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An In Vitro Stereomicroscopic Evaluation of Bioactivity between Neo MTA Plus, Pro Root MTA, BIODENTINE & Glass Ionomer Cement Using Dye Penetration Method

The ideal root end filling material should form a tight seal in the root canal by adhering to the cavity walls. Several materials have been used for root end filling. The present study aims to find out and compare the bioactivity of Neo MTA Plus, Pro Root MTA White, BIODENTINE & glass ionomer ce...

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Autores principales: Karobari, Mohmed Isaqali, Basheer, Syed Nahid, Sayed, Fazlur Rahman, Shaikh, Sufiyan, Agwan, Muhammad Atif Saleem, Marya, Anand, Messina, Pietro, Scardina, Giuseppe Alessandro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8230002/
https://www.ncbi.nlm.nih.gov/pubmed/34201321
http://dx.doi.org/10.3390/ma14123159
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author Karobari, Mohmed Isaqali
Basheer, Syed Nahid
Sayed, Fazlur Rahman
Shaikh, Sufiyan
Agwan, Muhammad Atif Saleem
Marya, Anand
Messina, Pietro
Scardina, Giuseppe Alessandro
author_facet Karobari, Mohmed Isaqali
Basheer, Syed Nahid
Sayed, Fazlur Rahman
Shaikh, Sufiyan
Agwan, Muhammad Atif Saleem
Marya, Anand
Messina, Pietro
Scardina, Giuseppe Alessandro
author_sort Karobari, Mohmed Isaqali
collection PubMed
description The ideal root end filling material should form a tight seal in the root canal by adhering to the cavity walls. Several materials have been used for root end filling. The present study aims to find out and compare the bioactivity of Neo MTA Plus, Pro Root MTA White, BIODENTINE & glass ionomer cement as root end filling materials using 1% methylene blue as tracer. Materials and methods: 80 extracted human permanent maxillary anterior teeth were used in the study. They were divided into four groups. Specimens were sectioned transversely in the cervical area to separate the crown from the root. The root canal was obturated with gutta percha and zinc oxide eugenol sealers. Thereafter, each sample was resected apically by removing 3 mm of the apex and filled with different materials. Samples were kept in buffering solution at 37 °C until the recommended evaluation periods. The specimens were then suspended in 1% methylene blue for 24 h, prior to the analysis. The teeth were then sectioned, and dye penetration was examined, photographed, and evaluated under a stereomicroscope. Results: Vertical dye penetration showed significant differences across different groups. The minimum dye penetration was seen in Neo MTA plus followed by BIODENTINE, Pro Root MTA and maximum in GIC. There was no significant difference in dye penetration between Neo MTA plus and BIODENTINE both at fifteen days and one-month intervals. Conclusion: The present study suggests Neo MTA plus and BIODENTINE should be the preferred material for root end filling.
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spelling pubmed-82300022021-06-26 An In Vitro Stereomicroscopic Evaluation of Bioactivity between Neo MTA Plus, Pro Root MTA, BIODENTINE & Glass Ionomer Cement Using Dye Penetration Method Karobari, Mohmed Isaqali Basheer, Syed Nahid Sayed, Fazlur Rahman Shaikh, Sufiyan Agwan, Muhammad Atif Saleem Marya, Anand Messina, Pietro Scardina, Giuseppe Alessandro Materials (Basel) Article The ideal root end filling material should form a tight seal in the root canal by adhering to the cavity walls. Several materials have been used for root end filling. The present study aims to find out and compare the bioactivity of Neo MTA Plus, Pro Root MTA White, BIODENTINE & glass ionomer cement as root end filling materials using 1% methylene blue as tracer. Materials and methods: 80 extracted human permanent maxillary anterior teeth were used in the study. They were divided into four groups. Specimens were sectioned transversely in the cervical area to separate the crown from the root. The root canal was obturated with gutta percha and zinc oxide eugenol sealers. Thereafter, each sample was resected apically by removing 3 mm of the apex and filled with different materials. Samples were kept in buffering solution at 37 °C until the recommended evaluation periods. The specimens were then suspended in 1% methylene blue for 24 h, prior to the analysis. The teeth were then sectioned, and dye penetration was examined, photographed, and evaluated under a stereomicroscope. Results: Vertical dye penetration showed significant differences across different groups. The minimum dye penetration was seen in Neo MTA plus followed by BIODENTINE, Pro Root MTA and maximum in GIC. There was no significant difference in dye penetration between Neo MTA plus and BIODENTINE both at fifteen days and one-month intervals. Conclusion: The present study suggests Neo MTA plus and BIODENTINE should be the preferred material for root end filling. MDPI 2021-06-08 /pmc/articles/PMC8230002/ /pubmed/34201321 http://dx.doi.org/10.3390/ma14123159 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Karobari, Mohmed Isaqali
Basheer, Syed Nahid
Sayed, Fazlur Rahman
Shaikh, Sufiyan
Agwan, Muhammad Atif Saleem
Marya, Anand
Messina, Pietro
Scardina, Giuseppe Alessandro
An In Vitro Stereomicroscopic Evaluation of Bioactivity between Neo MTA Plus, Pro Root MTA, BIODENTINE & Glass Ionomer Cement Using Dye Penetration Method
title An In Vitro Stereomicroscopic Evaluation of Bioactivity between Neo MTA Plus, Pro Root MTA, BIODENTINE & Glass Ionomer Cement Using Dye Penetration Method
title_full An In Vitro Stereomicroscopic Evaluation of Bioactivity between Neo MTA Plus, Pro Root MTA, BIODENTINE & Glass Ionomer Cement Using Dye Penetration Method
title_fullStr An In Vitro Stereomicroscopic Evaluation of Bioactivity between Neo MTA Plus, Pro Root MTA, BIODENTINE & Glass Ionomer Cement Using Dye Penetration Method
title_full_unstemmed An In Vitro Stereomicroscopic Evaluation of Bioactivity between Neo MTA Plus, Pro Root MTA, BIODENTINE & Glass Ionomer Cement Using Dye Penetration Method
title_short An In Vitro Stereomicroscopic Evaluation of Bioactivity between Neo MTA Plus, Pro Root MTA, BIODENTINE & Glass Ionomer Cement Using Dye Penetration Method
title_sort in vitro stereomicroscopic evaluation of bioactivity between neo mta plus, pro root mta, biodentine & glass ionomer cement using dye penetration method
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8230002/
https://www.ncbi.nlm.nih.gov/pubmed/34201321
http://dx.doi.org/10.3390/ma14123159
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