Vol. 5 (10) pp. 1882-1888 DOI: 10.21474/IJAR01/5715

EFFECT OF INTRAORIFICE DEPTH ON THE SEALING ABILITY OF INRAORIFICE SEALING AGENT ? AN IN VITRO STUDY.

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Abstract

Aim: The present study was conducted to evaluate the effect of intraorifice depth on the sealing ability of intraorifice sealing agent using methylene blue as a dye tracer. Material And Method: Twenty extracted premolars were decoronated , cleaned and shaped and obturated with guttapercha points and following which guttapercha was removed from each group at varying depths of 1mm, 2mm and 3mm respectively and these empty canal space were then filled with light cure glass ionomer cement as intraorifice sealing agent and then the microleakage was measured in each group by assessing the amount of dye penetration using a stereomicroscope by using methylene blue as the dye tracer after the specimens were sectioned longitudinally. Results: According to the study conducted group 3(p=0.001<0.000) showed less leakage when compared to the other three groups. However there was no significant difference between group 2 and group 1. Conclusion: In the current study , GROUP 3 with 3 mm of light cure glass ionomer cement showed the least microleakage due to the superior sealing properties of the material.

How to Cite This Article

Dr. Niky Elizabeth Jacob Oommen, Dr. S.Vidhyadhara Shetty and Dr. Harish Shetty. (2017); EFFECT OF INTRAORIFICE DEPTH ON THE SEALING ABILITY OF INRAORIFICE SEALING AGENT ? AN IN VITRO STUDY., International Journal of Advanced Research (IJAR), 5 (10), 1882-1888, ISSN 2320-5407. DOI: https://doi.org/10.21474/IJAR01/5715

Corresponding Author

Dr.Niky Elizabeth Jacob Oommen
Post Graduate student,Department of Conservative Dentistry and Endodontics, Yenepoya Dental College, Mangalore

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References

  1. Jiang QZ, Zhang QI, Jie HE. An evaluation of intraorifice sealing material for coronal microleakage in obturated root canals. Chin J Dent Res.2009;12(1):31-6.
  2. Parekh B, Irani RS, Sathe S, Hegde V. Intraorifice sealing ability of different materials in endodontically treated teeth: an in vitro study. J conserv Dent.? 2014;17(3):234-7.
  3. GomaaMM,GhulmanMA.Evaluation of four materials as barriers to coronal microleakage in a novel inraorifice cavity design.International journal of clinical dentistry ;6(2):150-7
  4. Shahi S, Samiei M, Rahimi S, NezamiH.In vitro comparison of dye penetration through four temporary restorative materials. Iran Endod J.2010;5(2):59-62
  5. Malik G, P Bogra, Singh S, Samra RK. Comparative evaluation of intracanal sealing ability of mineral trioxide aggregate and glass ionomer cement: an in vitro J Conserv Dent. 2013;16(6):540- 45.
  6. Wolanek AG, Loushine JR, Weller N, Kimbrough FW,VolkmannRK.In vitro bacterial penetration of endodontically treated teeth coronally sealed with a dentin bonding agent.Journal of Endodontics.2001;27(5):354-7
  7. Barrieshi-Nusair KM, Hammad HM. Intracoronal sealing comparison of mineral trioxide aggregate and glass ionomer. Quintessence Int. 2005;36:539-45
  8. Sanchez BEM,CastilloGS,RodriguezGPM,LuqueFMC.Intraorifice sealing ability of different materials in endodontically treated teeth. Med Oral Patol Oral Cir Bucal.2011 Jan 1;16 (1):e105-9.
  9. Verisimmo MD, Vale DSM.Methodolgies for assessment of apical and coronal leakage of endodontic filling materials-a critical review.Journal of Oral Science.2006;48(3):93-8
  10. Divya KT, Satish G, Srinivasa TS, Reddy V,? Umashankar K,? Rao BM. Comparative evaluation of sealing ability of four different restorative materials used as coronal sealants: an in vitro J Int Oral Health.2014;6(4):12-7.
  11. Shetty A, Srinivasan R, Nasreen F.Comparison of the sealing ability of mineral trioxide aggregate and three conventional restorative materials when placed coronally over gutta-percha as sealing material - An invitrostudy.Endodontology : 15-22
  12. Britto RL, Grimaudo JN, Vertucci JF. Coronal Microleakage Assessed by Polymicrobial Markers. J Contemp Dent Pract 2003 August;(4)3:001-010.
  13. Saunders WP, Saunders EM. Coronal leakage as a cause of failure in root-canal therapy: a review. Endod Dent Traumatol 1994; 10: 105-108.
  14. Parolia A, Acharya RS, Saraswathi V, Ballal V, Mohan M.Sealing Ability of Four Materials in the Orifice of Root Canal Systems Obturated With Gutta-Percha.Endodontolgy:65-70
  15. Wu KM, WesselinkRP.Endodontic leakage studies reconsidered.Part-1:Methodology,application and relevance.InternationalEndodntic Journal 1993;26:37-43
  16. Mavec CJ, Johnson DJ, Blundell ER. Effects of an Intracanal Glass Ionomer Barrier on Coronal Microleakage in Teeth with Post Space. J Endod 2006;32:120 ?22
  17. Sauaia TS, GomesPFA , Pinheiro E, Zaia A A,Ferraz CCR, Souza FJ, Piracicaba et al. Microleakage evaluation of intraorifice sealing materials in endodontically treated teeth. Oral Surg,OralMed,OralPathol,OralRadiolEndod. 2006;102(2):242-46.
  18. Yavari H, Samiei M, Shahi S, Aghazadeh M, Jafari F, Abdolrahimi M,?? Asgary S. Micro leakage comparison of four dental materials as intra orifice barriers in endodontically treated teeth. Iran Endod J.2012;7(1):25-30.
  19. Yavari H, Samiei M, Eskandarinezhad M , Shahi S , Aghazadeh M, Pasvey Y. An in vitro comparison of coronal micro leakage of three orifice barriers filling materials. Iran Endod J. 2012;7(3):156-60.
  20. Wolcott JF, Hicks ML, Himel VT. Evaluation of pigmented intraorifice barriers in endodontically treated teeth. J Endod. 1999;25(9):589-92.
  21. Bailon-Sanchez ME, Gonzalez-Castillo S, Gonzalez-Rodriguez MP, Poyatos-Martinez R, Ferrer-Luque CM. Intraorifice sealing ability of different materials in endodontically treated teeth. Med Oral Patol Oral Cir Bucal. 2011;16(1):e105-9.
  22. Baryam HM, Celikten B, Baryam E, Bozkurt A. Fluid flow evaluation of coronalmicroleakageintraorifice barrier materials in endodontically treated? teeth. EurJ Den.2013;7(3):359-62.
  23. Ghulman AM , Gomaa M.Effect of Intra-Orifice Depth on Sealing Ability of FourMaterials in the Orifices of Root-Filled Teeth: An Ex-Vivo Study.International Journal of Dentistry.2012
  24. M. Jack and G. G. Goodell, ?In vitro comparison of microleakage between resilon alone and gutta-percha with a glass-ionimerintraorifice barrier using fluid filtration model,?Journal of Endodontics, vol. 34, no. 6, pp. 718?720, 2008.
  25. Mohammadi and A. Khademi, ?An evaluation of MTA cements as coronal barrier,? International Endodontic Journal, vol. 1, pp. 106?108, 2006.
  26. Jenkins, J. Kulild, K. Williams, W. Lyons, and C. Lee, ?Sealing ability of three materials in the orifice of root canal systems obturated with gutta-percha,? Journal of Endodontics,vol. 32, no. 3, pp. 225?227, 2006.