In vitro evaluation of the effect of hydrofluoric acid concentration and application time on adhesion to lithium disilicate

Authors

  • Carlos Caparroso-Pérez University of Antioquia
  • Federico Latorre-Correa University of Antioquia
  • Luz Janeth Arroyave-Hoyos University of Antioquia
  • Carlos Andrés Grajales-Gaviria University of Antioquia
  • Verónica María Medina-Piedrahita University of Antioquia

DOI:

https://doi.org/10.17533/udea.rfo.14272

Keywords:

Ceramics, Dental porcelain, Lithium disilicate, Hydrofluoric acid

Abstract

Introduction: as a ceramic restorative material, lithium disilicate provides higher resistance to ceramic materials, excellent optical characteristics, and the ability to be bonded to tooth substrate by hydrofluoric acid etching. The purpose of this study was to perform in vitro assessment of the effect of 4.6 and 9.5% hydrofluoric acid at 20, 40 and 60 s on the surface of lithium disilicate during the processes of adherence to a resinous substrate. Methods: 6 IPS e-max® Press porcelain cubes and 6 Filtek Z250® resin cubes were made. The ceramic cubes were subjected to surface treatment obtaining 6 groups: control group and groups 2 and 3 were treated with 4.6% hydrofluoric acid during 20, 40 and 60 seconds respectively, and groups 4, 5 and 6 were treated with 9.5% hydrofluoric acid at 20, 40 and 60 s respectively. Porcelain cubes were cemented with the resin ones with self-adhesive resin cement and bars of 1 x 1 x 18 mm were produced, obtaining 20 samples in each group. Adhesive strength was measured. Results: adhesive strength values expressed in MPa (SD) were as follows: G1 = 26.69 (± 7.99), G2 = 23.93 (± 7.99), G3 = 20.90 (± 7.91), G4 = 17.56 (± 6.61), G5 = 16.30 (± 11.68), G6 = 18.78 (± 10.22), with significant differences between group 1 and groups 4-5. Conclusions: 4.6% hydrofluoric acid produced better adhesive averages compared with the 9.6% concentrations. The group with 4.6% concentration during 20 s offered the best results.

|Abstract
= 483 veces | PDF (ESPAÑOL (ESPAÑA))
= 114 veces|

Downloads

Download data is not yet available.

Author Biographies

Carlos Caparroso-Pérez, University of Antioquia

Dentist, Specialist in Comprehensive Dentistry of Adults, Magister in Higher Education, Associate Professor, School of Dentistry, Universi-dad de Antioqui

Federico Latorre-Correa, University of Antioquia

Dentist, Specialist in Comprehensive Dentistry of Adults, Magister in Higher Education, Associate Professor, School of Dentistry, Universidad de Antioquia.

Luz Janeth Arroyave-Hoyos, University of Antioquia

Graduate students, Comprehensive Dentistry of Adults with a focus on Prosthodontics. School of Dentistry, Universidad de Antioquia

 

Carlos Andrés Grajales-Gaviria, University of Antioquia

Graduate students, Comprehensive Dentistry of Adults with a focus on Prosthodontics. School of Dentistry, Universidad de Antioquia

Verónica María Medina-Piedrahita, University of Antioquia

Graduate students, Comprehensive Dentistry of Adults with a focus on Prosthodontics. School of Dentistry, Universidad de Antioquia

References

Guess PC, Schultheis S, Bonfante EA, Coelho PG, Ferencz JL, Silva NR. All-ceramic systems: laboratory and clinical performance. Dent Clin North Am 2011; 55(2): 333-352.

Blatz MB, Sadan A, Kern M. Resin–ceramic bonding: a review of the literature. J Prosthet Dent 2003; 89(3): 268-274.

Manso AP, Silva NR, Bonfante EA, Pegoraro TA, Dias RA, Carvalho RM. Cements and adhesives for all-ceramic restorations. Dent Clin North Am 2011; 55(2): 311-332.

Valandro LF, Della Bona A, Bottino MA, Neisser MP. The effect of ceramic surface treatment on bonding to densely sintered alumina ceramic. J Prosthet Dent 2005; 93(3): 253-259.

Zortuk M, K Kilic, Gurbulak AG, Kesim B, Uctasli S. Tensile bond strength of a lithium-disilicate pressed glass ceramic to dentin of different surface treatments. Dent Mater J 2010; 29(4): 418-424.

Della Bona A, Anusavice KJ, Mecholsky JJ Jr. Failure analysis of resin composite bonded to ceramic. Dent Mater 2003; 19(8): 693-699.

Kiyan VH, Saraceni CH, Silveira BL, Aranha AC, Eduardo CP. The influence of internal surface treatments on tensile bond strength for two ceramic systems. Oper Dent 2007; 32(5): 457-465.

Spohr AM, Sobrinho LC, Consani S, Sinhoreti MA, Knowles JC. Influence of surface conditions and silane agent on the bond of resin to IPS Empress 2 ceramic. Int J Prosthodont 2003; 16(3): 277-282.

Meyer FA, Clovis CL. Effect of different ceramic surface treatments on resin microtensile bond strength. J Prosthodont 2004; 13(1): 28-35.

Gökçe B, Özpinar B, Dündar M, Çömlekoglu E, Sen BH, Güngör MA. Bond strengths of all-ceramics: acid vs laser etching. Oper Dent 2007; 32(2): 173-178.

Pollington S, Fabianelli A, Van Noort R. Microtensile bond strength of a resin cement to a novel fluorcanasite glass-ceramic following different surface treatments. Dent Mater 2010; 26(9): 864-872.

Kim BK, Bae HE, Shim JS, Lee KW. The influence of ceramic surface treatments on the tensile bond strength of composite resin to all-ceramic coping materials. J Prosthet Dent 2005; 94(4): 357-362.

Brentel AS, Ozcan M, Valandro LF, Alarça LG, Amaral R, Bottino MA. Microtensile bond strength of a resin cement to feldpathic ceramic after different etching and silanization regimens in dry and aged conditions. Dent Mater 2007; 23(11): 1323-1331.

Hooshmand T, Van Noort R, Keshvad A. Bond durability of the resin-bonded and silane treated ceramic surface. Dent Mater 2002; 18(2): 179-188.

Matinlinna JP, Vallittu PK. Bonding of resin composites to etchable ceramic surfaces —an insight review of the chemical aspects on surface conditioning. J Oral Rehab 2007; 34(8): 622-630.

Aida M, Hayakawa T, Mizukawa K. Adhesion of composite to porcelain with various surface conditions. J Prosthet Dent 1995; 73(5): 464-470.

Kamada K, Yoshida K, Atsuta M. Effect of ceramic surface treatments on the bond of four resin luting agents to a ceramic material. J Prosthet Dent 1998; 79(5): 508-513.

Sano H, Shono T, Sonoda H, Takatsu T, Ciucchi B, Carvalho R et al. Relationship between surface area for adhesion and tensile bond strength evaluation of a micro-tensile bond test. Dent Mater 1994; 10(4): 236-240.

Burrow MF, Thomas D, Swain MV, Tyas M J. Analysis of tensile bond strengths using Weibull statistics. Biomaterials 2004; 25(20): 5031-5035.

Pashley DH, Carvalho RM, Sano H, Nakajima M, Yoshiyama M, Shono Y et al. The microtensile bond test: a review. J Adhes Dent 1999; 1(4): 299-309.

Arias VG, Ambrosano GMB, Pimenta LAF. Determination of the sample and plot size for microtensile testing. J Dent Res 2006; 85: 8-18.

Van Noort R, Noroozi S, Howard IC, Cardew G. A critique of bond strength measurements. J Dent 1989; 17(2): 61-67.

Della Bona A, Van Noort R. Shear vs. tensile bond strength of resin composite bonded to ceramic. J Dent Res 1995; 74(9): 1591-1596.

Published

2014-07-14

How to Cite

Caparroso-Pérez, C., Latorre-Correa, F., Arroyave-Hoyos, L. J., Grajales-Gaviria, C. A., & Medina-Piedrahita, V. M. (2014). In vitro evaluation of the effect of hydrofluoric acid concentration and application time on adhesion to lithium disilicate. Revista Facultad De Odontología Universidad De Antioquia, 26(1), 62–75. https://doi.org/10.17533/udea.rfo.14272

Most read articles by the same author(s)

1 2 > >>