1. Lone MM, Khan FR, Lone MA. Evaluation of microleakage in single-rooted teeth obturated with thermoplasticized gutta-percha using various endodontic sealers: an in-vitro study. J Coll Physicians Surg Pak. 2018; 28 (5): 339-43S. [ DOI:10.29271/jcpsp.2018.05.339] [ PMID] 2. Nandini S, Velmurugan N, Kandaswamy D. Removal efficiency of calcium hydroxide intracanal medicament with two calcium chelators: volumetric analysis using spiral CT, an in vitro study. J Endod. 2006; 32 (11): 1097-101. [ DOI:10.1016/j.joen.2006.06.005] [ PMID] 3. Sokhi RR, Sumanthini M, Shenoy VU, Bodhwani MA. Effect of calcium hydroxide based intracanal medicaments on the apical sealing ability of resin based sealer and guttapercha obturated root canals. J Clin Diagn Res. 2017; 11 (1): ZC75-ZC79. [ DOI:10.7860/JCDR/2017/22834.9202] [ PMID] [ ] 4. Mohammadi Z, Dummer PMH. Properties and applications of calcium hydroxide in endodontics and dental traumatology. Int Endod J. 2011; 44 (8): 697-730. [ DOI:10.1111/j.1365-2591.2011.01886.x] [ PMID] 5. Aguilar P, Ratanawatanasin T, Detchdanun L, Peerawong W, Phumpatrakom P. Effect of Calcium Hydroxide as a Temporary Filling for Post Space on Apical Leakage of Epoxy Resin-Based Sealer. J Int Dent Medical Res. 2021; 14 (1): 93-98. 6. Salgado RJC, Moura-Netto C, Yamazaki AK, Cardoso LN, de Moura AAM, Prokopowitsch I. Comparison of different irrigants on calcium hydroxide medication removal: microscopic cleanliness evaluation. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 2009; 107 (4): 580-84. [ DOI:10.1016/j.tripleo.2008.12.008] [ PMID] 7. Rödig T, Vogel S, Zapf A, Hülsmann M. Efficacy of different irrigants in the removal of calcium hydroxide from root canals. Int Endod J. 2010; 43 (6): 519-27. [ DOI:10.1111/j.1365-2591.2010.01709.x] [ PMID] 8. Balvedi R, Versiani M, Manna F, Biffi J. A comparison of two techniques for the removal of calcium hydroxide from root canals. Int Endod J. 2010; 43 (9): 763-68. [ DOI:10.1111/j.1365-2591.2010.01718.x] [ PMID] 9. Zorzin J, Wießner J, Wießner T, Lohbauer U, Petschelt A, Ebert J. Removal of radioactively marked calcium hydroxide from the root canal: influence of volume of irrigation and activation. J Endod. 2016; 42 (4): 637-40. [ DOI:10.1016/j.joen.2016.01.005] [ PMID] 10. Gurgel-Filho ED, Leite FM, Lima JBd, Montenegro JPC, Saavedra F, Silva EJNL. Comparative evaluation of push-out bond strength of a MTA-based root canal sealer. Braz J Oral Sci. 2014; 13: 114-17. [ DOI:10.1590/1677-3225v13n2a07] 11. Forough Reyhani M, Ghasemi N, Rahimi S, Salem Milani A, Mokhtari H, Shakouie S, et al. Push-Out Bond Strength of Dorifill, Epiphany and MTA-Fillapex Sealers to Root Canal Dentin with and without Smear Layer. Iran Endod J. 2014; 9 (4): 246-50. 12. Kurup D, Nagpal AK, Shetty S, Mandal TK, Anand J, Mitra R. Data on the push-out bond strength of three different root canal treatment sealers. Bioinformation. 2021; 17 (1): 67-72. [ DOI:10.6026/97320630017067] [ PMID] [ ] 13. Jafari F, Aghazadeh M, Jafari S, Khaki F, Kabiri F. In vitro Cytotoxicity Comparison of MTA Fillapex, AH-26 and Apatite Root Canal Sealer at Different Setting Times. Iran Endod J. 2017; 12 (2): 162-67. 14. Moazami F, Naseri M, Malekzade P. Different Application Methods for Endoseal MTA Sealer: A Comparative Study. Iran Endod J. 2020; 15 (1): 44-49. 15. Khatib MS, Devarasanahalli SV, Aswathanarayana RM, Das P, Nadig RR. Comparison of the sealing ability of Endocem mineral trioxide aggregate and Endoseal mineral trioxide aggregate as a furcal perforation repair material under the operating microscope: An in-vitro study. Endodontology. 2019; 31 (1): 25-28 [ DOI:10.4103/endo.endo_49_18] 16. Lee JK, Kwak SW, Ha J-H, Lee W, Kim H-C. Physicochemical properties of epoxy resin-based and bioceramic-based root canal sealers. Bioinorg Chem Appl. 2017; 2017: 2582849. [ DOI:10.1155/2017/2582849] [ PMID] [ ] 17. Tanomaru-Filho M, Cristine Prado M, Torres FFE, Viapiana R, Pivoto-João MMB, Guerreiro-Tanomaru JM. Physicochemical properties and bioactive potential of a new epoxy resin-based root canal sealer. Brazil Dent J. 2019; 30: 563-68. [ DOI:10.1590/0103-6440201802861] [ PMID] 18. Maan S, Bhatt VD, Singh R, Gupta S, Noorain SA, Gill A, et al. The effect of four different intracanal medicaments on the push-out bond strength of root canal sealers. J Med Life. 2022; 15 (4): 448-53. [ DOI:10.25122/jml-2020-0104] [ PMID] [ ] 19. Tomer AK, Gupta R, John AG, Ramachandran M, Ajaz A, Behera A, et al. Evaluating the effect of calcium hydroxide based intracanal medicaments on the sealing ability of MTA based sealer-An in vitro study. Int J Appl Dental Sci. 2019; 5 (5): 21-24. 20. Sobhnamayan F, Adl A, Sedigh-Shams M, Mirkhaghani H. Effect of triple antibiotic paste on the bond strength of epoxy and methacrylate resin-based sealers to root canal dentin. J Conserv Dent. 2022; 25 (4): 426-30. [ DOI:10.4103/jcd.jcd_150_22] [ PMID] [ ] 21. Khurana N, Chourasia HR, Singh G, Mansoori K, Nigam AS, Jangra B. Effect of Drying Protocols on the Bond Strength of Bioceramic, MTA and Resin-based Sealer Obturated Teeth. Int J Clin Pediatr Dent. 2019; 12 (1): 33-36. [ DOI:10.5005/jp-journals-10005-1589] [ PMID] [ ] 22. Nagas E, Uyanik MO, Eymirli A, Cehreli ZC, Vallittu PK, Lassila LV, et al. Dentin moisture conditions affect the adhesion of root canal sealers. J Endod. 2012; 38 (2): 240-4. [ DOI:10.1016/j.joen.2011.09.027] [ PMID] 23. Araghi S, Mirzaee SS, Soltani P, Miri S, Miri M. The effect of calcium hydroxide on the apical microleakage of canals filled with bioceramic and resin sealers. Giornale Italiano di Endodonzia. 2020; 34 (2): 151-56. 24. analysis. Heliyon. 2021; 7 (7): e07494. [ DOI:10.1016/j.heliyon.2021.e07494] [ PMID] [ ] 25. Dioguardi M, Alovisi M, Sovereto D, Troiano G, Malagnino G, Di Cosola M, et al. Sealing ability and microbial leakage of root-end filling materials: MTA versus epoxy resin: A systematic review and meta-analysis. Heliyon. 2021; 7 (7): e07494. [ DOI:10.1016/j.heliyon.2021.e07494] [ PMID] [ ] 26. Trivedi S, Chhabra S, Bansal A, Kukreja N, Mishra N, Trivedi A, et al. Evaluation of Sealing Ability of Three Root Canal Sealers: An In Vitro Study. J Contemp Dent Pract. 2020; 21 (3): 291-95. [ DOI:10.5005/jp-journals-10024-2768] [ PMID] 27. Mohamed El Sayed MAA, Al Husseini H. Apical dye leakage of two single-cone root canal core materials (hydrophilic core material and gutta-percha) sealed by different types of endodontic sealers: An in vitro study. J Conserv Dent. 2018; 21 (2): 147-52. [ DOI:10.4103/JCD.JCD_154_17] [ PMID] [ ] 28. Sarrafan A, Soleymani A, Bagheri Chenari T, Seyedmajidi S. Comparison of push-out bond strength of endodontic sealers after root canal drying with different techniques. Clin Exp Dent Res. 2023; 9 (2): 314-21. [ DOI:10.1002/cre2.720] [ PMID] [ ] 29. Donnermeyer D, Dornseifer P, Schäfer E, Dammaschke T. The push-out bond strength of calcium silicate-based endodontic sealers. Head Face Med. 2018; 14 (1): 13-22. [ DOI:10.1186/s13005-018-0170-8] [ PMID] [ ] 30. Loushine BA, Bryan TE, Looney SW, Gillen BM, Loushine RJ, Weller RN, et al. Setting properties and cytotoxicity evaluation of a premixed bioceramic root canal sealer. J Endod. 2011; 37 (5): 673-7. [ DOI:10.1016/j.joen.2011.01.003] [ PMID] 31. Vitti RP, Prati C, Silva EJ, Sinhoreti MA, Zanchi CH, de Souza e Silva MG, et al. Physical properties of MTA Fillapex sealer. J Endod. 2013; 39 (7): 915-8. [ DOI:10.1016/j.joen.2013.04.015] [ PMID] 32. Silva EJ, Rosa TP, Herrera DR, Jacinto RC, Gomes BP, Zaia AA. Evaluation of cytotoxicity and physicochemical properties of calcium silicate-based endodontic sealer MTA Fillapex. J Endod. 2013; 39 (2): 274-7. [ DOI:10.1016/j.joen.2012.06.030] [ PMID] 33. Borges ÁH, Orçati Dorileo MCG, Villa RD, Borba AM, Semenoff TADV, Guedes OA, et al. Physicochemical Properties and Surfaces Morphologies Evaluation of MTA FillApex and AH Plus. Sci World J. 2014; 2014: 589732. [ DOI:10.1155/2014/589732] [ PMID] [ ] 34. Sagsen B, Ustün Y, Demirbuga S, Pala K. Push-out bond strength of two new calcium silicate-based endodontic sealers to root canal dentine. Int Endod J. 2011; 44 (12): 1088-91. [ DOI:10.1111/j.1365-2591.2011.01925.x] [ PMID] 35. Orstavik D, Haapasalo M. Disinfection by endodontic irrigants and dressings of experimentally infected dentinal tubules. Endod Dent Traumatol. 1990; 6 (4): 142-9. [ DOI:10.1111/j.1600-9657.1990.tb00409.x] [ PMID] 36. Siqueira JF, Jr., de Uzeda M. Disinfection by calcium hydroxide pastes of dentinal tubules infected with two obligate and one facultative anaerobic bacteria. J Endod. 1996; 22 (12): 674-6. [ DOI:10.1016/S0099-2399(96)80062-8] [ PMID] 37. Vo K, Daniel J, Ahn C, Primus C, Komabayashi T. Coronal and apical leakage among five endodontic sealers. J Oral Sci. 2022; 64 (1): 95-98. [ DOI:10.2334/josnusd.21-0433] [ PMID] 38. Aracena D, Bustos L, Aracena A, Alvarez P, Hernández-Vigueras S, ARACENA D, et al. Apical Sealing Efficacy of the Bioceramic Cements Bio Root and MTA Fillapex: An ex vivo Study. Int J Odontostomat. 2021; 15 (2): 473-78. [ DOI:10.4067/S0718-381X2021000200473]
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