581
Views
19
CrossRef citations to date
0
Altmetric
Review

Intraoral repair of chipped or fractured veneered zirconia crowns and fixed dental prosthesis: clinical guidelines based on literature review

, , , , &
Pages 1711-1723 | Received 25 Oct 2017, Accepted 15 Feb 2018, Published online: 27 Feb 2018

References

  • Harianawala HH, Kheur MG, Apte SK, et al. Comparative analysis of transmittance for different types of commercially available zirconia and lithium disilicate materials. J Adv Prosthodont. 2014;6:456–461.10.4047/jap.2014.6.6.456
  • Miyazaki T, Nakamura T, Matsumura H, et al. Current status of zirconia restoration. J Prosthodont Res. 2013;57:236–261.10.1016/j.jpor.2013.09.001
  • Agustin-Panadero R, Roman-Rodriguez JL, Ferreiroa A, et al. Zirconia in fixed prosthesis. A literature review. J Clin Exp Dent. 2014;6:e66–73.
  • Komine F, Blatz MB, Matsumura H. Current status of zirconia-based fixed restorations. J Oral Sci. 2010;52:531–539.10.2334/josnusd.52.531
  • Guess PC, Kulis A, Witkowski S, et al. Shear bond strengths between different zirconia cores and veneering ceramics and their susceptibility to thermocycling. Dent Mater. 2008;24:1556–1567.10.1016/j.dental.2008.03.028
  • Schley JS, Heussen N, Reich S, et al. Survival probability of zirconia-based fixed dental prostheses up to 5 yr: a systematic review of the literature. Eur J Oral Sci. 2010;118:443–450.10.1111/j.1600-0722.2010.00767.x
  • Kocaağaoğlu H, Manav T, Albayrak H. In vitro comparison of the bond strength between ceramic repair systems and ceramic materials and evaluation of the wettability. J Prosthodont. 2017;26:238–243.10.1111/jopr.2017.26.issue-3
  • Özcan M. Intraoral repair protocol for chipping or fracture of veneering ceramic in zirconia fixed dental prostheses. J Adhes Dent. 2015;17:189–190.
  • Fushiki R, Komine F, Honda J, et al. Long-term bond strength between layering indirect composite material and zirconia coated with silicabased ceramics. J Adhes Dent. 2015;17:273–281.
  • Han IH, Kang DW, Chung CH, et al. Effect of various intraoral repair systems on the shear bond strength of composite resin to zirconia. J Adv Prosthodont. 2013;5:248–255.10.4047/jap.2013.5.3.248
  • Kimmich M, Stappert CF. Intraoral treatment of veneering porcelain chipping of fixed dental restorations: a review and clinical application. J Am Dent Assoc. 2013;144:31–44.10.14219/jada.archive.2013.0011
  • Özcan M, Valandro LF, Pereira SM, et al. Effect of surface conditioning modalities on the repair bond strength of resin composite to the zirconia core / veneering ceramic complex. J Adhes Dent. 2013;15:207–210.
  • Al-Amleh B, Lyons K, Swain M. Clinical trials in zirconia: a systematic review. J Oral Rehabil. 2010;37:641–652.
  • Hickel R, Roulet JF, Bayne S, et al. Recommendations for conducting controlled clinical studies of dental restorative materials. Clin Oral Investig. 2007;11:5–33.10.1007/s00784-006-0095-7
  • Loomans B, Özcan M. Intraoral repair of direct and indirect restorations: procedures and guidelines. Oper Dent. 2016;41:S68–S78.10.2341/15-269-LIT
  • Sailer I, Feher A, Filser F, et al. Prospective clinical study of zirconia posterior fixed partial dentures: 3-year follow-up. Quintessence Int. 2006;37:685–693.
  • Sailer I, Feher A, Filser F, et al. Five-year clinical results of zirconia frameworks for posterior fixed partial dentures. Int J Prosthodont. 2007;20:383–388.
  • Molin MK, Karlsson SL. Five-year clinical prospective evaluation of zirconia-based Denzir 3-unit FPDs. Int J Prosthodont. 2008;21:223–227.
  • Sailer I, Gottnerb J, Kanelb S, et al. Randomized controlled clinical trial of zirconia-ceramic and metal-ceramic posterior fixed dental prostheses: a 3-year follow-up. Int J Prosthodont. 2009;22:553–560.
  • Schmitt J, Holst S, Wichmann M, et al. Zirconia posterior fixed partial dentures: a prospective clinical 3-year follow-up. Int J Prosthodont. 2009;22:597–603.
  • Tartaglia GM, Sidoti E, Sforza C. A 3-year follow-up study of all-ceramic single and multiple crowns performed in a private practice: a prospective case series. Clinics (Sao Paulo). 2011;66:2063–2070.10.1590/S1807-59322011001200011
  • Schmitt J, Goellner M, Lohbauer U, et al. Zirconia posterior fixed partial dentures: 5-year clinical results of a prospective clinical trial. Int J Prosthodont. 2012;25:585–589.
  • Ortorp A, Kihl ML, Carlsson GE. A 5-year retrospective study of survival of zirconia single crowns fitted in a private clinical setting. J Dent. 2012;40:527–530.10.1016/j.jdent.2012.02.011
  • Lops D, Mosca D, Casentini P, et al. Prognosis of zirconia ceramic fixed partial dentures: a 7-year prospective study. Int J Prosthodont. 2012;25:21–23.
  • Nicolaisen MH, Bahrami G, Schropp L, et al. Comparison of metal-ceramic and all-ceramic three-unit posterior fixed dental prostheses: a 3-year randomized clinical trial. Int J Prosthodont. 2016;29:259–264.10.11607/ijp.4504
  • Bomicke W, Rammelsberg P, Stober T, et al. Short-term prospective clinical evaluation of monolithic and partially veneered zirconia single crowns. J Esthet Restor Dent. 2017;29:22–30.10.1111/jerd.2017.29.issue-1
  • Kou W, Molin M, Sjogren G. Surface roughness of five different dental ceramic core materials after grinding and polishing. J Oral Rehabil. 2006;33:117–124.10.1111/jor.2006.33.issue-2
  • Kim MJ, Oh SH, Kim JH, et al. Wear evaluation of the human enamel opposing different Y-TZP dental ceramics and other porcelains. J Dent. 2012;40:979–988.10.1016/j.jdent.2012.08.004
  • Vult von Steyern P, Carlson P, Nilner K. All-ceramic fixed partial dentures designed according to the DC-Zirkon technique. A 2-year clinical study. J Oral Rehabil. 2005;32:180–187.
  • Larsson C, Vult von Steyern P. Five-year follow-up of implant-supported Y-TZP and ZTA fixed dental prostheses. A randomized, prospective clinical trial comparing two different material systems. Int J Prosthodont. 2010;23:555–561.
  • Beuer F, Stimmelmayr M, Gernet W, et al. Prospective study of zirconia-based restorations: 3-year clinical results. Quintessence Int. 2010;41:631–637.
  • Schmitt J, Wichmann M, Holst S, et al. Restoring severely compromised anterior teeth with zirconia crowns and feather-edged margin preparations: a 3-year follow-up of a prospective clinical trial. Int J Prosthodont. 2010;23:107–109.
  • Schmitter M, Mussotter K, Rammelsberg P, et al. Clinical performance of long-span zirconia frameworks for fixed dental prostheses: 5-year results. J Oral Rehabil. 2012;39:552–557.10.1111/jor.2012.39.issue-7
  • Vigolo P, Mutinelli S. Evaluation of zirconium-oxide-based ceramic single-unit posterior fixed dental prostheses (FDPs) generated with two CAD/CAM systems compared to porcelain-fused-to-metal single-unit posterior FDPs: a 5-year clinical prospective study. J Prosthodont. 2012;21:265–269.10.1111/jopr.2012.21.issue-4
  • Rinke S, Gersdorff N, Lange K, et al. Prospective evaluation of zirconia posterior fixed partial dentures: 7-year clinical results. Int J Prosthodont. 2013;26:164–171.10.11607/ijp.3229
  • Burke FJ, Crisp RJ, Cowan AJ, et al. Five-year clinical evaluation of zirconia-based bridges in patients in UK general dental practices. J Dent. 2013;41:992–999.10.1016/j.jdent.2013.08.007
  • Kolgeci L, Mericske E, Worni A, et al. Technical complications and failures of zirconia-based prostheses supported by implants followed up to 7 years: a case series. Int J Prosthodont. 2014;27:544–552.10.11607/ijp.3807
  • Naenni N, Bindl A, Sax C, et al. A randomized controlled clinical trial of 3-unit posterior zirconia-ceramic fixed dental prostheses (FDP) with layered or pressed veneering ceramics: 3-year results. J Dent. 2015;43:1365–1370.10.1016/j.jdent.2015.07.013
  • Ioannidis A, Bindl A. Clinical prospective evaluation of zirconia-based three-unit posterior fixed dental prostheses: up-to ten-year results. J Dent. 2016;47:80–85.10.1016/j.jdent.2016.01.014
  • Shi JY, Li X, Ni J, et al. Clinical evaluation and patient satisfaction of single zirconia-based and high-noble alloy porcelain-fused-to-metal crowns in the esthetic area: a retrospective cohort study. J Prosthodont. 2016;25:526–530.10.1111/jopr.12344
  • Dogan S, Raigrodski AJ, Zhang H, et al. Prospective cohort clinical study assessing the 5-year survival and success of anterior maxillary zirconia-based crowns with customized zirconia copings. J Prosthet Dent. 2017;117:226–232.10.1016/j.prosdent.2016.07.019
  • Heintze SD, Rousson V. Survival of zirconia- and metal-supported fixed dental prostheses: a systematic review. Int J Prosthodont. 2010;23:493–502.
  • Raigrodski AJ, Hillstead MB, Meng GK, et al. Survival and complications of zirconia-based fixed dental prostheses: a systematic review. J Prosthet Dent. 2012;107:170–177.10.1016/S0022-3913(12)60051-1
  • Anusavice KJ. Standardizing failure, success, and survival decisions in clinical studies of ceramic and metal-ceramic fixed dental prostheses. Dent Mater. 2012;28:102–111.10.1016/j.dental.2011.09.012
  • Pjetursson BE, Tan K, Lang NP, et al. A systematic review of the survival and complication rates of fixed partial dentures (FPDs) after an observation period of at least 5 years. Clin Oral Implants Res. 2004;15:625–642.10.1111/clr.2004.15.issue-6
  • Aboushelib MN, de Jager N, Kleverlaan CJ, et al. Microtensile bond strength of different components of core veneered all-ceramic restorations. Dent Mater. 2005;21:984–991.10.1016/j.dental.2005.03.013
  • Aboushelib MN, Kleverlaan CJ, Feilzer AJ. Microtensile bond strength of different components of core veneered all-ceramic restorations. Part II: zirconia veneering ceramics. Dent Mater. 2006;22:857–863.10.1016/j.dental.2005.11.014
  • Isgrò G, Pallav P, van der Zel JM, et al. The influence of the veneering porcelain and different surface treatments on the biaxial flexural strength of a heat-pressed ceramic. J Prosthet Dent. 2003;90:465–473.10.1016/j.prosdent.2003.08.003
  • Augstin-Panadero R, Fons-Font A, Roman-Rodriguez JL, et al. Zirconia versus metal: a preliminary comparative analysis of ceramic veneer behavior. Int J Prosthodont. 2012;25:294–300.
  • Kanzow P, Hoffmann R, Tschammler C, et al. Attitudes, practice, and experience of German dentists regarding repair restorations. Clin Oral Investig. 2017;21:1087–1093.10.1007/s00784-016-1859-3
  • Kanzow P, Dieckmann P, Hausdorfer T, et al. Repair restorations: Questionnaire survey among dentists in the Canton of Zurich, Switzerland. Swiss Dent J. 2017;127:300–311.
  • Gordan VV, Riley JL 3rd, Worley DC, et al. Restorative material and other tooth-specific variables associated with the decision to repair or replace defective restorations: Findings from The Dental PBRN. J Dent. 2012;40:397–405.10.1016/j.jdent.2012.02.001
  • Gordan VV, Riley J 3rd, Geraldeli S, et al. The decision to repair or replace a defective restoration is affected by who placed the original restoration: Findings from the National Dental PBRN. J Dent. 2014;42:1528–1534.10.1016/j.jdent.2014.09.005
  • Blum IR, Lynch CD, Schriever A, et al. Repair versus replacement of defective composite restorations in dental schools in Germany. Eur J Prosthodont Restor Dent. 2011;19:56–61.
  • Blum IR, Lynch CD, Wilson NH. Teaching of direct composite restoration repair in undergraduate dental schools in the United Kingdom and Ireland. Eur J Dent Educ. 2012;16:e53–e58.10.1111/j.1600-0579.2010.00674.x
  • Blum IR, Lynch CD, Wilson NH. Teaching of the repair of defective composite restorations in Scandinavian dental schools. J Oral Rehabil. 2012;39:210–216.10.1111/jor.2012.39.issue-3
  • Rashid H. The effect of surface roughness on ceramics used in dentistry: a review of literature. Eur J Dent. 2014;8:571–579.10.4103/1305-7456.143646
  • Rosentritt M, Preis V, Behr M, et al. Two-body wear of dental porcelain and substructure oxide ceramics. Clin Oral Investig. 2012;16:935–943.10.1007/s00784-011-0589-9
  • Kocaagaoglu HH, Gurbulak A. An assessment of shear bond strength between ceramic repair systems and different ceramic infrastructures. Scanning. 2015;37:300–305.10.1002/sca.v37.4
  • Beck DA, Janus CE, Douglas HB. Shear bond strength of composite resin porcelain repair materials bonded to metal and porcelain. J Prosthet Dent. 1990;64:529–533.10.1016/0022-3913(90)90122-S
  • Mohamed FF, Finkelman M, Zandparsa R, et al. Effects of surface treatments and cement types on the bond strength of porcelain-to-porcelain repair. J Prosthodont. 2014;23:618–625.10.1111/jopr.2014.23.issue-8
  • Saraç YŞ, Külünk T, Elekdağ-Türk S, et al. Effects of surface-conditioning methods on shear bond strength of brackets bonded to different all-ceramic materials. Eur J Orthod. 2011;33:667–672.10.1093/ejo/cjq132
  • Chung KH, Hwang YC. Bonding strengths of porcelain repair systems with various surface treatments. J Prosthet Dent. 1997;78:267–274.10.1016/S0022-3913(97)70025-8
  • Hooshmand T, van Noort R, Keshvad A. Bond durability of the resin-bonded and silane treated ceramic surface. Dent Mater. 2002;18:179–188.10.1016/S0109-5641(01)00047-1
  • Kern M, Barloi A, Yang B. Surface conditioning influences zirconia ceramic bonding. J Dent Res. 2009;88:817–822.10.1177/0022034509340881
  • Della Bona A, van Noort R. Ceramic surface preparations for resin bonding. Am J Dent. 1998;11:276–280.
  • Özcan M, Volpato CA. Surface conditioning protocol for the adhesion of resin-based materials to glassy matrix ceramics: how to condition and why? J. Adhes. Dent. 2015;17:292–293.
  • Özcan M, Vallittu PK. Effect of surface conditioning methods on the bond strength of luting cement to ceramics. Dent Mater. 2003;19:725–731.
  • Borges GA, Sophr AM, de Goes MF, et al. Effect of etching and airborne particle abrasion on the microstructure of different dental ceramics. J Prosthet Dent. 2003;89:479–488.10.1016/S0022-3913(02)52704-9
  • Tezvergil A, Lassila LV, Vallittu PK. Composite-composite repair bond strength: effect of different adhesion primers. J Dent. 2003;31:521–525.10.1016/S0300-5712(03)00093-9
  • Rosentritt M, Behr M, Kolbeck C, et al. In vitro repair of all-ceramic and fibre-reinforced composite crowns. Eur J Prosthodont Restor Dent. 2000;8:107–112.
  • Haselton DR, Diaz-Arnold AM, Dunne JT Jr. Shear bond strengths of 2 intraoral porcelain repair systems to porcelain or metal substrates. J Prosthet Dent. 2001;86:526–531.10.1067/mpr.2001.119843
  • Della Bona A, Borba M, Benetti P, et al. Effect of surface treatments on the bond strength of a zirconia-reinforced ceramic to composite resin. Braz Oral Res. 2007;21:10–15.10.1590/S1806-83242007000100002
  • Qeblawi DM, Munoz CA, Brewer JD, et al. The effect of zirconia surface treatment on flexural strength and shear bond strength to a resin cement. J Prosthet Dent. 2010;103:210–220.10.1016/S0022-3913(10)60033-9
  • Ural C, Kulunk T, Kulunk ŞS, et al. Determination of resin bond strength to zirconia ceramic surface using different primers. Acta Odontol Scand. 2011;69:48–53.10.3109/00016357.2010.517558
  • Thompson JY, Stoner BR, Piascik JR, et al. Adhesion/cementation to zirconia and other non-silicate ceramics: where are we now? Dent Mater. 2011;27:71–82.10.1016/j.dental.2010.10.022
  • Yang B, Scharnberg M, Wolfart S, et al. Influence of contamination on bonding to zirconia ceramic. J Biomed Mater Res B Appl Biomater. 2007;81:283–290.10.1002/(ISSN)1552-4981
  • Yang B, Wolfart S, Scharnberg M, et al. Influence of contamination on zirconia ceramic bonding. J Dent Res. 2007;86:749–753.10.1177/154405910708600812
  • Quaas AC, Yang B, Kern M. Panavia F 2.0 bonding to contaminated zirconia ceramic after different cleaning procedures. Dent Mater. 2007;23:506–512.10.1016/j.dental.2006.03.008
  • Zhang S, Kocjan A, Lehmann F, et al. Influence of contamination on resin bond strength to nano-structured alumina-coated zirconia ceramic. Eur J Oral Sci. 2010;118:396–403.10.1111/eos.2010.118.issue-4
  • Kirmali O, Kapdan A, Harorli OT, et al. Efficacy of ceramic repair material on the bond strength of composite resin to zirconia ceramic. Acta Odontol Scand. 2015;73:28–32.10.3109/00016357.2014.946963
  • Angkasith P, Burgess JO, Bottino MC, et al. Cleaning methods for zirconia following salivary contamination. J Prosthodont. 2016;25:375–379.10.1111/jopr.2016.25.issue-5
  • Heikkinen TT, Lassila LV, Matinlinna JP, et al. Effect of operating air pressure on tribochemical silica-coating. Acta Odontol Scand. 2007;65:241–248.10.1080/00016350701459753
  • Özcan M. A practical method for chairside repair of debonded porcelain denture teeth. J Prosthodont. 2006;15:47–50.
  • Kim NH, Kim YJ, Lee DY. Bond strengths of orthodontic metal brackets to tribochemically silica-coated zirconia surfaces using different 10-methacryloyloxydecyl dihydrogen phosphate-containing primers. J. Adhes. Dent. 2017;19:21–29.10.1016/j.ijadhadh.2016.12.006
  • Mirmohammadi H, Aboushelib MN, Salameh Z, et al. Innovations in bonding to zirconia based ceramics: part III. Phosphate monomer resin cements. Dent. Mater. 2010;26:786–792.
  • Zhao J, Wang X, Si W, et al. Effect of resin cement selection on the microtensile bond strength of adhesively veneered 3Y-TZP. Acta Odontol Scand. 2013;71:1105–1111.10.3109/00016357.2012.749516
  • Seabra B, Arantes-Oliveira S, Portugal J. Influence of multimode universal adhesives and zirconia primer application techniques on zirconia repair. J Prosthet Dent. 2014;112:182–187.10.1016/j.prosdent.2013.10.008
  • Lee SJ, Cheong CW, Wright RF, et al. Bond strength of the porcelain repair system to all-ceramic copings and porcelain. J Prosthodont. 2014;23:112–116.10.1111/jopr.2014.23.issue-2
  • Wong JD, Kei Lung CY, Tsoi JK, et al. Effects of a zirconate coupling agent incorporated into an experimental resin composite on its compressive strength and bonding to zirconia. J Mech Behav Biomed Mater. 2014;29:171–176.10.1016/j.jmbbm.2013.09.007
  • Khan AA, Al Kheraif AA, Jamaluddin S, et al. Recent trends in surface treatment methods for bonding composite cement to zirconia: a review. J Adhes Dent. 2017;19:7–19.
  • Kasraei S, Atefat M, Beheshti M, et al. Effect of surface treatment with carbon dioxide (CO2) laser on bond strength between cement resin and zirconia. J Lasers Med Sci. 2014;5:115–120.
  • Kasraei S, Rezaei-Soufi L, Yarmohamadi E, et al. Effect of CO2 and Nd:YAG lasers on shear bond strength of resin cement to zirconia ceramic. J Dent (Tehran). 2015;12:686–694.
  • Akin H, Tugut F, Akin GE, et al. Effect of Er:YAG laser application on the shear bond strength and microleakage between resin cements and Y-TZP ceramics. Lasers Med Sci. 2012;27:333–338.10.1007/s10103-011-0883-4
  • Erdem A, Akar GC, Erdem A, et al. Effects of different surface treatments on bond strength between resin cements and zirconia ceramics. Oper Dent. 2014;39:E118–127.10.2341/12-420-L
  • Gordan VV, Riley JL 3rd, Blaser PK, et al. Alternative treatments to replacement of defective amalgam restorations: results of a seven-year clinical study. J Am Dent Assoc. 2011;142:842–849.10.14219/jada.archive.2011.0274
  • Fernandez EM, Martin JA, Angel PA, et al. Survival rate of sealed, refurbished and repaired defective restorations: 4-year follow-up. Braz Dent J. 2011;22:134–139.10.1590/S0103-64402011000200008
  • Özcan M, Niedermeier W. Clinical study on the reasons for and location of failures of metal-ceramic restorations and survival of repairs. Int J Prosthodont. 2002;15:299–302.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.