Cargando…

The Impact of Thermocycling Process on the Dislodgement Force of Different Endodontic Cements

To evaluate the effects of thermocycling (500 cycles, 5°C/55°C) on the push-out bond strength of calcium silicate based cements including WMTA, Nano-WMTA, and Bioaggregate to root dentin. Forty-eight dentin slices were prepared and divided into 3 groups (n = 16) and filled with Angelus WMTA, Nano-WM...

Descripción completa

Detalles Bibliográficos
Autores principales: Saghiri, Mohammad Ali, Asatourian, Armen, Garcia-Godoy, Franklin, Gutmann, James L., Sheibani, Nader
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3766561/
https://www.ncbi.nlm.nih.gov/pubmed/24063004
http://dx.doi.org/10.1155/2013/317185
_version_ 1782477287752466432
author Saghiri, Mohammad Ali
Asatourian, Armen
Garcia-Godoy, Franklin
Gutmann, James L.
Sheibani, Nader
author_facet Saghiri, Mohammad Ali
Asatourian, Armen
Garcia-Godoy, Franklin
Gutmann, James L.
Sheibani, Nader
author_sort Saghiri, Mohammad Ali
collection PubMed
description To evaluate the effects of thermocycling (500 cycles, 5°C/55°C) on the push-out bond strength of calcium silicate based cements including WMTA, Nano-WMTA, and Bioaggregate to root dentin. Forty-eight dentin slices were prepared and divided into 3 groups (n = 16) and filled with Angelus WMTA, Nano-WMTA, or Bioaggregate. After incubation, half of the samples were thermocycled while the other half remained untreated. Push-out bond strength was calculated, and the modes of the bond failures were determined by SEM. The highest bond strength was seen in nonthermocycled Nano-WMTA samples and the lowest in thermocycled Bioaggregate samples. The significant differences between nonthermocycled and thermocycled samples were only noticed in WMTA and Nano-WMTA groups (P < 0.001). The mode of failure for thermocycled samples of all three cements was mostly cohesive. Thermocycling process can drastically affect the push-out bond strength of calcium silicate based cements. The intrastructural damages occurred due to the thermal stresses, causing cohesive failures in set materials. Sealing property of endodontic cements which have experienced the thermal stresses can be jeopardized due to occlusal forces happening in furcation cites.
format Online
Article
Text
id pubmed-3766561
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Hindawi Publishing Corporation
record_format MEDLINE/PubMed
spelling pubmed-37665612013-09-23 The Impact of Thermocycling Process on the Dislodgement Force of Different Endodontic Cements Saghiri, Mohammad Ali Asatourian, Armen Garcia-Godoy, Franklin Gutmann, James L. Sheibani, Nader Biomed Res Int Research Article To evaluate the effects of thermocycling (500 cycles, 5°C/55°C) on the push-out bond strength of calcium silicate based cements including WMTA, Nano-WMTA, and Bioaggregate to root dentin. Forty-eight dentin slices were prepared and divided into 3 groups (n = 16) and filled with Angelus WMTA, Nano-WMTA, or Bioaggregate. After incubation, half of the samples were thermocycled while the other half remained untreated. Push-out bond strength was calculated, and the modes of the bond failures were determined by SEM. The highest bond strength was seen in nonthermocycled Nano-WMTA samples and the lowest in thermocycled Bioaggregate samples. The significant differences between nonthermocycled and thermocycled samples were only noticed in WMTA and Nano-WMTA groups (P < 0.001). The mode of failure for thermocycled samples of all three cements was mostly cohesive. Thermocycling process can drastically affect the push-out bond strength of calcium silicate based cements. The intrastructural damages occurred due to the thermal stresses, causing cohesive failures in set materials. Sealing property of endodontic cements which have experienced the thermal stresses can be jeopardized due to occlusal forces happening in furcation cites. Hindawi Publishing Corporation 2013 2013-08-24 /pmc/articles/PMC3766561/ /pubmed/24063004 http://dx.doi.org/10.1155/2013/317185 Text en Copyright © 2013 Mohammad Ali Saghiri et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Saghiri, Mohammad Ali
Asatourian, Armen
Garcia-Godoy, Franklin
Gutmann, James L.
Sheibani, Nader
The Impact of Thermocycling Process on the Dislodgement Force of Different Endodontic Cements
title The Impact of Thermocycling Process on the Dislodgement Force of Different Endodontic Cements
title_full The Impact of Thermocycling Process on the Dislodgement Force of Different Endodontic Cements
title_fullStr The Impact of Thermocycling Process on the Dislodgement Force of Different Endodontic Cements
title_full_unstemmed The Impact of Thermocycling Process on the Dislodgement Force of Different Endodontic Cements
title_short The Impact of Thermocycling Process on the Dislodgement Force of Different Endodontic Cements
title_sort impact of thermocycling process on the dislodgement force of different endodontic cements
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3766561/
https://www.ncbi.nlm.nih.gov/pubmed/24063004
http://dx.doi.org/10.1155/2013/317185
work_keys_str_mv AT saghirimohammadali theimpactofthermocyclingprocessonthedislodgementforceofdifferentendodonticcements
AT asatourianarmen theimpactofthermocyclingprocessonthedislodgementforceofdifferentendodonticcements
AT garciagodoyfranklin theimpactofthermocyclingprocessonthedislodgementforceofdifferentendodonticcements
AT gutmannjamesl theimpactofthermocyclingprocessonthedislodgementforceofdifferentendodonticcements
AT sheibaninader theimpactofthermocyclingprocessonthedislodgementforceofdifferentendodonticcements
AT saghirimohammadali impactofthermocyclingprocessonthedislodgementforceofdifferentendodonticcements
AT asatourianarmen impactofthermocyclingprocessonthedislodgementforceofdifferentendodonticcements
AT garciagodoyfranklin impactofthermocyclingprocessonthedislodgementforceofdifferentendodonticcements
AT gutmannjamesl impactofthermocyclingprocessonthedislodgementforceofdifferentendodonticcements
AT sheibaninader impactofthermocyclingprocessonthedislodgementforceofdifferentendodonticcements