Comparative evaluation of sealing ability of two different biocompatible materials in repair of furcal perforation: An In vitro study

Purpose: The purpose of this study was to evaluate the sealing ability and microleakage of Biodentine and mineral trioxide aggregate (MTA) Repair HP as furcal perforation repair materials. Materials and Methods: Twenty permanent mandibular molars were divided for ten samples each in Group I – Biode...

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Main Authors: Rashu Grover, Gunmeen Sadana, Sunil Gupta, Teena Gupta, Manjul Mehra, Buneet Kaur
Format: Article
Language:English
Published: Wolters Kluwer Medknow Publications 2020-01-01
Series:Dentistry and Medical Research
Subjects:
Online Access:http://www.dmrjournal.org/article.asp?issn=2348-1471;year=2020;volume=8;issue=2;spage=70;epage=74;aulast=Grover
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spelling doaj-db7737bdbc05417fa39653dc676b14972020-11-25T02:45:16ZengWolters Kluwer Medknow PublicationsDentistry and Medical Research2348-14712020-01-0182707410.4103/dmr.dmr_32_20Comparative evaluation of sealing ability of two different biocompatible materials in repair of furcal perforation: An In vitro studyRashu GroverGunmeen SadanaSunil GuptaTeena GuptaManjul MehraBuneet KaurPurpose: The purpose of this study was to evaluate the sealing ability and microleakage of Biodentine and mineral trioxide aggregate (MTA) Repair HP as furcal perforation repair materials. Materials and Methods: Twenty permanent mandibular molars were divided for ten samples each in Group I – Biodentine and Group II – MTA Repair HP. After access cavity preparation, artificial perforation was created and sealed with the repair material. Specimens were suspended in 2% methylene blue dye for 24 h and then split into longitudinal sections. After examining the depth of dye penetration under stereomicroscope, microleakage was calculated. Results: A higher mean microleakage was recorded in MTA Repair HP as compared to Biodentine. Conclusion: The study showed that Biodentine shows maximum sealing ability and least microleakage when compared with MTA Repair HP.http://www.dmrjournal.org/article.asp?issn=2348-1471;year=2020;volume=8;issue=2;spage=70;epage=74;aulast=Groverbiodentinefurcal perforation repairmandibular molarsmicroleakagemineral trioxide aggregate repair hp
collection DOAJ
language English
format Article
sources DOAJ
author Rashu Grover
Gunmeen Sadana
Sunil Gupta
Teena Gupta
Manjul Mehra
Buneet Kaur
spellingShingle Rashu Grover
Gunmeen Sadana
Sunil Gupta
Teena Gupta
Manjul Mehra
Buneet Kaur
Comparative evaluation of sealing ability of two different biocompatible materials in repair of furcal perforation: An In vitro study
Dentistry and Medical Research
biodentine
furcal perforation repair
mandibular molars
microleakage
mineral trioxide aggregate repair hp
author_facet Rashu Grover
Gunmeen Sadana
Sunil Gupta
Teena Gupta
Manjul Mehra
Buneet Kaur
author_sort Rashu Grover
title Comparative evaluation of sealing ability of two different biocompatible materials in repair of furcal perforation: An In vitro study
title_short Comparative evaluation of sealing ability of two different biocompatible materials in repair of furcal perforation: An In vitro study
title_full Comparative evaluation of sealing ability of two different biocompatible materials in repair of furcal perforation: An In vitro study
title_fullStr Comparative evaluation of sealing ability of two different biocompatible materials in repair of furcal perforation: An In vitro study
title_full_unstemmed Comparative evaluation of sealing ability of two different biocompatible materials in repair of furcal perforation: An In vitro study
title_sort comparative evaluation of sealing ability of two different biocompatible materials in repair of furcal perforation: an in vitro study
publisher Wolters Kluwer Medknow Publications
series Dentistry and Medical Research
issn 2348-1471
publishDate 2020-01-01
description Purpose: The purpose of this study was to evaluate the sealing ability and microleakage of Biodentine and mineral trioxide aggregate (MTA) Repair HP as furcal perforation repair materials. Materials and Methods: Twenty permanent mandibular molars were divided for ten samples each in Group I – Biodentine and Group II – MTA Repair HP. After access cavity preparation, artificial perforation was created and sealed with the repair material. Specimens were suspended in 2% methylene blue dye for 24 h and then split into longitudinal sections. After examining the depth of dye penetration under stereomicroscope, microleakage was calculated. Results: A higher mean microleakage was recorded in MTA Repair HP as compared to Biodentine. Conclusion: The study showed that Biodentine shows maximum sealing ability and least microleakage when compared with MTA Repair HP.
topic biodentine
furcal perforation repair
mandibular molars
microleakage
mineral trioxide aggregate repair hp
url http://www.dmrjournal.org/article.asp?issn=2348-1471;year=2020;volume=8;issue=2;spage=70;epage=74;aulast=Grover
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