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A scanning electron microscopic study evaluating the sealing ability of MTA, BiodentineTM, and new light-cure MTA used for furcal perforation repair

BACKGROUND: To evaluate and compare the sealing ability of Mineral trioxide aggregate (MTA), BiodentineTM and light cure MTA used for the repair of furcal perforations using scanning electron microscope (SEM). MATERIAL AND METHODS: The study sample comprised 45 extracted mandibular molars. The teeth...

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Autores principales: Nagmode, Pradnya, Janbandhu, Prachi, Jagtap, Abhishek, Basatwar, Harshal, Godge, Shubham, Shinde, Snehal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Medicina Oral S.L. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9899359/
https://www.ncbi.nlm.nih.gov/pubmed/36755683
http://dx.doi.org/10.4317/jced.59755
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author Nagmode, Pradnya
Janbandhu, Prachi
Jagtap, Abhishek
Basatwar, Harshal
Godge, Shubham
Shinde, Snehal
author_facet Nagmode, Pradnya
Janbandhu, Prachi
Jagtap, Abhishek
Basatwar, Harshal
Godge, Shubham
Shinde, Snehal
author_sort Nagmode, Pradnya
collection PubMed
description BACKGROUND: To evaluate and compare the sealing ability of Mineral trioxide aggregate (MTA), BiodentineTM and light cure MTA used for the repair of furcal perforations using scanning electron microscope (SEM). MATERIAL AND METHODS: The study sample comprised 45 extracted mandibular molars. The teeth were embedded in modeling wax. Standard access cavities were prepared in each tooth using a round bur and non-end cutting bur with a high-speed handpiece with water spray. Furcal perforations were made on the centre of the pulpal floor of each tooth using a 0.5mm round bur. The teeth were then randomly divided into 3 experimental groups of 15 specimens each based on the materials used to seal the perforation; Group A: MTA; Group B: BiodentineTM; Group C: Light cure MTA. All the sealed perforations were compacted with a moist cotton pellet, and the samples were stored in a closed container for 24 hours to allow the repair materials to set completely. After 24 hours the samples were sectioned longitudinally and the extent of marginal adaptation was measured using scanning electron microscopy. The sealing ability was evaluated by measuring the gap (in microns) between the pulpal floor and the material used for the furcal repair. RESULTS: The overall results showed that the marginal adaptation of light-cure MTA was better than both MTA as well as Biodentine. The mean space between the pulpal floor and the repair material was least for group C (2.29). Tuckey’s post hoc test showed that a significant difference (p<0.05) existed between group C and group A & B. CONCLUSIONS: Light-cure MTA exbibits good sealing ability to dentin when compared to conventionally used Biodentine and Mineral Trioxide Aggregate. Key words:Calcium silicates, MTA, Biodentinte, New light-cure MTA, Perforation repair.
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spelling pubmed-98993592023-02-07 A scanning electron microscopic study evaluating the sealing ability of MTA, BiodentineTM, and new light-cure MTA used for furcal perforation repair Nagmode, Pradnya Janbandhu, Prachi Jagtap, Abhishek Basatwar, Harshal Godge, Shubham Shinde, Snehal J Clin Exp Dent Research BACKGROUND: To evaluate and compare the sealing ability of Mineral trioxide aggregate (MTA), BiodentineTM and light cure MTA used for the repair of furcal perforations using scanning electron microscope (SEM). MATERIAL AND METHODS: The study sample comprised 45 extracted mandibular molars. The teeth were embedded in modeling wax. Standard access cavities were prepared in each tooth using a round bur and non-end cutting bur with a high-speed handpiece with water spray. Furcal perforations were made on the centre of the pulpal floor of each tooth using a 0.5mm round bur. The teeth were then randomly divided into 3 experimental groups of 15 specimens each based on the materials used to seal the perforation; Group A: MTA; Group B: BiodentineTM; Group C: Light cure MTA. All the sealed perforations were compacted with a moist cotton pellet, and the samples were stored in a closed container for 24 hours to allow the repair materials to set completely. After 24 hours the samples were sectioned longitudinally and the extent of marginal adaptation was measured using scanning electron microscopy. The sealing ability was evaluated by measuring the gap (in microns) between the pulpal floor and the material used for the furcal repair. RESULTS: The overall results showed that the marginal adaptation of light-cure MTA was better than both MTA as well as Biodentine. The mean space between the pulpal floor and the repair material was least for group C (2.29). Tuckey’s post hoc test showed that a significant difference (p<0.05) existed between group C and group A & B. CONCLUSIONS: Light-cure MTA exbibits good sealing ability to dentin when compared to conventionally used Biodentine and Mineral Trioxide Aggregate. Key words:Calcium silicates, MTA, Biodentinte, New light-cure MTA, Perforation repair. Medicina Oral S.L. 2023-01-01 /pmc/articles/PMC9899359/ /pubmed/36755683 http://dx.doi.org/10.4317/jced.59755 Text en Copyright: © 2023 Medicina Oral S.L. https://creativecommons.org/licenses/by/2.5/This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Nagmode, Pradnya
Janbandhu, Prachi
Jagtap, Abhishek
Basatwar, Harshal
Godge, Shubham
Shinde, Snehal
A scanning electron microscopic study evaluating the sealing ability of MTA, BiodentineTM, and new light-cure MTA used for furcal perforation repair
title A scanning electron microscopic study evaluating the sealing ability of MTA, BiodentineTM, and new light-cure MTA used for furcal perforation repair
title_full A scanning electron microscopic study evaluating the sealing ability of MTA, BiodentineTM, and new light-cure MTA used for furcal perforation repair
title_fullStr A scanning electron microscopic study evaluating the sealing ability of MTA, BiodentineTM, and new light-cure MTA used for furcal perforation repair
title_full_unstemmed A scanning electron microscopic study evaluating the sealing ability of MTA, BiodentineTM, and new light-cure MTA used for furcal perforation repair
title_short A scanning electron microscopic study evaluating the sealing ability of MTA, BiodentineTM, and new light-cure MTA used for furcal perforation repair
title_sort scanning electron microscopic study evaluating the sealing ability of mta, biodentinetm, and new light-cure mta used for furcal perforation repair
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9899359/
https://www.ncbi.nlm.nih.gov/pubmed/36755683
http://dx.doi.org/10.4317/jced.59755
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