Effect of commonly used irrigants on the colour stabilities of two calcium-silicate based material

Purpose: The aim of present study was to evaluate the color stability of calcium-silicate based cements (CSC) Mineral Trioxide Aggregate (MTA) and BiodentineTM when exposed to endodontic irrigating solutions 5% Sodium hypochlorite (NaOCl) or 2% Chlorhexidine (CHX). Materials and Methods: A total of 60 (n=30) cylindrical samples (10 mm diameter, 2 mm height) were prepared by manipulating white MTA Angelus (Angelus, Londrina, PR, Brazil) and BiodentineTM (Septodent, Saint Maur, France) according to manufacturer's instructions. These samples were immersed in 5% sodium hypochlorite (Prime Dental Products Pvt. Ltd.,Mumbai, India), 2% chlorhexidine gluconate (Dentochlor, Saronno VA, Italia), or distilled water for 24 hours. Color changes were measured using UV spectrophotometer (UV-1650, Shimadzu, Europe) and the values were tabulated. Results: A significant difference was observed between group I and II with respect to both parameters A & B (p

___

  • 1. Nask KD, Brown J, Hicks ML. Private practicing endodontists: production of endodontic services and implication for workplace policy. J Endod. 2002; 28:699-705.
  • 2. Ma J, Shen Y, Stojicic S, Haapasalo M. Biocompatibility of two novel root repair materials. J Endod. 2011; 37: 793–8.
  • 3. Parirokh M, Torabinejad M. Mineral trioxide aggregate: a comprehensive literature review—part III: clinical applications, drawbacks, and mechanism of action. J Endod. 2010; 36: 400–13.
  • 4. Sarkar NK, Caicedo R, Ritwik P, Moiseyeva R, Kawashima I. Physicochemical basis of the biologic properties of mineral trioxide aggregate. J Endod. 2005; 31: 97–100.
  • 5. Tomson PL, Grover LM, Lumley PJ, Sloan AJ, Smith AJ, Cooper PR. Dissolution of bio-active dentine matrix components by mineral trioxide aggregate. J Dent. 2007;35:636–42.
  • 6. Sarkar NK, Caicedo R, Ritwik P, Moiseyeva R, Kawashima I. Physicochemical basis of the biologic properties of mineral trioxide aggregate. J Endod. 2005;31:97–100.
  • 7. Kim JR, Nosrat A, Fouad AF. Interfacial characteristics of BiodentineTM and MTA with dentine in simulated body fluid. J Dent. 2015 Feb;43(2):241-7.
  • 8. Abdullah D, Pitt Ford TR, Papaioannou S, Nicholson J, McDonald F. An evaluation of accelerated Portand cement as a restorative material. Biomaterial. 2002; 23:4001-10.
  • 9. G. Koubi, P. Colon, J.-C. Franquin et al. Clinical evaluation of the performance and safety of a new dentine substitute, BiodentineTM in the restoration of posterior teeth- a prospective study. Clinical Oral Investigations. 2013;17(1):243-249
  • 10. Howard W. Roberts, Jeffrey M. Toth, David W. Berzins, David G. Charlton. Mineral trioxide aggregate material used in endodontic treatment: A Review of the literature Dent Mat. 2008;24 :149-164
  • 11. Khorkhar Z, Razzoog M, Yaman P. Color stability of restorative resins. Quintessence Int. 1991; 22:733-7
  • 12. van der Burgt TP, Mullaney TP, Plasschaert AJ. Tooth discoloration induced by endodontic sealers.Oral Surg Oral Med Oral Pathol. 1986 Jan;61(1):84-9.
  • 13. Guttierrez JH, Guzman M. Tooth discoloration in endodontic procedures. Oral Surg Oral Med Oral Pathol. 1968;26:706-11
  • 14. X. M.B. Kayahan, M.H. Nekoofar, A. McCann et al. Effect of acid etching procedures on the compressive strength of four calcium-silicate-based endodontic cements. Journal of Endodontics. 2013;39(12):1646-8.
  • 15. Darvell BW, Wu RC. “MTA”—an hydraulic silicate cement: review update and setting reaction. Dent Mater. 2011; 27: 407–22.
  • 16. Camilleri J. The chemical composition of mineral trioxide aggregate. J Conserv Dent. 2008; 11: 141–3.
  • 17. Parirokh M, Torabinejad M. Mineral trioxide aggregate: a comprehensive literature review—part III: clinical applications, drawbacks, and mechanism of action. J Endod. 2010; 36: 400–13.
  • 18. Wang X, Chang J, Hu S. A study on the sealing ability and antibacterial activity of Ca3SiO5/CaCl2 composite cement for dental applications. Dent Mater. 2012; 31: 617–22.
  • 19. Sarkar NK, Caicedo R, Ritwik P, Moiseyeva R, Kawashima I. Physicochemical basis of the biologic properties of mineral trioxide aggregate. J Endod. 2005; 31: 97–100.
  • 20. Laurent P, Camps J, De Meo M, et al. Induction of specific cell responsesto a Ca(3)SiO(5)- based posterior restorative material. Dent Mater. 2008;24:1486-94
  • 21. Bortoluzzi EA, Araújo GS, Guerreiro Tanomaru JM, TanomaruFilho M. Marginal gingiva discoloration by gray MTA: a case report. J Endod. 2007; 33:325–327
  • 22. FelmanD, ParashosP. Corona tooth discoloration and white mineral trioxide aggregate. J Endod. 2013; 39:484
  • 23. Ioannidis K, Mistakidis I, Karagiannis V. Spectrophotometric analysis of coronal discoloration induced by grey and white MTA. Int Endod J. 2013;46:137–144
  • 24. Heyden G. Relation between locally high concentration of chlorhexidine and staining as seen in the clinic.J. Periodontal Res Suppl. 1973;8;76-80.
  • 25. Septodont BiodentineTM™ Active Biosilicate Technology™ Scientific file 2010.
  • 26. KeskinC, DemiryurekEO, OzyurekT.Color stabilities of calcium-silicate-based materials in contact with different irrigation solutions. J Endod. Mar. 2015;41(3):409-11.
  • 27. Bhavya B, Sadique M, Simon EP, Ravi SV, Lal S. Spectrophotometric analysis of coronal discoloration induced by white mineral trioxide aggregate and BiodentineTM: An in vitro study. J Conserv Dent. 2017;Jul-Aug;20(4):237-240.
  • 28. Camilleri J. Color stability of white mineral trioxide aggregate in contact with hypochlorite solution. J Endod. 2014;40:436–40.
  • 29. BiodentineTM Active Biosilicate Technology Scientific file, Septodont, Paris, France.
  • 30. J. Camilleri. Investigations of BiodentineTM as a dentine replacement material. Journal of Dentistry. 2013; 41(7):600-610.