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Push-Out Bond Strength of Experimental Apatite Calcium Phosphate Based Coated Gutta-Percha

OBJECTIVES: To evaluate the push-out bond strength of experimental apatite calcium phosphate coated gutta-percha (HAGP) compared to different commercially available coated gutta-percha root obturation points. METHODS: Extracted teeth were selected and instrumented using ProTaper rotary files. The ca...

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Autores principales: Al-Haddad, Afaf Y., Kutty, Muralithran G., Che Ab Aziz, Zeti Adura
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6093004/
https://www.ncbi.nlm.nih.gov/pubmed/30154852
http://dx.doi.org/10.1155/2018/1731857
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author Al-Haddad, Afaf Y.
Kutty, Muralithran G.
Che Ab Aziz, Zeti Adura
author_facet Al-Haddad, Afaf Y.
Kutty, Muralithran G.
Che Ab Aziz, Zeti Adura
author_sort Al-Haddad, Afaf Y.
collection PubMed
description OBJECTIVES: To evaluate the push-out bond strength of experimental apatite calcium phosphate coated gutta-percha (HAGP) compared to different commercially available coated gutta-percha root obturation points. METHODS: Extracted teeth were selected and instrumented using ProTaper rotary files. The canals were assigned into five equal groups and obturated using matching single cone technique as follows: EndoREZ cones and EndoREZ sealer, Bioceramic Endosequence gutta-percha (BCGP) with Endosequence BC sealer, Active GP with Endosequence BC sealer (ActiV GP), conventional GP with Endosequence BC sealer, and HAGP with Endosequence BC sealer. Each root was sectioned transversally at the thickness of 1±0.1 mm to obtain 5 sections (n=25 per group). The specimens were subjected to push-out test using a Universal Test Machine at a loading speed of 0.5 mm/ min. Failure modes after push-out test was examined under stereomicroscope and the push-out data were analyzed using ANOVA and the post hoc Dunnett T3 test (p = 0.05). RESULTS: The highest mean bond strength was yielded by HAGP followed by BCGP, ActiV GP, conventional GP, and EndoREZ. There were significant differences between EndoREZ and all other groups (p<0.001). The prominent failure mode of HAGP was mixed mode, whereas EndoREZ exhibited adhesive failure mode. Conventional GP, ActiV GP, and BCGP showed cohesive failure mode. CONCLUSION: HAGP showed promising results to be used as root canal filling material in combination with bioceramic sealer.
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spelling pubmed-60930042018-08-28 Push-Out Bond Strength of Experimental Apatite Calcium Phosphate Based Coated Gutta-Percha Al-Haddad, Afaf Y. Kutty, Muralithran G. Che Ab Aziz, Zeti Adura Int J Biomater Research Article OBJECTIVES: To evaluate the push-out bond strength of experimental apatite calcium phosphate coated gutta-percha (HAGP) compared to different commercially available coated gutta-percha root obturation points. METHODS: Extracted teeth were selected and instrumented using ProTaper rotary files. The canals were assigned into five equal groups and obturated using matching single cone technique as follows: EndoREZ cones and EndoREZ sealer, Bioceramic Endosequence gutta-percha (BCGP) with Endosequence BC sealer, Active GP with Endosequence BC sealer (ActiV GP), conventional GP with Endosequence BC sealer, and HAGP with Endosequence BC sealer. Each root was sectioned transversally at the thickness of 1±0.1 mm to obtain 5 sections (n=25 per group). The specimens were subjected to push-out test using a Universal Test Machine at a loading speed of 0.5 mm/ min. Failure modes after push-out test was examined under stereomicroscope and the push-out data were analyzed using ANOVA and the post hoc Dunnett T3 test (p = 0.05). RESULTS: The highest mean bond strength was yielded by HAGP followed by BCGP, ActiV GP, conventional GP, and EndoREZ. There were significant differences between EndoREZ and all other groups (p<0.001). The prominent failure mode of HAGP was mixed mode, whereas EndoREZ exhibited adhesive failure mode. Conventional GP, ActiV GP, and BCGP showed cohesive failure mode. CONCLUSION: HAGP showed promising results to be used as root canal filling material in combination with bioceramic sealer. Hindawi 2018-08-01 /pmc/articles/PMC6093004/ /pubmed/30154852 http://dx.doi.org/10.1155/2018/1731857 Text en Copyright © 2018 Afaf Y. Al-Haddad et al. https://creativecommons.org/licenses/by/4.0/ 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
Al-Haddad, Afaf Y.
Kutty, Muralithran G.
Che Ab Aziz, Zeti Adura
Push-Out Bond Strength of Experimental Apatite Calcium Phosphate Based Coated Gutta-Percha
title Push-Out Bond Strength of Experimental Apatite Calcium Phosphate Based Coated Gutta-Percha
title_full Push-Out Bond Strength of Experimental Apatite Calcium Phosphate Based Coated Gutta-Percha
title_fullStr Push-Out Bond Strength of Experimental Apatite Calcium Phosphate Based Coated Gutta-Percha
title_full_unstemmed Push-Out Bond Strength of Experimental Apatite Calcium Phosphate Based Coated Gutta-Percha
title_short Push-Out Bond Strength of Experimental Apatite Calcium Phosphate Based Coated Gutta-Percha
title_sort push-out bond strength of experimental apatite calcium phosphate based coated gutta-percha
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6093004/
https://www.ncbi.nlm.nih.gov/pubmed/30154852
http://dx.doi.org/10.1155/2018/1731857
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