Skip to main content
Top
Published in: Clinical Oral Investigations 3/2009

01-09-2009 | Original Article

Effect of different surface treatments on the composite–composite repair bond strength

Authors: Andreas Rathke, Yana Tymina, Bernd Haller

Published in: Clinical Oral Investigations | Issue 3/2009

Login to get access

Abstract

The aim of this study was to investigate the effect of different mechanical and adhesive treatments on the bond strength between pre-existing composite and repair composite using two aging times of the composite to be repaired. Standardized cylinders were made of a microhybrid composite (Spectrum TPH) and stored in saline at 37°C for 24 h (n = 140) or 6 months (n = 140). Three types of mechanical roughening were selected: diamond-coated bur followed by phosphoric acid etching, mini sandblaster with 50-μm aluminum oxide powder, and 30-μm silica-coated aluminum oxide powder (CoJet Sand), respectively. Adhesive treatment was performed with the components of a multi-step bonding system (OptiBond FL) or with a one-bottle primer–adhesive (Excite). In the CoJet Sand group, the effect of a silane coupling agent (Monobond-S) was also investigated. The repair composite (Spectrum TPH) was applied into a mould in three layers of 1 mm, each separately light-cured for 40 s. Repair tensile bond strengths were determined after 24-h storage. Mechanical and adhesive treatment had significant effects on repair bond strength (P < 0.001). The age of the pre-existing composite had no significant effect (P = 0.955). With one exception (CoJet Sand/OptiBond FL Adhesive), adhesive treatments significantly increased repair bond strengths to 6-month-old composite when compared to the controls without adhesive. Adhesive treatment of the mechanically roughened composite is essential for achieving acceptable repair bond strengths. The more complicated use of silica-coated particles for sandblasting followed by a silane coupling agent had no advantage over common bonding systems.
Literature
1.
go back to reference Bonstein T, Garlapo D, Donarummo J, Bush PJ (2005) Evaluation of varied repair protocols applied to aged composite resin. J Adhes Dent 7:41–49PubMed Bonstein T, Garlapo D, Donarummo J, Bush PJ (2005) Evaluation of varied repair protocols applied to aged composite resin. J Adhes Dent 7:41–49PubMed
2.
go back to reference Bouschlicher MR, Reinhardt JW, Vargas MA (1997) Surface treatment techniques for resin composite repair. Am J Dent 10:279–283PubMed Bouschlicher MR, Reinhardt JW, Vargas MA (1997) Surface treatment techniques for resin composite repair. Am J Dent 10:279–283PubMed
3.
go back to reference Bouschlicher MR, Cobb DS, Vargas MA (1999) Effect of two abrasive systems on resin bonding to laboratory-processed indirect resin composite restorations. J Esthet Dent 11:185–196PubMedCrossRef Bouschlicher MR, Cobb DS, Vargas MA (1999) Effect of two abrasive systems on resin bonding to laboratory-processed indirect resin composite restorations. J Esthet Dent 11:185–196PubMedCrossRef
4.
go back to reference Brosh T, Pilo R, Bichacho N, Blutstein R (1997) Effect of combinations of surface treatments and bonding agents on the bond strength of repaired composites. J Prosthet Dent 77:122–126PubMedCrossRef Brosh T, Pilo R, Bichacho N, Blutstein R (1997) Effect of combinations of surface treatments and bonding agents on the bond strength of repaired composites. J Prosthet Dent 77:122–126PubMedCrossRef
5.
go back to reference Croll TP (1997) Repair of Class I resin–composite restoration. J Dent Child 64:22–27 Croll TP (1997) Repair of Class I resin–composite restoration. J Dent Child 64:22–27
6.
go back to reference Crumpler DC, Bayne SC, Sockwell S, Brunson D, Roberson TM (1989) Bonding to resurfaced posterior composites. Dent Mater 5:417–424PubMedCrossRef Crumpler DC, Bayne SC, Sockwell S, Brunson D, Roberson TM (1989) Bonding to resurfaced posterior composites. Dent Mater 5:417–424PubMedCrossRef
7.
go back to reference Dias WRL, Ritter AV, Swift EJ (2003) Repairability of a packable resin-based composite using different adhesives. Am J Dent 16:181–185PubMed Dias WRL, Ritter AV, Swift EJ (2003) Repairability of a packable resin-based composite using different adhesives. Am J Dent 16:181–185PubMed
8.
go back to reference Foitzik M, Attin T (2004) Korrekturfüllung—Möglichkeiten und Durchführung. Schweiz Monatsschr Zahnmed 114:1003–1011PubMed Foitzik M, Attin T (2004) Korrekturfüllung—Möglichkeiten und Durchführung. Schweiz Monatsschr Zahnmed 114:1003–1011PubMed
9.
go back to reference Frankenberger R, Krämer N, Ebert J, Lohbauer U, Käppel S, Ten Weges S, Petschelt A (2003) Fatigue behavior of the resin–resin bond of partially replaced resin-based composite restorations. Am J Dent 16:17–22PubMed Frankenberger R, Krämer N, Ebert J, Lohbauer U, Käppel S, Ten Weges S, Petschelt A (2003) Fatigue behavior of the resin–resin bond of partially replaced resin-based composite restorations. Am J Dent 16:17–22PubMed
10.
go back to reference Frankenberger R, Roth S, Krämer N, Pelka M, Petschelt A (2003) Effect of preparation mode on Class II resin composite repair. J Oral Rehabil 30:559–564PubMedCrossRef Frankenberger R, Roth S, Krämer N, Pelka M, Petschelt A (2003) Effect of preparation mode on Class II resin composite repair. J Oral Rehabil 30:559–564PubMedCrossRef
11.
go back to reference Gray GB, Carey GPD, Jagger DC (2006) An in vitro investigation of a comparison of bond strengths of composite to etched and air-abraded human enamel surfaces. J Prosthodont 15:2–8PubMedCrossRef Gray GB, Carey GPD, Jagger DC (2006) An in vitro investigation of a comparison of bond strengths of composite to etched and air-abraded human enamel surfaces. J Prosthodont 15:2–8PubMedCrossRef
12.
go back to reference Hannig C, Hahn P, Thiele PP, Attin T (2003) Influence of different repair procedures on bond strength of adhesive filling materials to etched enamel in vitro. Oper Dent 28:800–807PubMed Hannig C, Hahn P, Thiele PP, Attin T (2003) Influence of different repair procedures on bond strength of adhesive filling materials to etched enamel in vitro. Oper Dent 28:800–807PubMed
13.
go back to reference Huang C, Tay FR, Cheung GSP, Kei LH, Wei SHY, Pashley DH (2002) Hygroscopic expansion of a compomer and a composite on artificial gap reduction. J Dent 30:11–19PubMedCrossRef Huang C, Tay FR, Cheung GSP, Kei LH, Wei SHY, Pashley DH (2002) Hygroscopic expansion of a compomer and a composite on artificial gap reduction. J Dent 30:11–19PubMedCrossRef
14.
go back to reference Kern M, Thompson VP (1995) Bonding to glass infiltrated alumina ceramic: adhesive methods and their durability. J Prosthet Dent 73:240–249PubMedCrossRef Kern M, Thompson VP (1995) Bonding to glass infiltrated alumina ceramic: adhesive methods and their durability. J Prosthet Dent 73:240–249PubMedCrossRef
15.
go back to reference Kim BK, Bae HEK, Shim JS, Lee KW (2005) The influence of ceramic surface treatments on the tensile bond strength of composite to all-ceramic coping materials. J Prosthet Dent 94:357–362PubMedCrossRef Kim BK, Bae HEK, Shim JS, Lee KW (2005) The influence of ceramic surface treatments on the tensile bond strength of composite to all-ceramic coping materials. J Prosthet Dent 94:357–362PubMedCrossRef
16.
go back to reference Kupiec KA, Barkmeier WW (1996) Laboratory evaluation of surface treatments for composite repair. Oper Dent 21:59–62PubMed Kupiec KA, Barkmeier WW (1996) Laboratory evaluation of surface treatments for composite repair. Oper Dent 21:59–62PubMed
17.
go back to reference Lucena-Martín C, González-López S, Navaja-Rodríguez de Mondelo JM (2001) The effect of various surface treatments and bonding agents on the repaired strength of heat-treated composites. J Prosthet Dent 86:481–488PubMedCrossRef Lucena-Martín C, González-López S, Navaja-Rodríguez de Mondelo JM (2001) The effect of various surface treatments and bonding agents on the repaired strength of heat-treated composites. J Prosthet Dent 86:481–488PubMedCrossRef
18.
go back to reference Mitsaki-Matsou H, Karanika-Kouma A, Papadoyiannis Y, Theodoridou-Pahine S (1991) An in vitro study of the tensile strength of composite resins repaired with the same or another composite resin. Quintessence Int 22:475–481PubMed Mitsaki-Matsou H, Karanika-Kouma A, Papadoyiannis Y, Theodoridou-Pahine S (1991) An in vitro study of the tensile strength of composite resins repaired with the same or another composite resin. Quintessence Int 22:475–481PubMed
19.
go back to reference Onisor I, Bouillaguet S, Krejci I (2007) Influence of different surface treatments on marginal adaptation in enamel and dentin. J Adhes Dent 9:297–303PubMed Onisor I, Bouillaguet S, Krejci I (2007) Influence of different surface treatments on marginal adaptation in enamel and dentin. J Adhes Dent 9:297–303PubMed
20.
go back to reference Özcan M (2003) Evaluation of alternative intra-oral repair techniques for fractured ceramic-fused-to-metal restorations. J Oral Rehabil 30:194–203PubMedCrossRef Özcan M (2003) Evaluation of alternative intra-oral repair techniques for fractured ceramic-fused-to-metal restorations. J Oral Rehabil 30:194–203PubMedCrossRef
21.
go back to reference Özcan M, Alander P, Vallittu PK, Huysmans MC, Kalk W (2005) Effect of three surface conditioning methods to improve bond strength of particulate filler resin composites. J Mater Sci Mater Med 16:21–27PubMedCrossRef Özcan M, Alander P, Vallittu PK, Huysmans MC, Kalk W (2005) Effect of three surface conditioning methods to improve bond strength of particulate filler resin composites. J Mater Sci Mater Med 16:21–27PubMedCrossRef
22.
go back to reference Öztas N, Alaçam A, Bardakcy Y (2003) The effect of air abrasion with two new bonding agents on composite repair. Oper Dent 28:149–154PubMed Öztas N, Alaçam A, Bardakcy Y (2003) The effect of air abrasion with two new bonding agents on composite repair. Oper Dent 28:149–154PubMed
23.
go back to reference Padipatvuthikul P, Mair LH (2007) Bonding of composite to water aged composite with surface treatments. Dent Mater 23:519–525PubMedCrossRef Padipatvuthikul P, Mair LH (2007) Bonding of composite to water aged composite with surface treatments. Dent Mater 23:519–525PubMedCrossRef
24.
go back to reference Papacchini F, Dall’Oca S, Chieffi N, Goracci C, Sadek FT, Suh BI, Tay FR, Ferrari M (2007) Composite-to-composite microtensile bond strength in the repair of a microfilled hybrid resin: effect of surface treatment and oxygen inhibition. J Adhes Dent 9:25–31PubMed Papacchini F, Dall’Oca S, Chieffi N, Goracci C, Sadek FT, Suh BI, Tay FR, Ferrari M (2007) Composite-to-composite microtensile bond strength in the repair of a microfilled hybrid resin: effect of surface treatment and oxygen inhibition. J Adhes Dent 9:25–31PubMed
25.
go back to reference Roulet JF, Söderholm KJM, Longmate J (1995) Effects of treatment and storage conditions on ceramic/composite bond strength. J Dent Res 74:381–387PubMedCrossRef Roulet JF, Söderholm KJM, Longmate J (1995) Effects of treatment and storage conditions on ceramic/composite bond strength. J Dent Res 74:381–387PubMedCrossRef
26.
go back to reference Sau CW, Oh GSY, Koh H, Chee CS, Lim CC (1999) Shear bond strength of repaired composite resins using a hybrid composite resin. Oper Dent 24:156–161PubMed Sau CW, Oh GSY, Koh H, Chee CS, Lim CC (1999) Shear bond strength of repaired composite resins using a hybrid composite resin. Oper Dent 24:156–161PubMed
27.
go back to reference Shahdad SA, Kennedy JG (1998) Bond strength of repaired anterior composite resins: an in vitro study. J Dent 26:685–694PubMedCrossRef Shahdad SA, Kennedy JG (1998) Bond strength of repaired anterior composite resins: an in vitro study. J Dent 26:685–694PubMedCrossRef
28.
go back to reference Söderholm KJ (1984) Water sorption in a bis(GMA)/TEGDMA resin. J Biomed Mat Res 18:271–279CrossRef Söderholm KJ (1984) Water sorption in a bis(GMA)/TEGDMA resin. J Biomed Mat Res 18:271–279CrossRef
29.
go back to reference Söderholm KJM, Roberts MJ (1991) Variables influencing the repair strength of dental composites. Scand J Dent Res 99:173–180PubMed Söderholm KJM, Roberts MJ (1991) Variables influencing the repair strength of dental composites. Scand J Dent Res 99:173–180PubMed
30.
go back to reference Swift EJ, Cloe BC, Boyer DB (1994) Effect of a silane coupling agent on composite repair strengths. Am J Dent 7:200–202PubMed Swift EJ, Cloe BC, Boyer DB (1994) Effect of a silane coupling agent on composite repair strengths. Am J Dent 7:200–202PubMed
31.
go back to reference Teixeira EC, Bayne SC, Thompson JY, Ritter AV, Swift EJ (2005) Shear bond strength of self-etching bonding systems in combination with various composites used for repairing aged composites. J Adhes Dent 7:159–164PubMed Teixeira EC, Bayne SC, Thompson JY, Ritter AV, Swift EJ (2005) Shear bond strength of self-etching bonding systems in combination with various composites used for repairing aged composites. J Adhes Dent 7:159–164PubMed
32.
go back to reference Tezvergil A, Lassila LVJ, Vallittu PK (2003) Composite–composite repair bond strength: effect of different adhesion primers. J Dent 31:521–525PubMedCrossRef Tezvergil A, Lassila LVJ, Vallittu PK (2003) Composite–composite repair bond strength: effect of different adhesion primers. J Dent 31:521–525PubMedCrossRef
33.
go back to reference Thomsen KB, Peutzfeldt A (2007) Resin composites: strength of the bond to dentin versus mechanical properties. Clin Oral Invest 11:45–49CrossRef Thomsen KB, Peutzfeldt A (2007) Resin composites: strength of the bond to dentin versus mechanical properties. Clin Oral Invest 11:45–49CrossRef
34.
go back to reference Trajtenberg CP, Powers JM (2004) Bond strengths of repaired laboratory composites using three surface treatments and three primers. Am J Dent 17:123–126PubMed Trajtenberg CP, Powers JM (2004) Bond strengths of repaired laboratory composites using three surface treatments and three primers. Am J Dent 17:123–126PubMed
35.
go back to reference Vanckerckoven H, Lambrechts P, Van Beylen M, Davidson CL, Vanherle G (1982) Unreacted methacrylate groups on the surfaces of composite resins. J Dent Res 61:791–795 Vanckerckoven H, Lambrechts P, Van Beylen M, Davidson CL, Vanherle G (1982) Unreacted methacrylate groups on the surfaces of composite resins. J Dent Res 61:791–795
Metadata
Title
Effect of different surface treatments on the composite–composite repair bond strength
Authors
Andreas Rathke
Yana Tymina
Bernd Haller
Publication date
01-09-2009
Publisher
Springer-Verlag
Published in
Clinical Oral Investigations / Issue 3/2009
Print ISSN: 1432-6981
Electronic ISSN: 1436-3771
DOI
https://doi.org/10.1007/s00784-008-0228-2

Other articles of this Issue 3/2009

Clinical Oral Investigations 3/2009 Go to the issue