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Histologic Evaluation of Artificial Floors Under MTA and Nano-Filled Resin-Modified Glass Ionomer Used to Repair Furcation Perforations in Dogs

OBJECTIVE: This study aimed to compare the tissue reaction of two repair materials for furcation perforations, nano-filled resin modified glass ionomer (Nano-FRMGI) and mineral trioxide aggregate (MTA), used with or without an artificial floor. METHODS: A total of 96 teeth in 6 dogs were used for th...

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Autores principales: Aladimi, Adel A., Alhadainy, Hatem A., Farag, Ali, Azma, Nahed Abo, Torad, Faisal, Abdulrab, Saleem
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Kare Publishing 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7398997/
https://www.ncbi.nlm.nih.gov/pubmed/32766525
http://dx.doi.org/10.14744/eej.2020.44127
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author Aladimi, Adel A.
Alhadainy, Hatem A.
Farag, Ali
Azma, Nahed Abo
Torad, Faisal
Abdulrab, Saleem
author_facet Aladimi, Adel A.
Alhadainy, Hatem A.
Farag, Ali
Azma, Nahed Abo
Torad, Faisal
Abdulrab, Saleem
author_sort Aladimi, Adel A.
collection PubMed
description OBJECTIVE: This study aimed to compare the tissue reaction of two repair materials for furcation perforations, nano-filled resin modified glass ionomer (Nano-FRMGI) and mineral trioxide aggregate (MTA), used with or without an artificial floor. METHODS: A total of 96 teeth in 6 dogs were used for this study. After access cavities, root canals were prepared and obturated with gutta percha using cold lateral condensation technique. Perforations were then created on the floors of the pulp chambers. The perforations divided into four groups n=24/group that were sealed with MTA alone, MTA with calcium sulphate artificial floor (CSAF), FRMGI alone and Nano-FRMGI with CSAF. All access cavities were filled with composite resin. Two dogs were sacrificed at 1, 3, and 6 month. The experimental tooth along with the surrounding alveolar bone were cut in block sections and histologically evaluated for tissue response. Data were analyzed by Chi-square (P≤0.05). RESULTS: MTA and MTA with CSAF showed more bone and cementum apposition when compared to Nano-FRMGI at 6-month interval. MTA and MTA with CSAF showed less bone resorption, epithelium proliferation and inflammation compared to Nano-FRMGI at 6-month interval. CONCLUSION: MTA with CSAF or MTA-alone show better outcomes in the repair of pulp chamber floor perforation.
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spelling pubmed-73989972020-08-05 Histologic Evaluation of Artificial Floors Under MTA and Nano-Filled Resin-Modified Glass Ionomer Used to Repair Furcation Perforations in Dogs Aladimi, Adel A. Alhadainy, Hatem A. Farag, Ali Azma, Nahed Abo Torad, Faisal Abdulrab, Saleem Eur Endod J Original Article OBJECTIVE: This study aimed to compare the tissue reaction of two repair materials for furcation perforations, nano-filled resin modified glass ionomer (Nano-FRMGI) and mineral trioxide aggregate (MTA), used with or without an artificial floor. METHODS: A total of 96 teeth in 6 dogs were used for this study. After access cavities, root canals were prepared and obturated with gutta percha using cold lateral condensation technique. Perforations were then created on the floors of the pulp chambers. The perforations divided into four groups n=24/group that were sealed with MTA alone, MTA with calcium sulphate artificial floor (CSAF), FRMGI alone and Nano-FRMGI with CSAF. All access cavities were filled with composite resin. Two dogs were sacrificed at 1, 3, and 6 month. The experimental tooth along with the surrounding alveolar bone were cut in block sections and histologically evaluated for tissue response. Data were analyzed by Chi-square (P≤0.05). RESULTS: MTA and MTA with CSAF showed more bone and cementum apposition when compared to Nano-FRMGI at 6-month interval. MTA and MTA with CSAF showed less bone resorption, epithelium proliferation and inflammation compared to Nano-FRMGI at 6-month interval. CONCLUSION: MTA with CSAF or MTA-alone show better outcomes in the repair of pulp chamber floor perforation. Kare Publishing 2020-05-15 /pmc/articles/PMC7398997/ /pubmed/32766525 http://dx.doi.org/10.14744/eej.2020.44127 Text en Copyright: © 2020 European Endodontic Journal http://creativecommons.org/licenses/by-nc/4.0 This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License
spellingShingle Original Article
Aladimi, Adel A.
Alhadainy, Hatem A.
Farag, Ali
Azma, Nahed Abo
Torad, Faisal
Abdulrab, Saleem
Histologic Evaluation of Artificial Floors Under MTA and Nano-Filled Resin-Modified Glass Ionomer Used to Repair Furcation Perforations in Dogs
title Histologic Evaluation of Artificial Floors Under MTA and Nano-Filled Resin-Modified Glass Ionomer Used to Repair Furcation Perforations in Dogs
title_full Histologic Evaluation of Artificial Floors Under MTA and Nano-Filled Resin-Modified Glass Ionomer Used to Repair Furcation Perforations in Dogs
title_fullStr Histologic Evaluation of Artificial Floors Under MTA and Nano-Filled Resin-Modified Glass Ionomer Used to Repair Furcation Perforations in Dogs
title_full_unstemmed Histologic Evaluation of Artificial Floors Under MTA and Nano-Filled Resin-Modified Glass Ionomer Used to Repair Furcation Perforations in Dogs
title_short Histologic Evaluation of Artificial Floors Under MTA and Nano-Filled Resin-Modified Glass Ionomer Used to Repair Furcation Perforations in Dogs
title_sort histologic evaluation of artificial floors under mta and nano-filled resin-modified glass ionomer used to repair furcation perforations in dogs
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7398997/
https://www.ncbi.nlm.nih.gov/pubmed/32766525
http://dx.doi.org/10.14744/eej.2020.44127
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