text
id pubmed-6562037
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-65620372019-06-20 Infiltrating CCR2(+) monocytes and their progenies, fibrocytes, contribute to colon fibrosis by inhibiting collagen degradation through the production of TIMP-1 Kuroda, Naoki Masuya, Masahiro Tawara, Isao Tsuboi, Junya Yoneda, Misao Nishikawa, Kenichiro Kageyama, Yuki Hachiya, Kensuke Ohishi, Kohshi Miwa, Hiroshi Yamada, Reiko Hamada, Yasuhiko Tanaka, Kyosuke Kato, Takuma Takei, Yoshiyuki Katayama, Naoyuki Sci Rep Article Intestinal fibrosis is a serious complication in inflammatory bowel disease (IBD). Despite the remarkable success of recent anti-inflammatory therapies for IBD, incidence of intestinal fibrosis and need for bowel resection have not significantly changed. To clarify the contribution of haematopoietic-derived cells in intestinal fibrosis, we prepared bone marrow (BM) chimeric mice (chimeras), which were reconstituted with BM cells derived from enhanced green fluorescent protein (EGFP)-transgenic mice or CC chemokine receptor 2 (CCR2)-deficient mice. After 2 months of transplantation, BM chimeras were treated with azoxymethane/dextran sodium sulphate. During chronic inflammation, CCR2(+) BM-derived monocyte and fibrocyte infiltration into the colon and CC chemokine ligand 2 production increased, leading to colon fibrosis in EGFP BM chimeras. In CCR2-deficient BM chimeras, monocyte and fibrocyte numbers in the colonic lamina propria significantly decreased, and colon fibrosis was attenuated. In colon tissue, mRNA expression of tissue inhibitor of metalloproteinase (TIMP)-1 but not of collagen I, transforming growth factor-β1 or matrix metalloproteinases was significantly different between the two chimeras. CCR2(+) monocytes and fibrocytes showed high Timp1 mRNA expression. Our results suggest that infiltrating CCR2(+) monocytes and their progenies, fibrocytes, promote colon fibrosis by inhibiting collagen degradation through TIMP-1 production. Nature Publishing Group UK 2019-06-12 /pmc/articles/PMC6562037/ /pubmed/31189971 http://dx.doi.org/10.1038/s41598-019-45012-6 Text en © The Author(s) 2019 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Kuroda, Naoki
Masuya, Masahiro
Tawara, Isao
Tsuboi, Junya
Yoneda, Misao
Nishikawa, Kenichiro
Kageyama, Yuki
Hachiya, Kensuke
Ohishi, Kohshi
Miwa, Hiroshi
Yamada, Reiko
Hamada, Yasuhiko
Tanaka, Kyosuke
Kato, Takuma
Takei, Yoshiyuki
Katayama, Naoyuki
Infiltrating CCR2(+) monocytes and their progenies, fibrocytes, contribute to colon fibrosis by inhibiting collagen degradation through the production of TIMP-1
title Infiltrating CCR2(+) monocytes and their progenies, fibrocytes, contribute to colon fibrosis by inhibiting collagen degradation through the production of TIMP-1
title_full Infiltrating CCR2(+) monocytes and their progenies, fibrocytes, contribute to colon fibrosis by inhibiting collagen degradation through the production of TIMP-1
title_fullStr Infiltrating CCR2(+) monocytes and their progenies, fibrocytes, contribute to colon fibrosis by inhibiting collagen degradation through the production of TIMP-1
title_full_unstemmed Infiltrating CCR2(+) monocytes and their progenies, fibrocytes, contribute to colon fibrosis by inhibiting collagen degradation through the production of TIMP-1
title_short Infiltrating CCR2(+) monocytes and their progenies, fibrocytes, contribute to colon fibrosis by inhibiting collagen degradation through the production of TIMP-1
title_sort infiltrating ccr2(+) monocytes and their progenies, fibrocytes, contribute to colon fibrosis by inhibiting collagen degradation through the production of timp-1
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6562037/
https://www.ncbi.nlm.nih.gov/pubmed/31189971
http://dx.doi.org/10.1038/s41598-019-45012-6
work_keys_str_mv AT kurodanaoki infiltratingccr2monocytesandtheirprogeniesfibrocytescontributetocolonfibrosisbyinhibitingcollagendegradationthroughtheproductionoftimp1
AT masuyamasahiro infiltratingccr2monocytesandtheirprogeniesfibrocytescontributetocolonfibrosisbyinhibitingcollagendegradationthroughtheproductionoftimp1
AT tawaraisao infiltratingccr2monocytesandtheirprogeniesfibrocytescontributetocolonfibrosisbyinhibitingcollagendegradationthroughtheproductionoftimp1
AT tsuboijunya infiltratingccr2monocytesandtheirprogeniesfibrocytescontributetocolonfibrosisbyinhibitingcollagendegradationthroughtheproductionoftimp1
AT yonedamisao infiltratingccr2monocytesandtheirprogeniesfibrocytescontributetocolonfibrosisbyinhibitingcollagendegradationthroughtheproductionoftimp1
AT nishikawakenichiro infiltratingccr2monocytesandtheirprogeniesfibrocytescontributetocolonfibrosisbyinhibitingcollagendegradationthroughtheproductionoftimp1
AT kageyamayuki infiltratingccr2monocytesandtheirprogeniesfibrocytescontributetocolonfibrosisbyinhibitingcollagendegradationthroughtheproductionoftimp1
AT hachiyakensuke infiltratingccr2monocytesandtheirprogeniesfibrocytescontributetocolonfibrosisbyinhibitingcollagendegradationthroughtheproductionoftimp1
AT ohishikohshi infiltratingccr2monocytesandtheirprogeniesfibrocytescontributetocolonfibrosisbyinhibitingcollagendegradationthroughtheproductionoftimp1
AT miwahiroshi infiltratingccr2monocytesandtheirprogeniesfibrocytescontributetocolonfibrosisbyinhibitingcollagendegradationthroughtheproductionoftimp1
AT yamadareiko infiltratingccr2monocytesandtheirprogeniesfibrocytescontributetocolonfibrosisbyinhibitingcollagendegradationthroughtheproductionoftimp1
AT hamadayasuhiko infiltratingccr2monocytesandtheirprogeniesfibrocytescontributetocolonfibrosisbyinhibitingcollagendegradationthroughtheproductionoftimp1
AT tanakakyosuke infiltratingccr2monocytesandtheirprogeniesfibrocytescontributetocolonfibrosisbyinhibitingcollagendegradationthroughtheproductionoftimp1
AT katotakuma infiltratingccr2monocytesandtheirprogeniesfibrocytescontributetocolonfibrosisbyinhibitingcollagendegradationthroughtheproductionoftimp1
AT takeiyoshiyuki infiltratingccr2monocytesandtheirprogeniesfibrocytescontributetocolonfibrosisbyinhibitingcollagendegradationthroughtheproductionoftimp1
AT katayamanaoyuki infiltratingccr2monocytesandtheirprogeniesfibrocytescontributetocolonfibrosisbyinhibitingcollagendegradationthroughtheproductionoftimp1