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Effect of the type of resin cement on the fracture resistance of chairside CAD-CAM materials after aging

  • Received : 2023.03.28
  • Accepted : 2023.06.20
  • Published : 2023.06.30

Abstract

PURPOSE. The study objective was to evaluate the influence of the type of resin cement on the flexural strength and load to fracture of two chairside CADCAM materials after aging. MATERIALS AND METHODS. A polymer-infiltrated ceramic network (PICN) and a nanoceramic resin (RNC) were used to produce the specimens. Two types of dual-cure resin cements, a self-adhesive and a universal, were investigated. Bilayer specimens were produced (n = 10) and aged for 6 months in a humid environment before the biaxial flexural strength test (σf). Bonded specimens were subjected to a mechanical aging protocol (50 N, 2 Hz, 37℃ water, 500,000 cycles) before the compressive load test (Lf). σf and Lf data were analyzed using two-way ANOVA and Tukey tests (α = .05). Chi-square test was used to analyze the relationship between failure mode and experimental group (α = .05). RESULTS. The type of resin cement and the interaction between factors had no effect on the σf and Lf of the specimens, while the type of restorative material was significant. RNC had higher σf and Lf than PICN. There was a significant association among the type of cracks identified for specimens tested in Lf and the restorative material. CONCLUSION. The type of resin cement had no effect on the flexural strength and load to fracture of the two investigated CAD-CAM chairside materials after aging.

Keywords

Acknowledgement

The authors thank PIBIC/CNPq (118864/2018-1), PRO-BIC/FAPERGS, CAPES (Finance Code 001).

References

  1. Sonza QN, Della Bona A, Pecho OE, Borba M. Effect of substrate and cement on the final color of zirconia-based all-ceramic crowns. J Esthet Restor Dent 2021;33:891-8. https://doi.org/10.1111/jerd.12632
  2. Silva LHD, Lima E, Miranda RBP, Favero SS, Lohbauer U, Cesar PF. Dental ceramics: a review of new materials and processing methods. Braz Oral Res 2017;31:e58.
  3. Della Bona A, Corazza PH, Zhang Y. Characterization of a polymer-infiltrated ceramic-network material. Dent Mater 2014;30:564-9. https://doi.org/10.1016/j.dental.2014.02.019
  4. Facenda JC, Borba M, Corazza PH. A literature review on the new polymer-infiltrated ceramic-network material (PICN). J Esthet Restor Dent 2018;30:281-6. https://doi.org/10.1111/jerd.12370
  5. Coldea A, Swain MV, Thiel N. Mechanical properties of polymer-infiltrated-ceramic-network materials. Dent Mater 2013;29:419-26. https://doi.org/10.1016/j.dental.2013.01.002
  6. Coldea A, Fischer J, Swain MV, Thiel N. Damage tolerance of indirect restorative materials (including PICN) after simulated bur adjustments. Dent Mater 2015;31:684-94. https://doi.org/10.1016/j.dental.2015.03.007
  7. Belli R, Wendler M, de Ligny D, Cicconi MR, Petschelt A, Peterlik H, Lohbauer U. Chairside CAD/CAM materials. Part 1: Measurement of elastic constants and microstructural characterization. Dent Mater 2017;33:84-98. https://doi.org/10.1016/j.dental.2016.10.009
  8. Choi BJ, Yoon S, Im YW, Lee JH, Jung HJ, Lee HH. Uniaxial/biaxial flexure strengths and elastic properties of resin-composite block materials for CAD/CAM. Dent Mater 2019;35:389-401. https://doi.org/10.1016/j.dental.2018.11.032
  9. Awada A, Nathanson D. Mechanical properties of resin-ceramic CAD/CAM restorative materials. J Prosthet Dent 2015;114:587-93. https://doi.org/10.1016/j.prosdent.2015.04.016
  10. El Zhawi H, Kaizer MR, Chughtai A, Moraes RR, Zhang Y. Polymer infiltrated ceramic network structures for resistance to fatigue fracture and wear. Dent Mater 2016;32:1352-61. https://doi.org/10.1016/j.dental.2016.08.216
  11. Facenda JC, Borba M, Benetti P, Della Bona A, Corazza PH. Effect of supporting substrate on the failure behavior of a polymer-infiltrated ceramic network material. J Prosthet Dent 2019;121:929-34. https://doi.org/10.1016/j.prosdent.2018.08.008
  12. Wendler M, Kaizer MR, Belli R, Lohbauer U, Zhang Y. Sliding contact wear and subsurface damage of CAD/CAM materials against zirconia. Dent Mater 2020;36:387-401. https://doi.org/10.1016/j.dental.2020.01.015
  13. Aboushelib MN, Elsafi MH. Survival of resin infiltrated ceramics under influence of fatigue. Dent Mater 2016;32:529-34. https://doi.org/10.1016/j.dental.2015.12.001
  14. Stawarczyk B, Liebermann A, Eichberger M, Guth JF. Evaluation of mechanical and optical behavior of current esthetic dental restorative CAD/CAM composites. J Mech Behav Biomed Mater 2015;55:1-11.
  15. Mormann WH, Stawarczyk B, Ender A, Sener B, Attin T, Mehl A. Wear characteristics of current aesthetic dental restorative CAD/CAM materials: two-body wear, gloss retention, roughness and Martens hardness. J Mech Behav Biomed Mater 2013;20:113-25. https://doi.org/10.1016/j.jmbbm.2013.01.003
  16. Wendler M, Belli R, Petschelt A, Mevec D, Harrer W, Lube T, Danzer R, Lohbauer U. Chairside CAD/CAM materials. Part 2: Flexural strength testing. Dent Mater 2017;33:99-109. https://doi.org/10.1016/j.dental.2016.10.008
  17. Mainjot AK, Dupont NM, Oudkerk JC, Dewael TY, Sadoun MJ. From artisanal to CAD/CAM blocks: State of the art of indirect composites. J Dent Res 2016;95:487-95. https://doi.org/10.1177/0022034516634286
  18. Nogueira AD, Corazza PH, Pecho OE, Perez MM, Borba M. Effect of cementation on the mechanical behavior of a nanoceramic resin. Ceramica 2020;66:236-42. https://doi.org/10.1590/0366-69132020663792886
  19. Luhrs AK, Pongprueksa P, De Munck J, Geurtsen W, Van Meerbeek B. Curing mode affects bond strength of adhesively luted composite CAD/CAM restorations to dentin. Dent Mater 2014;30:281-91. https://doi.org/10.1016/j.dental.2013.11.016
  20. Flury S, Schmidt SZ, Peutzfeldt A, Lussi A. Dentin bond strength of two resin-ceramic computer-aided design/computer-aided manufacturing (CAD/CAM) materials and five cements after six months storage. Dent Mater J 2016;35:728-35. https://doi.org/10.4012/dmj.2016-095
  21. Canatan S, Oz FD, Bolay S. A randomized, controlled clinical evaluation of two resin cement systems in the adhesion of CAD/CAM-fabricated resin nanoceramic restorations: 18-month preliminary results. J Esthet Restor Dent 2022;34:1005-14. https://doi.org/10.1111/jerd.12910
  22. Bello YD, Di Domenico MB, Magro LD, Lise MW, Corazza PH. Bond strength between composite repair and polymer-infiltrated ceramic-network material: Effect of different surface treatments. J Esthet Restor Dent. 2019;31:275-9. https://doi.org/10.1111/jerd.12445
  23. Castro EF, Azevedo VLB, Nima G, Andrade OS, Dias CTDS, Giannini M. Adhesion, Mechanical properties, and microstructure of resin-matrix CAD-CAM ceramics. J Adhes Dent 2020;22:421-31.
  24. Oz FD, Bolay S, Canatan S. A clinical evaluation of resin nanoceramic CEREC Omnicam restorations associated with several factors. J Esthet Restor Dent 2021;33:583-9. https://doi.org/10.1111/jerd.12691
  25. Rohr N, Fischer J. Effect of aging and curing mode on the compressive and indirect tensile strength of resin composite cements. Head Face Med 2017;13:22.
  26. Manso AP, Carvalho RM. Dental cements for luting and bonding restorations: Self-adhesive resin cements. Dent Clin North Am 2017;61:821-34. https://doi.org/10.1016/j.cden.2017.06.006
  27. Cuevas-Suarez CE, da Rosa WLO, Lund RG, da Silva AF, Piva E. Bonding performance of universal adhesives: an updated systematic review and meta-analysis. J Adhes Dent 2019;21:7-26.
  28. Ma L, Guess PC, Zhang Y. Load-bearing properties of minimal-invasive monolithic lithium disilicate and zirconia occlusal onlays: finite element and theoretical analyses. Dent Mater 2013;29:742-51. https://doi.org/10.1016/j.dental.2013.04.004
  29. Borba M, de Araujo MD, de Lima E, Yoshimura HN, Cesar PF, Griggs JA, Della Bona A. Flexural strength and failure modes of layered ceramic structures. Dent Mater 2011;27:1259-66. https://doi.org/10.1016/j.dental.2011.09.008
  30. Weber KR, Meneghetti DE, Benetti P, Della Bona A, Griggs JA, Borba M. Influence of piston material on the fatigue behavior of a glass-ceramic. J Prosthet Dent 2023;129:931-7. https://doi.org/10.1016/j.prosdent.2021.08.001
  31. Merlo EG, Della Bona A, Griggs JA, Jodha KS, Corazza PH. Mechanical behavior and adhesive potential of glass fiber-reinforced resin-based composites for use as dentin analogues. Am J Dent 2020;33:310-4.
  32. Lana TMDSD, Weber KR, Medeiros JA, Goedel F, Benetti P, Borba M. Fatigue-life and stress distribution of a glass-ceramic under different loading conditions. Braz Dent J 2023;34:80-8. https://doi.org/10.1590/0103-6440202305129
  33. Kelly JR, Rungruanganunt P, Hunter B, Vailati F. Development of a clinically validated bulk failure test for ceramic crowns. J Prosthet Dent 2010;104:228-38. https://doi.org/10.1016/S0022-3913(10)60129-1