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Stretch force guides finger-like pattern of bone formation in suture

Mechanical tension is widely applied on the suture to modulate the growth of craniofacial bones. Deeply understanding the features of bone formation in expanding sutures could help us to improve the outcomes of clinical treatment and avoid some side effects. Although there are reports that have unco...

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Autores principales: Wu, Bo-Hai, Kou, Xiao-Xing, Zhang, Ci, Zhang, Yi-Mei, Cui, Zhen, Wang, Xue-Dong, Liu, Yan, Liu, Da-Wei, Zhou, Yan-Heng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5417680/
https://www.ncbi.nlm.nih.gov/pubmed/28472133
http://dx.doi.org/10.1371/journal.pone.0177159
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author Wu, Bo-Hai
Kou, Xiao-Xing
Zhang, Ci
Zhang, Yi-Mei
Cui, Zhen
Wang, Xue-Dong
Liu, Yan
Liu, Da-Wei
Zhou, Yan-Heng
author_facet Wu, Bo-Hai
Kou, Xiao-Xing
Zhang, Ci
Zhang, Yi-Mei
Cui, Zhen
Wang, Xue-Dong
Liu, Yan
Liu, Da-Wei
Zhou, Yan-Heng
author_sort Wu, Bo-Hai
collection PubMed
description Mechanical tension is widely applied on the suture to modulate the growth of craniofacial bones. Deeply understanding the features of bone formation in expanding sutures could help us to improve the outcomes of clinical treatment and avoid some side effects. Although there are reports that have uncovered some biological characteristics, the regular pattern of sutural bone formation in response to expansion forces is still unknown. Our study was to investigate the shape, arrangement and orientation of new bone formation in expanding sutures and explore related clinical implications. The premaxillary sutures of rat, which histologically resembles the sutures of human beings, became wider progressively under stretch force. Micro-CT detected new bones at day 3. Morphologically, these bones were forming in a finger-like pattern, projecting from the maxillae into the expanded sutures. There were about 4 finger-like bones appearing on the selected micro-CT sections at day 3 and this number increased to about 18 at day 7. The average length of these projections increased from 0.14 mm at day 3 to 0.81 mm at day 7. The volume of these bony protuberances increased to the highest level of 0.12 mm(3) at day 7. HE staining demonstrated that these finger-like bones had thick bases connecting with the maxillae and thin fronts stretching into the expanded suture. Nasal sections had a higher frequency of finger-like bones occuring than the oral sections at day 3 and day 5. Masson-stained sections showed stretched fibers embedding into maxillary margins. Osteocalcin-positive osteoblasts changed their shapes from cuboidal to spindle and covered the surfaces of finger-like bones continuously. Alizarin red S and calcein deposited in the inner and outer layers of finger-like bones respectively, which showed that longer and larger bones formed on the nasal side of expanded sutures compared with the oral side. Interestingly, these finger-like bones were almost paralleling with the direction of stretch force. Inclined force led to inclined finger-like bones formation and deflection of bilateral maxillae. Additionally, heavily compressive force caused fracture of finger-like bones in the sutures. These data together proposed the special finger-like pattern of bone formation in sutures guided by stretch force, providing important implications for maxillary expansion.
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spelling pubmed-54176802017-05-14 Stretch force guides finger-like pattern of bone formation in suture Wu, Bo-Hai Kou, Xiao-Xing Zhang, Ci Zhang, Yi-Mei Cui, Zhen Wang, Xue-Dong Liu, Yan Liu, Da-Wei Zhou, Yan-Heng PLoS One Research Article Mechanical tension is widely applied on the suture to modulate the growth of craniofacial bones. Deeply understanding the features of bone formation in expanding sutures could help us to improve the outcomes of clinical treatment and avoid some side effects. Although there are reports that have uncovered some biological characteristics, the regular pattern of sutural bone formation in response to expansion forces is still unknown. Our study was to investigate the shape, arrangement and orientation of new bone formation in expanding sutures and explore related clinical implications. The premaxillary sutures of rat, which histologically resembles the sutures of human beings, became wider progressively under stretch force. Micro-CT detected new bones at day 3. Morphologically, these bones were forming in a finger-like pattern, projecting from the maxillae into the expanded sutures. There were about 4 finger-like bones appearing on the selected micro-CT sections at day 3 and this number increased to about 18 at day 7. The average length of these projections increased from 0.14 mm at day 3 to 0.81 mm at day 7. The volume of these bony protuberances increased to the highest level of 0.12 mm(3) at day 7. HE staining demonstrated that these finger-like bones had thick bases connecting with the maxillae and thin fronts stretching into the expanded suture. Nasal sections had a higher frequency of finger-like bones occuring than the oral sections at day 3 and day 5. Masson-stained sections showed stretched fibers embedding into maxillary margins. Osteocalcin-positive osteoblasts changed their shapes from cuboidal to spindle and covered the surfaces of finger-like bones continuously. Alizarin red S and calcein deposited in the inner and outer layers of finger-like bones respectively, which showed that longer and larger bones formed on the nasal side of expanded sutures compared with the oral side. Interestingly, these finger-like bones were almost paralleling with the direction of stretch force. Inclined force led to inclined finger-like bones formation and deflection of bilateral maxillae. Additionally, heavily compressive force caused fracture of finger-like bones in the sutures. These data together proposed the special finger-like pattern of bone formation in sutures guided by stretch force, providing important implications for maxillary expansion. Public Library of Science 2017-05-04 /pmc/articles/PMC5417680/ /pubmed/28472133 http://dx.doi.org/10.1371/journal.pone.0177159 Text en © 2017 Wu 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Wu, Bo-Hai
Kou, Xiao-Xing
Zhang, Ci
Zhang, Yi-Mei
Cui, Zhen
Wang, Xue-Dong
Liu, Yan
Liu, Da-Wei
Zhou, Yan-Heng
Stretch force guides finger-like pattern of bone formation in suture
title Stretch force guides finger-like pattern of bone formation in suture
title_full Stretch force guides finger-like pattern of bone formation in suture
title_fullStr Stretch force guides finger-like pattern of bone formation in suture
title_full_unstemmed Stretch force guides finger-like pattern of bone formation in suture
title_short Stretch force guides finger-like pattern of bone formation in suture
title_sort stretch force guides finger-like pattern of bone formation in suture
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5417680/
https://www.ncbi.nlm.nih.gov/pubmed/28472133
http://dx.doi.org/10.1371/journal.pone.0177159
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