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Published in: Clinical Oral Investigations 2/2016

01-03-2016 | Original Article

Bonding between CAD/CAM resin and resin composite cements dependent on bonding agents: three different in vitro test methods

Authors: Simona Gilbert, Christine Keul, Malgorzata Roos, Daniel Edelhoff, Bogna Stawarczyk

Published in: Clinical Oral Investigations | Issue 2/2016

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Abstract

Objectives

The aim of this study was to assess the bonding properties between CAD/CAM resin and three resin composite cements combined with different bonding agents using three test methods.

Materials and methods

Four hundred twenty CAD/CAM resin substrates were fabricated and divided into three test methods (shear bond strength (SBS, n = 180), tensile bond strength (TBS, n = 180) and work of adhesion (WA, n = 60)), further into four pretreatment methods (VP connect (VP), visio.link (VL), Clearfil Ceramic Primer (CP) and no pretreatment (CG)) and three cements (RelyX ARC, Variolink II and Clearfil SA Cement). Each subgroup contained 15 specimens. SBS and TBS were measured after 24 h H2O/37 °C + 5000 thermal-cycles (5/55 °C) and failure types were assessed. WA was determined for pretreated CAD/CAM resin and non-polymerized resin composite cements. Data were analysed with Mann–Whitney U, Kruskal–Wallis H, Chi2 and Spearman’s Rho tests.

Results

Within SBS and TBS tests, CGs and groups pretreated with CP (regardless of resin composite cements), and VP pretreated with Clearfil SA Cement showed no bond. However, CG combined with RelyX ARC showed a TBS of 5.6 ± 1.3 MPa. In general, highest bond strength was observed for groups treated with VL. CG and groups pretreated using VL showed lower WA than the groups treated with VP or CP.

Conclusions

Measured TBS values were higher than SBS ones. In general, SBS and TBS showed similar trends for the ranges of the values for the groups. WA results were not comparable with SBS/TBS results and admitted, therefore, no conclusions on it.

Clinical relevance

For a clinical use of XHIP-CAD/CAM resin, the bond surface should be additionally pretreated with visio.link as bonding agent.
Literature
1.
go back to reference Güth JF, Almeida E, Silva JS, Beuer F, Edelhoff D (2012) Enhancing the predictability of complex rehabilitation with a removable CAD/CAM-fabricated long-term provisional prosthesis: a clinical report. J Prosthet Dent 107:1–6CrossRefPubMed Güth JF, Almeida E, Silva JS, Beuer F, Edelhoff D (2012) Enhancing the predictability of complex rehabilitation with a removable CAD/CAM-fabricated long-term provisional prosthesis: a clinical report. J Prosthet Dent 107:1–6CrossRefPubMed
2.
go back to reference Güth JF, Almeida E, Silva JS, Ramberger M, Beuer F, Edelhoff D (2012) Treatment concept with CAD/CAM-fabricated high-density polymer temporary restorations. J Esthet Restor Dent 24:310–318CrossRefPubMed Güth JF, Almeida E, Silva JS, Ramberger M, Beuer F, Edelhoff D (2012) Treatment concept with CAD/CAM-fabricated high-density polymer temporary restorations. J Esthet Restor Dent 24:310–318CrossRefPubMed
3.
go back to reference Alt V, Hannig M, Wöstmann B, Balkenhol M (2011) Fracture strength of temporary fixed partial dentures: CAD/CAM versus directly fabricated restorations. Dent Mater 27:339–347CrossRefPubMed Alt V, Hannig M, Wöstmann B, Balkenhol M (2011) Fracture strength of temporary fixed partial dentures: CAD/CAM versus directly fabricated restorations. Dent Mater 27:339–347CrossRefPubMed
4.
go back to reference Göncü Başaran E, Ayna E, Vallittu PK, Lassila LV (2011) Load-bearing capacity of handmade and computer-aided design-computer-aided manufacturing-fabricated three-unit fixed dental prostheses of particulate filler composite. Acta Odontol Scand 69:144–150CrossRefPubMed Göncü Başaran E, Ayna E, Vallittu PK, Lassila LV (2011) Load-bearing capacity of handmade and computer-aided design-computer-aided manufacturing-fabricated three-unit fixed dental prostheses of particulate filler composite. Acta Odontol Scand 69:144–150CrossRefPubMed
5.
go back to reference Stawarczyk B, Ender A, Trottmann A, Özcan M, Fischer J, Hämmerle C (2012) Load-bearing capacity of CAD/CAM milled polymeric three-unit fixed dental prostheses: effect of aging regimens. Clin Oral Invest 16:1669–1677CrossRef Stawarczyk B, Ender A, Trottmann A, Özcan M, Fischer J, Hämmerle C (2012) Load-bearing capacity of CAD/CAM milled polymeric three-unit fixed dental prostheses: effect of aging regimens. Clin Oral Invest 16:1669–1677CrossRef
6.
go back to reference Stawarczyk B, Özcan M, Trottmann A, Schmutz F, Roos M, Hämmerle C (2013) Two-body wear rate of CAD/CAM-resin blocks and their enamel antagonists. J Prosthet Dent 109:325–332CrossRefPubMed Stawarczyk B, Özcan M, Trottmann A, Schmutz F, Roos M, Hämmerle C (2013) Two-body wear rate of CAD/CAM-resin blocks and their enamel antagonists. J Prosthet Dent 109:325–332CrossRefPubMed
7.
go back to reference Mörmann W, Stawarczyk B, Ender A, Sener B, Attin T (2013) Wear characteristics of current aesthetic dental restorative CAD/CAM materials: two-body wear, gloss retention, roughness and Martens hardness. J Mech Behav Biomed Mater 20:113–125CrossRefPubMed Mörmann W, Stawarczyk B, Ender A, Sener B, Attin T (2013) Wear characteristics of current aesthetic dental restorative CAD/CAM materials: two-body wear, gloss retention, roughness and Martens hardness. J Mech Behav Biomed Mater 20:113–125CrossRefPubMed
8.
go back to reference Nguyen JF, Migonney V, Ruse ND, Sadoun M (2013) Properties of experimental urethane dimethacrylate-based dental resin composite blocks obtained via thermo-polymerization under high pressure. Dent Mater 29:535–541CrossRefPubMed Nguyen JF, Migonney V, Ruse ND, Sadoun M (2013) Properties of experimental urethane dimethacrylate-based dental resin composite blocks obtained via thermo-polymerization under high pressure. Dent Mater 29:535–541CrossRefPubMed
9.
go back to reference Nguyen JF, Migonney V, Ruse ND, Sadoun M (2012) Resin composite blocks via high-pressure high-temperature polymerization. Dent Mater 28:529–534CrossRefPubMed Nguyen JF, Migonney V, Ruse ND, Sadoun M (2012) Resin composite blocks via high-pressure high-temperature polymerization. Dent Mater 28:529–534CrossRefPubMed
10.
go back to reference Stawarczyk B, Sener B, Trottmann A, Roos M, Ozcan M, Hämmerle CH (2012) Discoloration of manually fabricated resins and industrially fabricated CAD/CAM blocks versus glass-ceramic: effect of storage media, duration, and subsequent polishing. Dent Mater J 31:377–383CrossRefPubMed Stawarczyk B, Sener B, Trottmann A, Roos M, Ozcan M, Hämmerle CH (2012) Discoloration of manually fabricated resins and industrially fabricated CAD/CAM blocks versus glass-ceramic: effect of storage media, duration, and subsequent polishing. Dent Mater J 31:377–383CrossRefPubMed
13.
go back to reference Stawarczyk B, Trottmann A, Hämmerle C, Özcan M (2013) Adhesion of veneering resins to polymethylmethacrylate-based CAD/CAM polymers after various surface conditioning methods. Acta Odontol Scand 71:1142–1148CrossRefPubMed Stawarczyk B, Trottmann A, Hämmerle C, Özcan M (2013) Adhesion of veneering resins to polymethylmethacrylate-based CAD/CAM polymers after various surface conditioning methods. Acta Odontol Scand 71:1142–1148CrossRefPubMed
14.
go back to reference Phan AC, Béhin P, Stoclet G, Dorin Ruse N, Nguyen JF, Sadoun M (2015) Optimum pressure for the high-pressure polymerization of urethane dimethacrylate. Dent Mater. 2015 Feb 10. pii: S0109-5641(15)00026-3. doi: 10.1016/j.dental.2015.01.010. [Epub ahead of print] Phan AC, Béhin P, Stoclet G, Dorin Ruse N, Nguyen JF, Sadoun M (2015) Optimum pressure for the high-pressure polymerization of urethane dimethacrylate. Dent Mater. 2015 Feb 10. pii: S0109-5641(15)00026-3. doi: 10.​1016/​j.​dental.​2015.​01.​010. [Epub ahead of print]
15.
go back to reference Phan AC, Tang ML, Nguyen JF, Ruse ND, Sadoun M (2014) High-temperature high-pressure polymerized urethane dimethacrylate-mechanical properties and monomer release. Dent Mater 30:350–356CrossRefPubMed Phan AC, Tang ML, Nguyen JF, Ruse ND, Sadoun M (2014) High-temperature high-pressure polymerized urethane dimethacrylate-mechanical properties and monomer release. Dent Mater 30:350–356CrossRefPubMed
16.
go back to reference Bural C, Aktaş E, Deniz G, Ünlüçerçi Y, Kızılcan N, Bayraktar G (2011) Effect of post-polymerization heat-treatments on degree of conversion, leaching residual MMA and in vitro cytotoxicity of autopolymerizing acrylic repair resin. Dent Mater 27:1135–1143CrossRefPubMed Bural C, Aktaş E, Deniz G, Ünlüçerçi Y, Kızılcan N, Bayraktar G (2011) Effect of post-polymerization heat-treatments on degree of conversion, leaching residual MMA and in vitro cytotoxicity of autopolymerizing acrylic repair resin. Dent Mater 27:1135–1143CrossRefPubMed
17.
go back to reference Stawarczyk B, Basler T, Ender A, Roos M, Ozcan M, Hämmerle C (2012) Effect of surface conditioning with airborne-particle abrasion on the tensile strength of polymeric CAD/CAM crowns luted with self-adhesive and conventional resin cements. J Prosthet Dent 107:94–101CrossRefPubMed Stawarczyk B, Basler T, Ender A, Roos M, Ozcan M, Hämmerle C (2012) Effect of surface conditioning with airborne-particle abrasion on the tensile strength of polymeric CAD/CAM crowns luted with self-adhesive and conventional resin cements. J Prosthet Dent 107:94–101CrossRefPubMed
18.
go back to reference Edelhoff D, Beuer F, Schweiger J, Brix O, Stimmelmayr M, Guth JF (2012) CAD/CAM-generated high-density polymer restorations for the pretreatment of complex cases: a case report. Quintessence Int 43:457–467PubMed Edelhoff D, Beuer F, Schweiger J, Brix O, Stimmelmayr M, Guth JF (2012) CAD/CAM-generated high-density polymer restorations for the pretreatment of complex cases: a case report. Quintessence Int 43:457–467PubMed
19.
go back to reference Marshall SJ, Bayne SC, Baier R, Tomsia AP, Marshall GW (2010) A review of adhesion science. Dent Mater 26:e11–16, Erratum in Dent Mater 2010;26:e195 CrossRefPubMed Marshall SJ, Bayne SC, Baier R, Tomsia AP, Marshall GW (2010) A review of adhesion science. Dent Mater 26:e11–16, Erratum in Dent Mater 2010;26:e195 CrossRefPubMed
20.
go back to reference Asmussen E, Peutzfeldt A, Sahafi A (2005) Bonding of resin cements to post materials: influence of surface energy characteristics. J Adhes Dent 7:231–234PubMed Asmussen E, Peutzfeldt A, Sahafi A (2005) Bonding of resin cements to post materials: influence of surface energy characteristics. J Adhes Dent 7:231–234PubMed
21.
go back to reference Packham D (1996) Work of adhesion: contact angles and contact mechanics. J Adhes Adhesiv 16:121–128CrossRef Packham D (1996) Work of adhesion: contact angles and contact mechanics. J Adhes Adhesiv 16:121–128CrossRef
22.
go back to reference Andrade AM, Moura SK, Reis A, Loguercio AD, Garcia EJ, Grande RHM (2010) Evaluating resin-enamel bonds by microshear and microtensile bond strength tests: effect of composite resin. J Appl Oral Sci 18:591–598PubMedCentralCrossRefPubMed Andrade AM, Moura SK, Reis A, Loguercio AD, Garcia EJ, Grande RHM (2010) Evaluating resin-enamel bonds by microshear and microtensile bond strength tests: effect of composite resin. J Appl Oral Sci 18:591–598PubMedCentralCrossRefPubMed
23.
go back to reference Heintze SD, Zimmerli B (2011) Relevance of in vitro tests of adhesive and composite dental materials. Schweiz Monatsschr Zahnmed 121:1024–1040PubMed Heintze SD, Zimmerli B (2011) Relevance of in vitro tests of adhesive and composite dental materials. Schweiz Monatsschr Zahnmed 121:1024–1040PubMed
24.
go back to reference Eren D, Bektas ÖÖ, Siso SH (2013) Three different adhesive systems; three different bond strength test methods. Acta Odontol Scan 71:978–983CrossRef Eren D, Bektas ÖÖ, Siso SH (2013) Three different adhesive systems; three different bond strength test methods. Acta Odontol Scan 71:978–983CrossRef
25.
go back to reference Pashley DH, Carvalho RM, Sano H, Nakajima M, Yoshiyama M, Shono Y, Fernandes CA, Tay F (1999) The microtensile bond test: a review. J Adhes Dent 1:299–309PubMed Pashley DH, Carvalho RM, Sano H, Nakajima M, Yoshiyama M, Shono Y, Fernandes CA, Tay F (1999) The microtensile bond test: a review. J Adhes Dent 1:299–309PubMed
26.
go back to reference Bähr N, Keul C, Edelhoff D, Eichberger M, Roos M, Gernet W, Stawarczyk B (2013) Effect of different adhesives combined with two resin composite cements on shear bond strength to polymeric CAD/CAM materials. Dent Mater J 32:492–501CrossRefPubMed Bähr N, Keul C, Edelhoff D, Eichberger M, Roos M, Gernet W, Stawarczyk B (2013) Effect of different adhesives combined with two resin composite cements on shear bond strength to polymeric CAD/CAM materials. Dent Mater J 32:492–501CrossRefPubMed
27.
go back to reference Keul C, Martin A, Wimmer T, Roos M, Gernet W, Stawarczyk B (2013) Tensile bond strength of PMMA- and composite-based CAD/CAM materials to luting cements after different conditioning methods. Int J Adhes Adhesiv 46:122–127CrossRef Keul C, Martin A, Wimmer T, Roos M, Gernet W, Stawarczyk B (2013) Tensile bond strength of PMMA- and composite-based CAD/CAM materials to luting cements after different conditioning methods. Int J Adhes Adhesiv 46:122–127CrossRef
28.
go back to reference Yoshida K, Kamada K, Atsuta M (2001) Effects of two silane coupling agents, a bonding agent, and thermal cycling on the bond strength of a CAD/CAM composite material cemented with two resin luting agents. J Prosthet Dent 85:184–189CrossRefPubMed Yoshida K, Kamada K, Atsuta M (2001) Effects of two silane coupling agents, a bonding agent, and thermal cycling on the bond strength of a CAD/CAM composite material cemented with two resin luting agents. J Prosthet Dent 85:184–189CrossRefPubMed
29.
go back to reference Dumitrascu N, Borcia C (2006) Determining the contact angle between liquids and cylindrical surfaces. J Colloid Interface Sci 294:418–422CrossRefPubMed Dumitrascu N, Borcia C (2006) Determining the contact angle between liquids and cylindrical surfaces. J Colloid Interface Sci 294:418–422CrossRefPubMed
30.
go back to reference Owens DK, Wendt RC (1969) Estimation of the surface free energy of polymers. J Appl Polym Sci 13:1741–1747CrossRef Owens DK, Wendt RC (1969) Estimation of the surface free energy of polymers. J Appl Polym Sci 13:1741–1747CrossRef
31.
go back to reference Kaelble DH (1970) Dispersion-polar surface tension properties of organic solids. J Adhes 2:66–81CrossRef Kaelble DH (1970) Dispersion-polar surface tension properties of organic solids. J Adhes 2:66–81CrossRef
32.
go back to reference Wissenschaftliche Tabellen Geigy, Teilband Statistik, 8. Auflage, Basel, 1980 CIBA-GEIGY Limited, Basel, Switzerland Wissenschaftliche Tabellen Geigy, Teilband Statistik, 8. Auflage, Basel, 1980 CIBA-GEIGY Limited, Basel, Switzerland
33.
go back to reference Kelly JR, Benetti P, Rungruanganunt P, Bona AD (2012) The slippery slope: critical perspectives on in vitro research methodologies. Dent Mater 28:41–51CrossRefPubMed Kelly JR, Benetti P, Rungruanganunt P, Bona AD (2012) The slippery slope: critical perspectives on in vitro research methodologies. Dent Mater 28:41–51CrossRefPubMed
34.
go back to reference Packham DE (2003) Surface energy, surface topography and adhesion. Int J of Adhes and Adhesiv 23:437–448CrossRef Packham DE (2003) Surface energy, surface topography and adhesion. Int J of Adhes and Adhesiv 23:437–448CrossRef
35.
go back to reference Torstenson B, Brannström M (1988) Contraction gap under composite resin restorations: effect of hygroscopic expansion and thermal stress. Oper Dent 13:24–31PubMed Torstenson B, Brannström M (1988) Contraction gap under composite resin restorations: effect of hygroscopic expansion and thermal stress. Oper Dent 13:24–31PubMed
36.
go back to reference Gale MS, Darvell BW (1999) Thermal cycling procedures for laboratory testing of dental restorations. J Dent 27:89–99CrossRefPubMed Gale MS, Darvell BW (1999) Thermal cycling procedures for laboratory testing of dental restorations. J Dent 27:89–99CrossRefPubMed
37.
go back to reference Svizero Nda R, Silva MS, Alonso RC, Rodrigues FP, Hipólito VD, Carvalho RM, D'Alpino PH (2013) Effects of curing protocols on fluid kinetics and hardness of resin cements. Dent Mater 32:32–41CrossRef Svizero Nda R, Silva MS, Alonso RC, Rodrigues FP, Hipólito VD, Carvalho RM, D'Alpino PH (2013) Effects of curing protocols on fluid kinetics and hardness of resin cements. Dent Mater 32:32–41CrossRef
Metadata
Title
Bonding between CAD/CAM resin and resin composite cements dependent on bonding agents: three different in vitro test methods
Authors
Simona Gilbert
Christine Keul
Malgorzata Roos
Daniel Edelhoff
Bogna Stawarczyk
Publication date
01-03-2016
Publisher
Springer Berlin Heidelberg
Published in
Clinical Oral Investigations / Issue 2/2016
Print ISSN: 1432-6981
Electronic ISSN: 1436-3771
DOI
https://doi.org/10.1007/s00784-015-1494-4

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