Skip to main content
Erschienen in: Clinical Oral Investigations 5/2015

01.06.2015 | Original Article

Influence of proximal box elevation on the marginal quality and fracture behavior of root-filled molars restored with CAD/CAM ceramic or composite onlays

verfasst von: Irina Ilgenstein, Nicola U. Zitzmann, Julia Bühler, Florian J. Wegehaupt, Thomas Attin, Roland Weiger, Gabriel Krastl

Erschienen in: Clinical Oral Investigations | Ausgabe 5/2015

Einloggen, um Zugang zu erhalten

Abstract

Objectives

This study investigated the influence of proximal box elevation (PBE) with composite resin when applied to deep proximal defects in root-filled molars with mesio-occluso-distal (MOD) cavities, which were subsequently restored with computer-aided designed/computer-aided manufacturing (CAD/CAM) ceramic or composite restorations.

Materials and method

Root canal treatment was performed on 48 human mandibular molars. Standardized MOD cavities were prepared with the distal box located 2 mm below the cemento-enamel junction (CEJ). The teeth were randomly assigned to one of four experimental groups (n = 12). In groups G1 and G2, the distal proximal box was elevated up to the level of the CEJ with composite resin (PBE). No elevation was performed in the remaining two groups (G3, G4). CAD/CAM restorations were fabricated with feldspathic ceramic (Vita Mark II, CER) in groups G1 (PBE-CER) and G3 (CER) or with resin nano-ceramic blocks (Lava Ultimate, LAV) in groups G2 (PBE-LAV) and G4 (LAV). Replicas were taken before and after thermomechanical loading (TML; 1.2 Mio cycles; 49 N; 3,000 thermocycles between 50 °C and 5 °C). Following TML, load was applied until failure. Fracture analysis was performed under a stereomicroscope (×16). Marginal quality before and after TML (tooth restoration, composite restoration) was evaluated using scanning electron microscopy (×200).

Results

After TML, lower percentages of continuous margins were observed in groups G1–G3 compared with pre-TML assessments; however, the differences were not statistically significant. For group G4-LAV, the marginal quality after TML was significantly better than in any other group. The highest mean fracture value was recorded for group G4. No significant difference was found for this value between the groups with PBE compared with the groups without PBE, regardless of the material used. The specimens restored with ceramic onlays exhibited fractures that were mainly restricted to the restoration while, in teeth restored with composite onlays, the percentage of catastrophic failures (fractures beyond bone level) was increased.

Conclusion

PBE had no impact on either the marginal integrity or the fracture behavior of root canal-treated mandibular molars restored with feldspathic ceramic onlays. CAD/CAM-fabricated composite onlays were more favorable than ceramic onlays in terms of both marginal quality and fracture resistance, particularly in specimens without PBE.

Clinical relevance

Composite onlays with or without PBE may be a viable approach for the restoration of root-filled molars with subgingival MOD cavities.
Literatur
1.
Zurück zum Zitat Adolphi G, Zehnder M, Bachmann LM, Gohring TN (2007) Direct resin composite restorations in vital versus root-filled posterior teeth: a controlled comparative long-term follow-up. Oper Dent 32:437–442CrossRefPubMed Adolphi G, Zehnder M, Bachmann LM, Gohring TN (2007) Direct resin composite restorations in vital versus root-filled posterior teeth: a controlled comparative long-term follow-up. Oper Dent 32:437–442CrossRefPubMed
2.
Zurück zum Zitat Wendt SL Jr, Harris BM, Hunt TE (1987) Resistance to cusp fracture in endodontically treated teeth. Dent Mater 3:232–235CrossRefPubMed Wendt SL Jr, Harris BM, Hunt TE (1987) Resistance to cusp fracture in endodontically treated teeth. Dent Mater 3:232–235CrossRefPubMed
3.
Zurück zum Zitat Magne P, Knezevic A (2009) Thickness of CAD-CAM composite resin overlays influences fatigue resistance of endodontically treated premolars. Dent Mater 25:1264–1268CrossRefPubMed Magne P, Knezevic A (2009) Thickness of CAD-CAM composite resin overlays influences fatigue resistance of endodontically treated premolars. Dent Mater 25:1264–1268CrossRefPubMed
4.
Zurück zum Zitat Dietschi D, Duc O, Krejci I, Sadan A (2007) Biomechanical considerations for the restoration of endodontically treated teeth: a systematic review of the literature—part 1. Composition and micro- and macrostructure alterations. Quintessence Int 38:733–743PubMed Dietschi D, Duc O, Krejci I, Sadan A (2007) Biomechanical considerations for the restoration of endodontically treated teeth: a systematic review of the literature—part 1. Composition and micro- and macrostructure alterations. Quintessence Int 38:733–743PubMed
5.
Zurück zum Zitat ElAyouti A, Serry MI, Geis-Gerstorfer J, Lost C (2011) Influence of cusp coverage on the fracture resistance of premolars with endodontic access cavities. Int Endod J 44:543–549CrossRefPubMed ElAyouti A, Serry MI, Geis-Gerstorfer J, Lost C (2011) Influence of cusp coverage on the fracture resistance of premolars with endodontic access cavities. Int Endod J 44:543–549CrossRefPubMed
6.
Zurück zum Zitat Jiang W, Bo H, Yongchun G, LongXing N (2010) Stress distribution in molars restored with inlays or onlays with or without endodontic treatment: a three-dimensional finite element analysis. J Prosthet Dent 103:6–12CrossRefPubMed Jiang W, Bo H, Yongchun G, LongXing N (2010) Stress distribution in molars restored with inlays or onlays with or without endodontic treatment: a three-dimensional finite element analysis. J Prosthet Dent 103:6–12CrossRefPubMed
7.
Zurück zum Zitat Hitz T, Ozcan M, Gohring TN (2010) Marginal adaptation and fracture resistance of root-canal treated mandibular molars with intracoronal restorations: effect of thermocycling and mechanical loading. J Adhes Dent 12:279–286PubMed Hitz T, Ozcan M, Gohring TN (2010) Marginal adaptation and fracture resistance of root-canal treated mandibular molars with intracoronal restorations: effect of thermocycling and mechanical loading. J Adhes Dent 12:279–286PubMed
8.
Zurück zum Zitat Randow K, Glantz PO (1986) On cantilever loading of vital and non-vital teeth. An experimental clinical study. Acta Odontol Scand 44:271–277CrossRefPubMed Randow K, Glantz PO (1986) On cantilever loading of vital and non-vital teeth. An experimental clinical study. Acta Odontol Scand 44:271–277CrossRefPubMed
9.
Zurück zum Zitat Dietschi D, Duc O, Krejci I, Sadan A (2008) Biomechanical considerations for the restoration of endodontically treated teeth: a systematic review of the literature, part II (evaluation of fatigue behavior, interfaces, and in vivo studies). Quintessence Int 39:117–129PubMed Dietschi D, Duc O, Krejci I, Sadan A (2008) Biomechanical considerations for the restoration of endodontically treated teeth: a systematic review of the literature, part II (evaluation of fatigue behavior, interfaces, and in vivo studies). Quintessence Int 39:117–129PubMed
10.
Zurück zum Zitat Dietschi D, Olsburgh S, Krejci I, Davidson C (2003) In vitro evaluation of marginal and internal adaptation after occlusal stressing of indirect class II composite restorations with different resinous bases. Eur J Oral Sci 111:73–80CrossRefPubMed Dietschi D, Olsburgh S, Krejci I, Davidson C (2003) In vitro evaluation of marginal and internal adaptation after occlusal stressing of indirect class II composite restorations with different resinous bases. Eur J Oral Sci 111:73–80CrossRefPubMed
11.
Zurück zum Zitat Frankenberger R, Hehn J, Hajto J, Kramer N, Naumann M, Koch A, Roggendorf MJ (2013) Effect of proximal box elevation with resin composite on marginal quality of ceramic inlays in vitro. Clin Oral Investig 17:177–183CrossRefPubMed Frankenberger R, Hehn J, Hajto J, Kramer N, Naumann M, Koch A, Roggendorf MJ (2013) Effect of proximal box elevation with resin composite on marginal quality of ceramic inlays in vitro. Clin Oral Investig 17:177–183CrossRefPubMed
12.
Zurück zum Zitat Zaruba M, Gohring TN, Wegehaupt FJ, Attin T (2013) Influence of a proximal margin elevation technique on marginal adaptation of ceramic inlays. Acta Odontol Scand 71:317–324CrossRefPubMed Zaruba M, Gohring TN, Wegehaupt FJ, Attin T (2013) Influence of a proximal margin elevation technique on marginal adaptation of ceramic inlays. Acta Odontol Scand 71:317–324CrossRefPubMed
13.
Zurück zum Zitat Schmidt JC, Sahrmann P, Weiger R, Schmidlin PR, Walter C (2013) Biologic width dimensions—a systematic review. J Clin Periodontol 40:493–504CrossRefPubMed Schmidt JC, Sahrmann P, Weiger R, Schmidlin PR, Walter C (2013) Biologic width dimensions—a systematic review. J Clin Periodontol 40:493–504CrossRefPubMed
14.
Zurück zum Zitat Dietschi D, Spreafico R (1998) Current clinical concepts for adhesive cementation of tooth-colored posterior restorations. Prac Periodontics Aesthet Dent : PPAD 10:47–54, quiz 56 Dietschi D, Spreafico R (1998) Current clinical concepts for adhesive cementation of tooth-colored posterior restorations. Prac Periodontics Aesthet Dent : PPAD 10:47–54, quiz 56
15.
Zurück zum Zitat Rocca GT, Krejci I (2007) Bonded indirect restorations for posterior teeth: the luting appointment. Quintessence Int 38:543–553PubMed Rocca GT, Krejci I (2007) Bonded indirect restorations for posterior teeth: the luting appointment. Quintessence Int 38:543–553PubMed
16.
Zurück zum Zitat Rocca GT, Krejci I (2007) Bonded indirect restorations for posterior teeth: from cavity preparation to provisionalization. Quintessence Int 38:371–379PubMed Rocca GT, Krejci I (2007) Bonded indirect restorations for posterior teeth: from cavity preparation to provisionalization. Quintessence Int 38:371–379PubMed
17.
Zurück zum Zitat Frese C, Wolff D, Staehle HJ (2014) Proximal box elevation with resin composite and the dogma of biological width: clinical R2-technique and critical review. Oper Dent 39:22–31CrossRefPubMed Frese C, Wolff D, Staehle HJ (2014) Proximal box elevation with resin composite and the dogma of biological width: clinical R2-technique and critical review. Oper Dent 39:22–31CrossRefPubMed
18.
Zurück zum Zitat Chan KC, Boyer DB (1989) Curing light-activated composite cement through porcelain. J Dent Res 68:476–480CrossRefPubMed Chan KC, Boyer DB (1989) Curing light-activated composite cement through porcelain. J Dent Res 68:476–480CrossRefPubMed
19.
Zurück zum Zitat El-Mowafy OM, Rubo MH (2000) Influence of composite inlay/onlay thickness on hardening of dual-cured resin cements. J Can Dent Assoc 66:147PubMed El-Mowafy OM, Rubo MH (2000) Influence of composite inlay/onlay thickness on hardening of dual-cured resin cements. J Can Dent Assoc 66:147PubMed
20.
Zurück zum Zitat Lutz F, Krejci I, Oldenburg T (1986) Elimination of polymerisation stresses at the margins of posterior composite resin restorations: a new restorative technique. Quintessence Int 17:777–784PubMed Lutz F, Krejci I, Oldenburg T (1986) Elimination of polymerisation stresses at the margins of posterior composite resin restorations: a new restorative technique. Quintessence Int 17:777–784PubMed
21.
Zurück zum Zitat Rocca GT, Gregor L, Sandoval MJ, Krejci I, Dietschi D (2012) In vitro evaluation of marginal and internal adaptation after occlusal stressing of indirect class II composite restorations with different resinous bases and interface treatments. “Post-fatigue adaptation of indirect composite restorations”. Clin Oral Investig 16:1385–1393CrossRefPubMed Rocca GT, Gregor L, Sandoval MJ, Krejci I, Dietschi D (2012) In vitro evaluation of marginal and internal adaptation after occlusal stressing of indirect class II composite restorations with different resinous bases and interface treatments. “Post-fatigue adaptation of indirect composite restorations”. Clin Oral Investig 16:1385–1393CrossRefPubMed
22.
Zurück zum Zitat Attia A, Abdelaziz KM, Freitag S, Kern M (2006) Fracture load of composite resin and feldspathic all-ceramic CAD/CAM crowns. J Prosthet Dent 95:117–123CrossRefPubMed Attia A, Abdelaziz KM, Freitag S, Kern M (2006) Fracture load of composite resin and feldspathic all-ceramic CAD/CAM crowns. J Prosthet Dent 95:117–123CrossRefPubMed
23.
Zurück zum Zitat Rocca GT, Bonnafous F, Rizcalla N, Krejci I (2010) A technique to improve the esthetic aspects of CAD/CAM composite resin restorations. J Prosthet Dent 104:273–275CrossRefPubMed Rocca GT, Bonnafous F, Rizcalla N, Krejci I (2010) A technique to improve the esthetic aspects of CAD/CAM composite resin restorations. J Prosthet Dent 104:273–275CrossRefPubMed
24.
Zurück zum Zitat Lin CL, Chang YH, Liu PR (2008) Multi-factorial analysis of a cusp-replacing adhesive premolar restoration: a finite element study. J Dent 36:194–203CrossRefPubMed Lin CL, Chang YH, Liu PR (2008) Multi-factorial analysis of a cusp-replacing adhesive premolar restoration: a finite element study. J Dent 36:194–203CrossRefPubMed
25.
Zurück zum Zitat Magne P, Knezevic A (2009) Simulated fatigue resistance of composite resin versus porcelain CAD/CAM overlay restorations on endodontically treated molars. Quintessence Int 40:125–133PubMed Magne P, Knezevic A (2009) Simulated fatigue resistance of composite resin versus porcelain CAD/CAM overlay restorations on endodontically treated molars. Quintessence Int 40:125–133PubMed
26.
Zurück zum Zitat Magne P, Schlichting LH, Maia HP, Baratieri LN (2010) In vitro fatigue resistance of CAD/CAM composite resin and ceramic posterior occlusal veneers. J Prosthet Dent 104:149–157CrossRefPubMed Magne P, Schlichting LH, Maia HP, Baratieri LN (2010) In vitro fatigue resistance of CAD/CAM composite resin and ceramic posterior occlusal veneers. J Prosthet Dent 104:149–157CrossRefPubMed
27.
Zurück zum Zitat Schlichting LH, Maia HP, Baratieri LN, Magne P (2011) Novel-design ultra-thin CAD/CAM composite resin and ceramic occlusal veneers for the treatment of severe dental erosion. J Prosthet Dent 105:217–226CrossRefPubMed Schlichting LH, Maia HP, Baratieri LN, Magne P (2011) Novel-design ultra-thin CAD/CAM composite resin and ceramic occlusal veneers for the treatment of severe dental erosion. J Prosthet Dent 105:217–226CrossRefPubMed
28.
Zurück zum Zitat Lambrechts P, Debels E, Van Landuyt K, Peumans M, Van Meerbeek B (2006) How to simulate wear? Overview of existing methods. Dent Mater 22:693–701CrossRefPubMed Lambrechts P, Debels E, Van Landuyt K, Peumans M, Van Meerbeek B (2006) How to simulate wear? Overview of existing methods. Dent Mater 22:693–701CrossRefPubMed
29.
Zurück zum Zitat Liu X, Fok A, Li H (2014) Influence of restorative material and proximal cavity design on the fracture resistance of MOD inlay restoration. Dent Mater 30:327–333CrossRefPubMed Liu X, Fok A, Li H (2014) Influence of restorative material and proximal cavity design on the fracture resistance of MOD inlay restoration. Dent Mater 30:327–333CrossRefPubMed
30.
Zurück zum Zitat Dere M, Ozcan M, Gohring TN (2010) Marginal quality and fracture strength of root-canal treated mandibular molars with overlay restorations after thermocycling and mechanical loading. J Adhes Dent 12:287–294PubMed Dere M, Ozcan M, Gohring TN (2010) Marginal quality and fracture strength of root-canal treated mandibular molars with overlay restorations after thermocycling and mechanical loading. J Adhes Dent 12:287–294PubMed
31.
Zurück zum Zitat Dalpino PH, Francischone CE, Ishikiriama A, Franco EB (2002) Fracture resistance of teeth directly and indirectly restored with composite resin and indirectly restored with ceramic materials. Am J Dent 15:389–394PubMed Dalpino PH, Francischone CE, Ishikiriama A, Franco EB (2002) Fracture resistance of teeth directly and indirectly restored with composite resin and indirectly restored with ceramic materials. Am J Dent 15:389–394PubMed
32.
Zurück zum Zitat Bortolotto T, Onisor I, Krejci I (2007) Proximal direct composite restorations and chairside CAD/CAM inlays: marginal adaptation of a two-step self-etch adhesive with and without selective enamel conditioning. Clin Oral Investig 11:35–43CrossRefPubMed Bortolotto T, Onisor I, Krejci I (2007) Proximal direct composite restorations and chairside CAD/CAM inlays: marginal adaptation of a two-step self-etch adhesive with and without selective enamel conditioning. Clin Oral Investig 11:35–43CrossRefPubMed
33.
Zurück zum Zitat Ramirez-Sebastia A, Bortolotto T, Roig M, Krejci I (2013) Composite vs ceramic computer-aided design/computer-assisted manufacturing crowns in endodontically treated teeth: analysis of marginal adaptation. Oper Dent 38:663–673CrossRefPubMed Ramirez-Sebastia A, Bortolotto T, Roig M, Krejci I (2013) Composite vs ceramic computer-aided design/computer-assisted manufacturing crowns in endodontically treated teeth: analysis of marginal adaptation. Oper Dent 38:663–673CrossRefPubMed
34.
Zurück zum Zitat Soares CJ, Martins LR, Pfeifer JM, Giannini M (2004) Fracture resistance of teeth restored with indirect-composite and ceramic inlay systems. Quintessence Int 35:281–286PubMed Soares CJ, Martins LR, Pfeifer JM, Giannini M (2004) Fracture resistance of teeth restored with indirect-composite and ceramic inlay systems. Quintessence Int 35:281–286PubMed
35.
Zurück zum Zitat Costa A, Xavier T, Noritomi P, Saavedra G, Borges A (2014) The influence of elastic modulus of inlay materials on stress distribution and fracture of premolars. Oper Dent 39:E160–170CrossRefPubMed Costa A, Xavier T, Noritomi P, Saavedra G, Borges A (2014) The influence of elastic modulus of inlay materials on stress distribution and fracture of premolars. Oper Dent 39:E160–170CrossRefPubMed
36.
Zurück zum Zitat Sterzenbach G, Rosentritt M, Frankenberger R, Paris S, Naumann M (2012) Loading standardization of postendodontic restorations in vitro: impact of restorative stage, static loading, and dynamic loading. Oper Dent 37:71–79CrossRefPubMed Sterzenbach G, Rosentritt M, Frankenberger R, Paris S, Naumann M (2012) Loading standardization of postendodontic restorations in vitro: impact of restorative stage, static loading, and dynamic loading. Oper Dent 37:71–79CrossRefPubMed
37.
Zurück zum Zitat Brosh T, Porat N, Vardimon AD, Pilo R (2011) Appropriateness of viscoelastic soft materials as in vitro simulators of the periodontal ligament. J Oral Rehabil 38:929–939CrossRefPubMed Brosh T, Porat N, Vardimon AD, Pilo R (2011) Appropriateness of viscoelastic soft materials as in vitro simulators of the periodontal ligament. J Oral Rehabil 38:929–939CrossRefPubMed
38.
Zurück zum Zitat Brosh T, Zary R, Pilo R, Gavish A (2012) Influence of periodontal ligament simulation and splints on strains developing at the cervical area of a tooth crown. Eur J Oral Sci 120:466–471CrossRefPubMed Brosh T, Zary R, Pilo R, Gavish A (2012) Influence of periodontal ligament simulation and splints on strains developing at the cervical area of a tooth crown. Eur J Oral Sci 120:466–471CrossRefPubMed
Metadaten
Titel
Influence of proximal box elevation on the marginal quality and fracture behavior of root-filled molars restored with CAD/CAM ceramic or composite onlays
verfasst von
Irina Ilgenstein
Nicola U. Zitzmann
Julia Bühler
Florian J. Wegehaupt
Thomas Attin
Roland Weiger
Gabriel Krastl
Publikationsdatum
01.06.2015
Verlag
Springer Berlin Heidelberg
Erschienen in
Clinical Oral Investigations / Ausgabe 5/2015
Print ISSN: 1432-6981
Elektronische ISSN: 1436-3771
DOI
https://doi.org/10.1007/s00784-014-1325-z

Weitere Artikel der Ausgabe 5/2015

Clinical Oral Investigations 5/2015 Zur Ausgabe

Newsletter

Bestellen Sie unseren kostenlosen Newsletter Update Zahnmedizin und bleiben Sie gut informiert – ganz bequem per eMail.