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Osteopontin Deficiency Accelerates Spontaneous Colitis in Mice with Disrupted Gut Microbiota and Macrophage Phagocytic Activity

BACKGROUND: Osteopontin (OPN) is a multifunctional protein expressed in a variety of tissues and cells. Recent studies revealed increased OPN expression in the inflamed intestinal tissues of patients with inflammatory bowel disease (IBD). The role of OPN in the pathophysiology of IBD, however, remai...

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Autores principales: Toyonaga, Takahiko, Nakase, Hiroshi, Ueno, Satoru, Matsuura, Minoru, Yoshino, Takuya, Honzawa, Yusuke, Itou, Ayako, Namba, Kazuyoshi, Minami, Naoki, Yamada, Satoshi, Koshikawa, Yorimitsu, Uede, Toshimitsu, Chiba, Tsutomu, Okazaki, Kazuichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4537118/
https://www.ncbi.nlm.nih.gov/pubmed/26274807
http://dx.doi.org/10.1371/journal.pone.0135552
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author Toyonaga, Takahiko
Nakase, Hiroshi
Ueno, Satoru
Matsuura, Minoru
Yoshino, Takuya
Honzawa, Yusuke
Itou, Ayako
Namba, Kazuyoshi
Minami, Naoki
Yamada, Satoshi
Koshikawa, Yorimitsu
Uede, Toshimitsu
Chiba, Tsutomu
Okazaki, Kazuichi
author_facet Toyonaga, Takahiko
Nakase, Hiroshi
Ueno, Satoru
Matsuura, Minoru
Yoshino, Takuya
Honzawa, Yusuke
Itou, Ayako
Namba, Kazuyoshi
Minami, Naoki
Yamada, Satoshi
Koshikawa, Yorimitsu
Uede, Toshimitsu
Chiba, Tsutomu
Okazaki, Kazuichi
author_sort Toyonaga, Takahiko
collection PubMed
description BACKGROUND: Osteopontin (OPN) is a multifunctional protein expressed in a variety of tissues and cells. Recent studies revealed increased OPN expression in the inflamed intestinal tissues of patients with inflammatory bowel disease (IBD). The role of OPN in the pathophysiology of IBD, however, remains unclear. AIMS: To investigate the role of OPN in the development of intestinal inflammation using a murine model of IBD, interleukin-10 knock out (IL-10 KO) mice. METHODS: We compared the development of colitis between IL-10 KO and OPN/IL-10 double KO (DKO) mice. OPN expression in the colonic tissues of IL-10 KO mice was examined by fluorescence in situ hybridization (FISH) analysis. Enteric microbiota were compared between IL-10 KO and OPN/IL-10 DKO mice by terminal restriction fragment length polymorphism analysis. The effect of OPN on macrophage phagocytic function was evaluated by phagocytosis assay. RESULTS: OPN/IL-10 DKO mice had an accelerated onset of colitis compared to IL-10 KO mice. FISH analysis revealed enhanced OPN synthesis in the colonic epithelial cells of IL-10 KO mice. OPN/IL-10 DKO mice had a distinctly different enteric bacterial profile with a significantly lower abundance of Clostridium subcluster XIVa and a greater abundance of Clostridium cluster XVIII compared to IL-10 KO mice. Intracellular OPN deletion in macrophages impaired phagocytosis of fluorescence particle-conjugated Escherichia coli in vitro. Exogenous OPN enhanced phagocytosis by OPN-deleted macrophages when administered at doses of 1 to 100 ng/ml, but not 1000 ng/ml. CONCLUSIONS: OPN deficiency accelerated the spontaneous development of colitis in mice with disrupted gut microbiota and macrophage phagocytic activity.
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spelling pubmed-45371182015-08-20 Osteopontin Deficiency Accelerates Spontaneous Colitis in Mice with Disrupted Gut Microbiota and Macrophage Phagocytic Activity Toyonaga, Takahiko Nakase, Hiroshi Ueno, Satoru Matsuura, Minoru Yoshino, Takuya Honzawa, Yusuke Itou, Ayako Namba, Kazuyoshi Minami, Naoki Yamada, Satoshi Koshikawa, Yorimitsu Uede, Toshimitsu Chiba, Tsutomu Okazaki, Kazuichi PLoS One Research Article BACKGROUND: Osteopontin (OPN) is a multifunctional protein expressed in a variety of tissues and cells. Recent studies revealed increased OPN expression in the inflamed intestinal tissues of patients with inflammatory bowel disease (IBD). The role of OPN in the pathophysiology of IBD, however, remains unclear. AIMS: To investigate the role of OPN in the development of intestinal inflammation using a murine model of IBD, interleukin-10 knock out (IL-10 KO) mice. METHODS: We compared the development of colitis between IL-10 KO and OPN/IL-10 double KO (DKO) mice. OPN expression in the colonic tissues of IL-10 KO mice was examined by fluorescence in situ hybridization (FISH) analysis. Enteric microbiota were compared between IL-10 KO and OPN/IL-10 DKO mice by terminal restriction fragment length polymorphism analysis. The effect of OPN on macrophage phagocytic function was evaluated by phagocytosis assay. RESULTS: OPN/IL-10 DKO mice had an accelerated onset of colitis compared to IL-10 KO mice. FISH analysis revealed enhanced OPN synthesis in the colonic epithelial cells of IL-10 KO mice. OPN/IL-10 DKO mice had a distinctly different enteric bacterial profile with a significantly lower abundance of Clostridium subcluster XIVa and a greater abundance of Clostridium cluster XVIII compared to IL-10 KO mice. Intracellular OPN deletion in macrophages impaired phagocytosis of fluorescence particle-conjugated Escherichia coli in vitro. Exogenous OPN enhanced phagocytosis by OPN-deleted macrophages when administered at doses of 1 to 100 ng/ml, but not 1000 ng/ml. CONCLUSIONS: OPN deficiency accelerated the spontaneous development of colitis in mice with disrupted gut microbiota and macrophage phagocytic activity. Public Library of Science 2015-08-14 /pmc/articles/PMC4537118/ /pubmed/26274807 http://dx.doi.org/10.1371/journal.pone.0135552 Text en © 2015 Toyonaga 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
Toyonaga, Takahiko
Nakase, Hiroshi
Ueno, Satoru
Matsuura, Minoru
Yoshino, Takuya
Honzawa, Yusuke
Itou, Ayako
Namba, Kazuyoshi
Minami, Naoki
Yamada, Satoshi
Koshikawa, Yorimitsu
Uede, Toshimitsu
Chiba, Tsutomu
Okazaki, Kazuichi
Osteopontin Deficiency Accelerates Spontaneous Colitis in Mice with Disrupted Gut Microbiota and Macrophage Phagocytic Activity
title Osteopontin Deficiency Accelerates Spontaneous Colitis in Mice with Disrupted Gut Microbiota and Macrophage Phagocytic Activity
title_full Osteopontin Deficiency Accelerates Spontaneous Colitis in Mice with Disrupted Gut Microbiota and Macrophage Phagocytic Activity
title_fullStr Osteopontin Deficiency Accelerates Spontaneous Colitis in Mice with Disrupted Gut Microbiota and Macrophage Phagocytic Activity
title_full_unstemmed Osteopontin Deficiency Accelerates Spontaneous Colitis in Mice with Disrupted Gut Microbiota and Macrophage Phagocytic Activity
title_short Osteopontin Deficiency Accelerates Spontaneous Colitis in Mice with Disrupted Gut Microbiota and Macrophage Phagocytic Activity
title_sort osteopontin deficiency accelerates spontaneous colitis in mice with disrupted gut microbiota and macrophage phagocytic activity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4537118/
https://www.ncbi.nlm.nih.gov/pubmed/26274807
http://dx.doi.org/10.1371/journal.pone.0135552
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