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Reg Gene Expression in Periosteum after Fracture and Its In Vitro Induction Triggered by IL-6

The periosteum is a thin membrane that surrounds the outer surface of bones and participates in fracture healing. However, the molecular signals that trigger/initiate the periosteal reaction are not well established. We fractured the rat femoral bone at the diaphysis and fixed it with an intramedull...

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Autores principales: Tohma, Yasuaki, Dohi, Yoshiko, Shobatake, Ryogo, Uchiyama, Tomoko, Takeda, Maiko, Takasawa, Shin, Tanaka, Yasuhito, Ohgushi, Hajime
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5713227/
https://www.ncbi.nlm.nih.gov/pubmed/29077068
http://dx.doi.org/10.3390/ijms18112257
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author Tohma, Yasuaki
Dohi, Yoshiko
Shobatake, Ryogo
Uchiyama, Tomoko
Takeda, Maiko
Takasawa, Shin
Tanaka, Yasuhito
Ohgushi, Hajime
author_facet Tohma, Yasuaki
Dohi, Yoshiko
Shobatake, Ryogo
Uchiyama, Tomoko
Takeda, Maiko
Takasawa, Shin
Tanaka, Yasuhito
Ohgushi, Hajime
author_sort Tohma, Yasuaki
collection PubMed
description The periosteum is a thin membrane that surrounds the outer surface of bones and participates in fracture healing. However, the molecular signals that trigger/initiate the periosteal reaction are not well established. We fractured the rat femoral bone at the diaphysis and fixed it with an intramedullary inserted wire, and the expression of regenerating gene (Reg) I, which encodes a tissue regeneration/growth factor, was analyzed. Neither bone/marrow nor muscle showed Reg I gene expression before or after the fracture. By contrast, the periosteum showed an elevated expression after the fracture, thereby confirming the localization of Reg I expression exclusively in the periosteum around the fractured areas. Expression of the Reg family increased after the fracture, followed by a decrease to basal levels by six weeks, when the fracture had almost healed. In vitro cultures of periosteal cells showed no Reg I expression, but the addition of IL-6 significantly induced Reg I gene expression. The addition of IL-6 also increased the cell number and reduced pro-apoptotic gene expression of Bim. The increased cell proliferation and reduction in Bim gene expression were abolished by transfection with Reg I siRNA, indicating that these IL-6-dependent effects require the Reg I gene expression. These results indicate the involvement of the IL-6/Reg pathway in the osteogenic response of the periosteum, which leads to fracture repair.
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spelling pubmed-57132272017-12-07 Reg Gene Expression in Periosteum after Fracture and Its In Vitro Induction Triggered by IL-6 Tohma, Yasuaki Dohi, Yoshiko Shobatake, Ryogo Uchiyama, Tomoko Takeda, Maiko Takasawa, Shin Tanaka, Yasuhito Ohgushi, Hajime Int J Mol Sci Article The periosteum is a thin membrane that surrounds the outer surface of bones and participates in fracture healing. However, the molecular signals that trigger/initiate the periosteal reaction are not well established. We fractured the rat femoral bone at the diaphysis and fixed it with an intramedullary inserted wire, and the expression of regenerating gene (Reg) I, which encodes a tissue regeneration/growth factor, was analyzed. Neither bone/marrow nor muscle showed Reg I gene expression before or after the fracture. By contrast, the periosteum showed an elevated expression after the fracture, thereby confirming the localization of Reg I expression exclusively in the periosteum around the fractured areas. Expression of the Reg family increased after the fracture, followed by a decrease to basal levels by six weeks, when the fracture had almost healed. In vitro cultures of periosteal cells showed no Reg I expression, but the addition of IL-6 significantly induced Reg I gene expression. The addition of IL-6 also increased the cell number and reduced pro-apoptotic gene expression of Bim. The increased cell proliferation and reduction in Bim gene expression were abolished by transfection with Reg I siRNA, indicating that these IL-6-dependent effects require the Reg I gene expression. These results indicate the involvement of the IL-6/Reg pathway in the osteogenic response of the periosteum, which leads to fracture repair. MDPI 2017-10-27 /pmc/articles/PMC5713227/ /pubmed/29077068 http://dx.doi.org/10.3390/ijms18112257 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tohma, Yasuaki
Dohi, Yoshiko
Shobatake, Ryogo
Uchiyama, Tomoko
Takeda, Maiko
Takasawa, Shin
Tanaka, Yasuhito
Ohgushi, Hajime
Reg Gene Expression in Periosteum after Fracture and Its In Vitro Induction Triggered by IL-6
title Reg Gene Expression in Periosteum after Fracture and Its In Vitro Induction Triggered by IL-6
title_full Reg Gene Expression in Periosteum after Fracture and Its In Vitro Induction Triggered by IL-6
title_fullStr Reg Gene Expression in Periosteum after Fracture and Its In Vitro Induction Triggered by IL-6
title_full_unstemmed Reg Gene Expression in Periosteum after Fracture and Its In Vitro Induction Triggered by IL-6
title_short Reg Gene Expression in Periosteum after Fracture and Its In Vitro Induction Triggered by IL-6
title_sort reg gene expression in periosteum after fracture and its in vitro induction triggered by il-6
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5713227/
https://www.ncbi.nlm.nih.gov/pubmed/29077068
http://dx.doi.org/10.3390/ijms18112257
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