Cargando…

“Over-inlay” block graft and differential morphometry: a novel block graft model to study bone regeneration and host-to-graft interfaces in rats

PURPOSE: The aim of this study was to present new a model that allows the study of the bone healing process, with an emphasis on the biological behavior of different graft-to-host interfaces. A standardized “over-inlay” surgical technique combined with a differential histomorphometric analysis is pr...

Descripción completa

Detalles Bibliográficos
Autores principales: Ghiacci, Giulia, Graiani, Gallia, Ravanetti, Francesca, Lumetti, Simone, Manfredi, Edoardo, Galli, Carlo, Cacchioli, Antonio, Macaluso, Guido Maria, Sala, Roberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Korean Academy of Periodontology 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5005810/
https://www.ncbi.nlm.nih.gov/pubmed/27588212
http://dx.doi.org/10.5051/jpis.2016.46.4.220
_version_ 1782450974546198528
author Ghiacci, Giulia
Graiani, Gallia
Ravanetti, Francesca
Lumetti, Simone
Manfredi, Edoardo
Galli, Carlo
Cacchioli, Antonio
Macaluso, Guido Maria
Sala, Roberto
author_facet Ghiacci, Giulia
Graiani, Gallia
Ravanetti, Francesca
Lumetti, Simone
Manfredi, Edoardo
Galli, Carlo
Cacchioli, Antonio
Macaluso, Guido Maria
Sala, Roberto
author_sort Ghiacci, Giulia
collection PubMed
description PURPOSE: The aim of this study was to present new a model that allows the study of the bone healing process, with an emphasis on the biological behavior of different graft-to-host interfaces. A standardized “over-inlay” surgical technique combined with a differential histomorphometric analysis is presented in order to optimize the use of critical-size calvarial defects in pre-clinical testing. METHODS: Critical-size defects were created into the parietal bone of 8 male Wistar rats. Deproteinized bovine bone (DBBM) blocks were inserted into the defects, so that part of the block was included within the calvarial thickness and part exceeded the calvarial height (an “over-inlay” graft). All animals were sacrificed at 1 or 3 months. Histomorphometric and immunohistochemical evaluation was carried out within distinct regions of interest (ROIs): the areas adjacent to the native bone (BA), the periosteal area (PA) and the central area (CA). RESULTS: The animals healed without complications. Differential morphometry allowed the examination of the tissue composition within distinct regions: the BA presented consistent amounts of new bone formation (NB), which increased over time (24.53%±1.26% at 1 month; 37.73%±0.39% at 3 months), thus suggesting that this area makes a substantial contribution toward NB. The PA was mainly composed of fibrous tissue (71.16%±8.06% and 78.30%±2.67%, respectively), while the CA showed high amounts of DBBM at both time points (78.30%±2.67% and 74.68%±1.07%, respectively), demonstrating a slow remodeling process. Blood vessels revealed a progressive migration from the interface with native bone toward the central area of the graft. Osterix-positive cells observed at 1 month within the PA suggested that the periosteum was a source of osteoprogenitor elements. Alkaline phosphatase data on matrix deposition confirmed this observation. CONCLUSIONS: The present model allowed for a standardized investigation of distinct graft-to-host interfaces both at vertically augmented and inlay-augmented sites, thus possibly limiting the number of animals required for pre-clinical investigations.
format Online
Article
Text
id pubmed-5005810
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Korean Academy of Periodontology
record_format MEDLINE/PubMed
spelling pubmed-50058102016-09-01 “Over-inlay” block graft and differential morphometry: a novel block graft model to study bone regeneration and host-to-graft interfaces in rats Ghiacci, Giulia Graiani, Gallia Ravanetti, Francesca Lumetti, Simone Manfredi, Edoardo Galli, Carlo Cacchioli, Antonio Macaluso, Guido Maria Sala, Roberto J Periodontal Implant Sci Research Article PURPOSE: The aim of this study was to present new a model that allows the study of the bone healing process, with an emphasis on the biological behavior of different graft-to-host interfaces. A standardized “over-inlay” surgical technique combined with a differential histomorphometric analysis is presented in order to optimize the use of critical-size calvarial defects in pre-clinical testing. METHODS: Critical-size defects were created into the parietal bone of 8 male Wistar rats. Deproteinized bovine bone (DBBM) blocks were inserted into the defects, so that part of the block was included within the calvarial thickness and part exceeded the calvarial height (an “over-inlay” graft). All animals were sacrificed at 1 or 3 months. Histomorphometric and immunohistochemical evaluation was carried out within distinct regions of interest (ROIs): the areas adjacent to the native bone (BA), the periosteal area (PA) and the central area (CA). RESULTS: The animals healed without complications. Differential morphometry allowed the examination of the tissue composition within distinct regions: the BA presented consistent amounts of new bone formation (NB), which increased over time (24.53%±1.26% at 1 month; 37.73%±0.39% at 3 months), thus suggesting that this area makes a substantial contribution toward NB. The PA was mainly composed of fibrous tissue (71.16%±8.06% and 78.30%±2.67%, respectively), while the CA showed high amounts of DBBM at both time points (78.30%±2.67% and 74.68%±1.07%, respectively), demonstrating a slow remodeling process. Blood vessels revealed a progressive migration from the interface with native bone toward the central area of the graft. Osterix-positive cells observed at 1 month within the PA suggested that the periosteum was a source of osteoprogenitor elements. Alkaline phosphatase data on matrix deposition confirmed this observation. CONCLUSIONS: The present model allowed for a standardized investigation of distinct graft-to-host interfaces both at vertically augmented and inlay-augmented sites, thus possibly limiting the number of animals required for pre-clinical investigations. Korean Academy of Periodontology 2016-08 2016-08-30 /pmc/articles/PMC5005810/ /pubmed/27588212 http://dx.doi.org/10.5051/jpis.2016.46.4.220 Text en Copyright © 2016 Korean Academy of Periodontology http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/).
spellingShingle Research Article
Ghiacci, Giulia
Graiani, Gallia
Ravanetti, Francesca
Lumetti, Simone
Manfredi, Edoardo
Galli, Carlo
Cacchioli, Antonio
Macaluso, Guido Maria
Sala, Roberto
“Over-inlay” block graft and differential morphometry: a novel block graft model to study bone regeneration and host-to-graft interfaces in rats
title “Over-inlay” block graft and differential morphometry: a novel block graft model to study bone regeneration and host-to-graft interfaces in rats
title_full “Over-inlay” block graft and differential morphometry: a novel block graft model to study bone regeneration and host-to-graft interfaces in rats
title_fullStr “Over-inlay” block graft and differential morphometry: a novel block graft model to study bone regeneration and host-to-graft interfaces in rats
title_full_unstemmed “Over-inlay” block graft and differential morphometry: a novel block graft model to study bone regeneration and host-to-graft interfaces in rats
title_short “Over-inlay” block graft and differential morphometry: a novel block graft model to study bone regeneration and host-to-graft interfaces in rats
title_sort “over-inlay” block graft and differential morphometry: a novel block graft model to study bone regeneration and host-to-graft interfaces in rats
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5005810/
https://www.ncbi.nlm.nih.gov/pubmed/27588212
http://dx.doi.org/10.5051/jpis.2016.46.4.220
work_keys_str_mv AT ghiaccigiulia overinlayblockgraftanddifferentialmorphometryanovelblockgraftmodeltostudyboneregenerationandhosttograftinterfacesinrats
AT graianigallia overinlayblockgraftanddifferentialmorphometryanovelblockgraftmodeltostudyboneregenerationandhosttograftinterfacesinrats
AT ravanettifrancesca overinlayblockgraftanddifferentialmorphometryanovelblockgraftmodeltostudyboneregenerationandhosttograftinterfacesinrats
AT lumettisimone overinlayblockgraftanddifferentialmorphometryanovelblockgraftmodeltostudyboneregenerationandhosttograftinterfacesinrats
AT manfrediedoardo overinlayblockgraftanddifferentialmorphometryanovelblockgraftmodeltostudyboneregenerationandhosttograftinterfacesinrats
AT gallicarlo overinlayblockgraftanddifferentialmorphometryanovelblockgraftmodeltostudyboneregenerationandhosttograftinterfacesinrats
AT cacchioliantonio overinlayblockgraftanddifferentialmorphometryanovelblockgraftmodeltostudyboneregenerationandhosttograftinterfacesinrats
AT macalusoguidomaria overinlayblockgraftanddifferentialmorphometryanovelblockgraftmodeltostudyboneregenerationandhosttograftinterfacesinrats
AT salaroberto overinlayblockgraftanddifferentialmorphometryanovelblockgraftmodeltostudyboneregenerationandhosttograftinterfacesinrats