Influence of different silanes on the bond strength between lithium disilicate and resin cement

Paula Cabral Scorssatto, Alvin Gustavo Fasolin Tomm, Paola Serraglio Figueiredo, Angélica Maroli, Rodrigo Alessandretti, Aloisio Oro Spazzin

Abstract


Objective: To evaluate the use of different brands of silane in the bond strength between lithium disilicate and resin cement. The null hypothesis evaluated was that the different brands of silanes would present similar bond strength. Methods: 80 lithium disilicate discs (IPS E.max CAD) were made with 12 mm in diameter x 1 mm in thickness. After crystallization, they were included in PVC tubes with acrylic resin and polished with silicon carbide sandpaper, under irrigation with water, creating a smooth and flat surface and randomly divided into 4 groups (n = 20). G1: Yller; G2: Monobond N; G3: Ultradent; G4: Dentsply Sirona. The samples were stored for 24h in distilled water for subsequent microcutting testing. One-way analysis of variance was used to obtain the results. Results: Analysis of variance showed that there were no statistical differences in the mean values between the treatment groups (p = 0.404). The mean and standard deviation (SD) of the bond strength (MPa) in the groups were: G1: 26.9 (6.3); G2: 28.3 (5.8); G3: 29.0 (8.0); G4: 31.8 (11.0). Conclusions: The different brands of silane evaluated showed similar bond strength. However, application of silane is essential to obtain improvements in bond strength.


Keywords


Silane; Ceramic; Resin Cement

References


Taufer C, Della Bona A. Edge chipping resistance of ceramics bonded to a dentine analogue. J Mech Behav Biomed Mater. 2019;90:587-90.

Amoroso AP, Ferreira MB, Torcato LB, Pellizzer EP, Mazaro JVQ, Gennari Filho H. Cerâmicas odontológicas: propriedades, indicações e considerações clínicas. Rev Odonto Araça. 2012;33:19-25.

Kollmuss M, Kist S, Goeke JE, Hickel R, Huth KC. Comparison of chairside and laboratory CAD/CAM to conventional produced all-ceramic crowns regarding morphology, occlusion, and aesthetics. Clin Oral Invest. 2016;20:791-7.

Della Bona A. Bonding to ceramics: scientific evidences for clinical dentistry. São Paulo: Artes Médicas; 2009.

DeHoff PH, Anusavice KJ, Wang Z. Three-dimensional finite element analysis of the shear bond test. Dent Mater. 1995;11:126-31.

Peixoto FLM, Batitucci E, Daroz CBS, Sampaio FRH. Silane heat treatment to improve cementation of ceramic dental restorations. Cerâmica. 2013;59:460-5.

Dimitriadi M, Zafiropoulou M, Zinelis S, Silikas N, Eliades G. Silane reactivity and resin bond strength to lithium disilicate ceramic surfaces. Dent Mater. 2019;35:1082-94.

Nihei T. Dental applications for silane coupling agents. J Oral Sci. 2016;58:151-5.

Sasse M, Krummel A, Klosa K, Kern M. Influence of restoration thickness and dentalbonding surface on the fracture resistance offull-coverage occlusal veneers made from lithiumdisilicate ceramic. Dent Mater. 2015;31:907-15.

Mazioli CG, Peçanha MM, Daroz LGD, Siqueira CA, Fraga MAA. Resistência de união de diferentes cimentos resinosos a cerâmica à base de dissilicato de lítio. Rev Odontol Unesp. 2017;46:174-8.

Schestatsky R, Zucuni CP, Dapieve KC, Burgo TAL, Spazzin AO, Bacchi A, et al. Microstructure, topography, surface roughness, fractal dimension, internal and marginal adaptation of pressed and milled lithium-disilicate monolithic restorations. J Prosthodont Res. 2020;64:12-19.

Pisani-Proenca J, Erhardt MCG, Valandro LF, Gutierrez- Aceves G, Bolanos-Carmona MV, Castillo-Salmeron RD. et al. Influence of ceramic surface conditioning and resin cements on microtensile bond strength to a glass ceramic J Prosthet Dent. 2006;96:412-7.

Tian T, Tsoi JK, Matinlinna JP, Burrow MF. Aspects of bonding between resin luting cements and glass ceramic materials. Dent. Mater. 2014;30:e147-62.

Kalavacharla VK, Lawson NC, Ramp LC, Burgess JO. Influence of Etching Protocol and Silane Treatment with a Universal Adhesive on Lithium Disilicate Bond Strength. Oper Dent. 2015;40:1-7.

Sundfeld Neto D, Naves LZ, Costa AR, Correr AB, Consani S, Borges GA. et al. The effect of hydrofluoric acid concentration on the bond strength and morphology of the surface and interface of glass ceramics to a resin cement. Oper Dent. 2015;40:470-9.

Krithikadatta J, Gopikrishna V, Datta M. “CRIS guidelines (Checklist for Reporting In-vitro Studies): A concept note on the need for standardized guidelines for improving quality and transparency in reporting in-vitro studies in experimental dental research”. J Conserv Dent. 2014;17:301-4.

D’Arcangelo C, De Angelis F, Vadini M, D’Amario M. Clinical evaluation on porcelain laminate veneers bonded with light-cured composite: results up to 7 years. Clin Oral Invest. 2012;16:1071-9.

Melo LA, Moura ID, Almeida EO, Junior AC, Dias TG, Leite FP. Efficacy of prostheses bonding using silane incorporated to universal adhesives or applied separately: A systematic review. J Indian Prosthodont Soc. 2019;19:3-8.

Prado M, Prochnow C, Marchionatti AME, Baldissara P, Valandro LF, Wandscher VF. Ceramic Surface Treatment with a Single-component Primer: Resin Adhesion to Glass Ceramics. J Adhes Dent. 2018;20:1-7.

Sirisha K, Rambabu T, Ravishankar Y, Ravikumar P. Validity of bond strength tests: A critical review-Part II. J Conserv Dent. 2014;17:420-6.

Moura DMD, Araújo AMM, Souza KB, Veríssimo AH, Tribst JPM, Souza ROA. Hydrofluoric acid concentration, time and use of phosphoric acid on the bond strength of feldspathic ceramics. Braz Oral Res. 2020;34:e018.

Veríssimo AH, Moura DMD, Tribst JPM, Araújo AMM, Leite FPP, Souza ROA. Effect of hydrofluoric acid concentration and etching time on resin-bond strength to different glass ceramics. Braz Oral Res. 2019;33:e041.

Farahani M, Wallace WE, Antonucci JM, Guttman CM. Analysis by mass spectrometry of the hydrolysis/condensation reaction of a trialkoxysilane in various dental monomer solutions. J Appl Polym Sci. 2006;99:1842-7.

Blatz MB, Sadan A, Martin J, Lang B. In vitro evaluation of shear bond strengths of resin to densely sintered high-purity zirconium-oxide ceramic after long-term storage and thermal cycling. J Prosthet Dent. 2004;91:356-62.

Kitayama S, Nikaido T, Takahashi R, Zhu L, Masaomi I, Foxton R, Sadr A, Tagami J. Effect of primer treatment on bonding of resin cements to zirconia ceramic. Dent Mater. 2010;26:426-32.

Van Meerbeek B, De Munck J, Yoshida Y, Inoue S, Vargas M, Vijay P et al. Buonocore memorial lecture. Adhesion to enamel and dentin: current status and future challenges. Oper Dent. 2003;28:215-35.

Monticelli F, Toledano M, Osorio R, Ferrari M. Effect of temperature on the silane coupling agents when bonding core resin to quartz fiber posts. Dent Mater. 2006;22:1024-8.




DOI: https://doi.org/10.18256/2238-510X.2020.v9i2.4118

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