The effect of heparan sulfate application on bone formation during distraction osteogenesis.

Bone morphogenetic proteins (BMPs) are recognized for their ability to induce bone formation in vivo and in vitro. Their osteogenic and osteoinductive properties are tightly regulated by the secretion of specific BMP antagonists, which have been shown to physically bind and sometimes be blocked by t...

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Main Authors: Marie Gdalevitch, Bahar Kasaai, Norine Alam, Bruno Dohin, Dominique Lauzier, Reggie C Hamdy
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3574072?pdf=render
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spelling doaj-c0cc0d50730d46e0b74c4d5568d450572020-11-25T01:08:22ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0182e5679010.1371/journal.pone.0056790The effect of heparan sulfate application on bone formation during distraction osteogenesis.Marie GdalevitchBahar KasaaiNorine AlamBruno DohinDominique LauzierReggie C HamdyBone morphogenetic proteins (BMPs) are recognized for their ability to induce bone formation in vivo and in vitro. Their osteogenic and osteoinductive properties are tightly regulated by the secretion of specific BMP antagonists, which have been shown to physically bind and sometimes be blocked by the extracellular proteoglycan heparan sulphate side chains (from hereon referred to as HS). The purpose of this study was to investigate if local application of 5 µg of HS proteoglycan to a bone regenerate site in a mouse model of distraction osteogenesis (DO) can accelerate bone healing and affect the expression of key members of the BMP signaling pathway. DO was performed on the right tibia of 115 adult male wild-type mice. At mid-distraction (day 11), half the group was injected locally with 5 µg of HS, while the other half was injected with saline. The mice were sacrificed at 2 time-points: mid-consolidation (34 days) and full consolidation (51 days). The distracted tibial zone was then collected for analysis by μCT, radiology, biomechanical testing, immunohistochemistry, and histology. While μCT data showed no statistically significant difference in bone formation, the results of biomechanical testing in stiffness and ultimate force were significantly lower in the HS-injected bones at 51 days, compared to controls. Immunohistochemistry results also suggested a decrease in expression of several key members of the BMP signaling pathway at 34 days. Furthermore, wound dehiscence and infection rates were significantly elevated in the HS group compared to the controls, which resulted in a higher rate of euthanasia in the treatment group. Our findings demonstrate that exogenous application of 5 µg of HS in the distracted gap of a murine model had a negative impact on bone and wound healing.http://europepmc.org/articles/PMC3574072?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Marie Gdalevitch
Bahar Kasaai
Norine Alam
Bruno Dohin
Dominique Lauzier
Reggie C Hamdy
spellingShingle Marie Gdalevitch
Bahar Kasaai
Norine Alam
Bruno Dohin
Dominique Lauzier
Reggie C Hamdy
The effect of heparan sulfate application on bone formation during distraction osteogenesis.
PLoS ONE
author_facet Marie Gdalevitch
Bahar Kasaai
Norine Alam
Bruno Dohin
Dominique Lauzier
Reggie C Hamdy
author_sort Marie Gdalevitch
title The effect of heparan sulfate application on bone formation during distraction osteogenesis.
title_short The effect of heparan sulfate application on bone formation during distraction osteogenesis.
title_full The effect of heparan sulfate application on bone formation during distraction osteogenesis.
title_fullStr The effect of heparan sulfate application on bone formation during distraction osteogenesis.
title_full_unstemmed The effect of heparan sulfate application on bone formation during distraction osteogenesis.
title_sort effect of heparan sulfate application on bone formation during distraction osteogenesis.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Bone morphogenetic proteins (BMPs) are recognized for their ability to induce bone formation in vivo and in vitro. Their osteogenic and osteoinductive properties are tightly regulated by the secretion of specific BMP antagonists, which have been shown to physically bind and sometimes be blocked by the extracellular proteoglycan heparan sulphate side chains (from hereon referred to as HS). The purpose of this study was to investigate if local application of 5 µg of HS proteoglycan to a bone regenerate site in a mouse model of distraction osteogenesis (DO) can accelerate bone healing and affect the expression of key members of the BMP signaling pathway. DO was performed on the right tibia of 115 adult male wild-type mice. At mid-distraction (day 11), half the group was injected locally with 5 µg of HS, while the other half was injected with saline. The mice were sacrificed at 2 time-points: mid-consolidation (34 days) and full consolidation (51 days). The distracted tibial zone was then collected for analysis by μCT, radiology, biomechanical testing, immunohistochemistry, and histology. While μCT data showed no statistically significant difference in bone formation, the results of biomechanical testing in stiffness and ultimate force were significantly lower in the HS-injected bones at 51 days, compared to controls. Immunohistochemistry results also suggested a decrease in expression of several key members of the BMP signaling pathway at 34 days. Furthermore, wound dehiscence and infection rates were significantly elevated in the HS group compared to the controls, which resulted in a higher rate of euthanasia in the treatment group. Our findings demonstrate that exogenous application of 5 µg of HS in the distracted gap of a murine model had a negative impact on bone and wound healing.
url http://europepmc.org/articles/PMC3574072?pdf=render
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