Open Access

Histological Evaluation of Periradicular Tissue Inflammatory Reactions and Calcified Tissue Formations After Implantation of Experimental Calcium Silicate and Hydroxyapatite Based Nanostructural Cements Into Root Canals of Rabbits Teeth


Cite

1. Torabinejad M, Parirokh M, Dummer PMH: Mineral trioxide aggregate and other bioactive endodontic cements: an updated overview-part I: vital pulp therapy. Int Endod J 2018, 51:177-205.10.1111/iej.1284128836288 Search in Google Scholar

2. Torabinejad M, Parirokh M, Dummer PMH: Mineral trioxide aggregate and other bioactive endodontic cements: an updated overview-part II: other clinical applications and complications. Int Endod J 2018, 51:284-317.10.1111/iej.1284328846134 Search in Google Scholar

3. Takita T, Hayashi M, Takeichi O et al: Effect of Mineral trioxide aggregate on proliferation of cultured human dental pulp cells. Int Endod J 2006, 39:415-422.10.1111/j.1365-2591.2006.01097.x16640642 Search in Google Scholar

4. Silva LAB, Pieroni KAMG, Nelson-Filho P et al: Furcation perforation.periradicular tissue response to Biodentine as a repair material by histopathologic and indirect immunofluorescence analyses. J Endod 2017, 43:1137-1142.10.1016/j.joen.2017.02.00128476469 Search in Google Scholar

5. Hakki SS, Bozkurt BS, Ozcopur B, GandolfiMG, Prati C, Belli S: The response of cementoblasts to calcium phosphate resin-based and calcium silicate-based commercial sealers. Int Endod J 2013, 46:242-252.10.1111/j.1365-2591.2012.02122.x23005923 Search in Google Scholar

6. Okiji T, Yoshiba K: Reparative dentinogenesis induced by mineral trioxide aggregate: a review from the biological and physicochemical points of view. Int J Dent 2009; 2009.10.1155/2009/464280283731420339574 Search in Google Scholar

7. Kum KY, Kim EC, Yoo YJ. Et al: Trace metal contents of three tricalcium silicate materials: MTA Angelus, Micro Mega MTA and Bioaggregate. Int Endod J 2014, 47:704-710.10.1111/iej.1220824175874 Search in Google Scholar

8. Camilleri J: Hydratation characteristics of calcium silicate cements with alternative radiopacifiers used as root-end filling materials. J Endod 2010, 36:502-508.10.1016/j.joen.2009.10.01820171371 Search in Google Scholar

9. Ramos JC, Palma PJ, Nascimento R et al: 1-year in vitro evaluation of tooth discoloration induced by 2 calcium silicate-based cements. J Endod 2016, 42:1403-1407.10.1016/j.joen.2016.06.01227497511 Search in Google Scholar

10. Camilleri J, Sorrentino F, Damidot D. Investigation of the hydration and bioactivity of radiopacified tricalcium silicate cement, Biodentine and MTA Angelus. Dent Mater 2013, 29:580-593.10.1016/j.dental.2013.03.00723537569 Search in Google Scholar

11. Huan Z, Chang J: Calcium-phosphate-silicate composite bone cement: self-setting properties and in vitro bioactivity. J Mater Sci: Mater Med 2009, 20:833-841.10.1007/s10856-008-3641-919034622 Search in Google Scholar

12. Zhao Q, Qian J, Zhou H, Yuan Y, Mao Y, Liu C: In vitro osteoblast-like and endothelial cells response to calcium silicate/calcium phosphate cement. Biomed Mater 2010, 5:1-8.10.1088/1748-6041/5/3/03500420404401 Search in Google Scholar

13. Asgary S, Eghbal MJ, Parirokh M, Ghoddusi J: Comparason of Mineral trioxide aggregate’s composition with Portland cements and a new endodontic cement. J Endod 2009, 35:243-250.10.1016/j.joen.2008.10.02619166783 Search in Google Scholar

14. Saghiri MA, Godoy FG, Gutmann JL, LotfiM, Asatourian A, Sheibani N, Elyasi M: The effect of pH on solubility of nano-modifiedd endodontic cements. J Conserv Dent 2014,17:13-17.10.4103/0972-0707.124096391537624554853 Search in Google Scholar

15. De Deus G, Canabarro A, Alves G, linhares A, Senne MI, Granjeiro JM: Optimal cytocompatibility of a bioceramic nanoparticulate cement in primary human mesenchymal cells. J Endod 2009, 35:1387-1390.10.1016/j.joen.2009.06.02219801236 Search in Google Scholar

16. Khalil WA, Eid NF: Biocompatibility of BioAggregate and Mineral trioxide aggregate on the liver and kidney. Int Endod J 2013, 46:730-737.10.1111/iej.1205023464727 Search in Google Scholar

17. Jokanović V, Čolović B, Jokanović B, Živković S: Superplastic, quick-bonding endodontic mixtures and their hydration. Int Jour Appl Cer Tech 2015;12(S2).10.1111/ijac.12234 Search in Google Scholar

18. Opačić-Galić V, Petrović V, Živković S. et al: New nanostructural biomaterials based on active calcium silicate systems and hydroxyapatite:characterization and genotoxicity in human peripheral blood lymphocytes. Int Endod J 2013, 46:506-516.10.1111/iej.1201723173688 Search in Google Scholar

19. Petrović V, Opačić Galić V, Jokanović V, Jovanović M, Basta Jovanović G, Živković S: Biocompatibility of a new nanomaterial based on calcium silicate implanted in subcutaneous connective tissue of rats. Acta Vet-Beograd 2012, 62:697-708.10.2298/AVB1206697P Search in Google Scholar

20. Opačić-Galić V, Petrović V, Jokanović V, Živković S: Histological evaluation of tissue reactions to newly synthetized calcium silicate-and-hydroxyapatite-based bioactive materials-In vivo study. Srp Arh Celok Lek 2017, 145:370-377.10.2298/SARH160719063O Search in Google Scholar

21. International Organization for Standardization. ISO 10993: 2009 ed. Search in Google Scholar

22. International Standard Organization. ISO 7405 Dentistry-Preclinical Evaluation of Biocompatibility of Medical Device Used in Dentistry-Test method for Dental Material. Geneva, Switzerland;1997. Search in Google Scholar

23. Accorinte Mde L, Holland R, Reis A, Bortoluzzi MC, Murata SS, Dezan E, Souza V, Alessandro LD: Evaluation of mineral trioxide aggregate and calcium hydroxide cement as pulp-capping agents in human teeth. J Endod 2008, 34:1-6.10.1016/j.joen.2007.09.01218155482 Search in Google Scholar

24. Tran XV, Gorin C, Willig C, et al: Effect of a calcium-silicate-based restorative cement on pulp repair. J Dent Res 2012, 91:1166-1171.10.1177/002203451246083322983409 Search in Google Scholar

25. Maslamani M, Almusawi A; Joseph B, Gabato S, Andersson L: An experimental model for studies on delayed tooth replantation and ankylosis in rabbits. Dent Traumatol 2016, 32:443-449.10.1111/edt.1228727241941 Search in Google Scholar

26. Zarrabi MH, Javidi M, Jafarian AH, Joushan B: Histologic assessment of human pulp response to capping with mineral trioxide aggregate and a novel endodontic cement. J Endod 2010, 36:1778-1781.10.1016/j.joen.2010.08.02420951286 Search in Google Scholar

27. Chen CC, Shie MY, Ding SJ: Human dental pulp cell response to new calcium silicate-based endodontic materials. Int Endod J 2011, 44:836-842.10.1111/j.1365-2591.2011.01890.x21535023 Search in Google Scholar

28. Sangwan P, Sangwan A, Duha J, Rohilla A: Tertiary dentinogenesis with calcium hydroxide: A review of proposed mechanisms. Int Endod J 2013, 46:3-19.10.1111/j.1365-2591.2012.02101.x22889347 Search in Google Scholar

29. Leprince JG, Zeitlin BD, Tolar M, Peters OA: Interaction between immune system and mesenchymal stem cell in dental pulp and periapical tissue. Int Endod J 2012, 45:689-701.10.1111/j.1365-2591.2012.02028.x22429087 Search in Google Scholar

30. GandolfiMG, Siboni F, Primus CM, Prati C: Ion release, porosity, solubility and bioactivity of MTA Plus tricalcium silicate. J Endod 2014, 40:1632-1637.10.1016/j.joen.2014.03.02525260736 Search in Google Scholar

31. Silva EJNL, Rosa TP, Herrera DR, Jacinto RC, Gomes BPFA, Zaia AA: Evaluation of cytotoxicity and physicochemical properties of calcium silicate-based endodontic sealer MTA Fillapex. J Endod 2013, 39:274-277.10.1016/j.joen.2012.06.03023321245 Search in Google Scholar

32. Pietak AM, Reid JW, Stott MJ, Sayer M: Silicon substitution in the calcium phosphate bioceramics. Biomater 2007, 28:4023-4032.10.1016/j.biomaterials.2007.05.00317544500 Search in Google Scholar

33. Li P, de Groot K: Better bioactive ceramics through sol-gel process. J Sol-Gel Sci Tech 1994, 2:797-801.10.1007/BF00486353 Search in Google Scholar

34. Anselme K: Osteoblast adhesion on biomaterials. Biomat 2000, 21:667-681.10.1016/S0142-9612(99)00242-2 Search in Google Scholar

35. Zhang S, Yang X, Fan M: Bioaggregate and iRoot BP Plus optimize the proliferation and mineralization ability of human dental pulp cells. Int Endod J 2013, 46:923-929.10.1111/iej.1208223480297 Search in Google Scholar

36. Gillen BM, Looney SW, Gu L, et al: Impact of the quality of coronal restoration versus the quality of root canal fillings on success of root canal treatment: a systematic review and meta-analysis. J Endod 2011, 37:895-902.10.1016/j.joen.2011.04.002381552721689541 Search in Google Scholar

eISSN:
1820-7448
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Medicine, Veterinary Medicine