PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Bond strength of modern self-adhesive resin cements to human dentin and different CAD/CAM ceramics

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The aim of the study was to evaluate the shear bond strength of CAD/CAM ceramics to dentin after cementation with conventional or self-adhesive resin cements. Methods: Three self-adhesive, self-etching cements (Panavia SA, RelyX U200, Maxcem Elite), and one conventional cement (Panavia V5), were selected to lute three CAD/CAM ceramics (IPS Empress CAD, IPS e.max CAD, IPS e.max ZirCAD) onto the dentin. The bond strength was evaluated using a shear strength test according to the PN-EN ISO 29022:2013-10. Evaluation of the differences was performed using the Statistica software. Failure modes were analyzed using a light microscope. Results: All the studied cements differed (regardless of the ceramic type) in the bond strength. The highest bond strength was observed in Panavia V5, lower – in RelyX U200 and Panavia SA, and the lowest – in Maxcem. For IPS e.max ZirCAD, it was observed that compared to Panavia V5, the other cements were characterized by a significantly higher bond strength. For the IPS Empress CAD and the IPS e.max CAD, Panavia V5 displayed the highest bond strength. For all the studied self-adhesive cements, the failure of adhesion between the cement and dentin was predominant mode. Conclusions: Significant differences were found in the shear bond strengths of the CAD/CAM ceramics luted to dentin using tested self-adhesive and conventional cements. The bond strength depended on the combination of ceramic and cement. The IPS e.max ZirCAD had the highest bond strength to dentin after cementation with RelyX U200, while the IPS Empress CAD and IPS e.max CAD – with Panavia V5.
Rocznik
Strony
25--34
Opis fizyczny
Bibliogr. 25 poz., rys., tab., wykr.
Twórcy
  • Department of Experimental Dentistry, Faculty of Dentistry, Wroclaw Medical University, Wrocław, Poland
  • Department of Experimental Dentistry, Faculty of Dentistry, Wroclaw Medical University, ul. Krakowska 26, 50-425 Wrocław, Poland
  • Department of Anthropology, Ludwik Hirszfeld Institute of Immunology and Experimental Therapy, Polish Academy of Sciences, Wrocław, Poland
  • Department of Prosthetic Dentistry, Faculty of Medicine, Dresden University of Technology, Dresden, Germany
  • Department of Prosthetic Dentistry, Faculty of Medicine, Dresden University of Technology, Dresden, Germany
  • Department of Experimental Dentistry, Faculty of Dentistry, Wroclaw Medical University, Wrocław, Poland
Bibliografia
  • [1] AB-GHANI Z., ARIFFIN Z., JAAFAR W., FOO S., MOHAMAD D., Shear bond strength of computer-aided design and computeraided manufacturing feldspathic and nano resin ceramics blocks cemented with three different generations of resin cement, J. Conserv. Dent., 2015, 18, 355.
  • [2] ARANGO S., PELAEZ VARGAS A., MONTEIRO F.J., TAMAYO L.F., Ceramics for Dental Restorations – An Introduction, Dyna (Columbia), 2010, 163, 26–36.
  • [3] BARUTCIGIL K., BARUTCIGIL Ç., KUL E., ÖZARSLAN M.M., BUYUKKAPLAN U.S., Effect of different surface treatments on bond strength of resin cement to a CAD/CAM restorative material, J. Prosthodont., 2019, 28, 71–78.
  • [4] BLATZ M.B., VONDERHEIDE M., CONEJO J., The Effect of Resin Bonding on Long-Term Success of High-Strength Ceramics, J. Dent. Res., 2018, 97, 132–139.
  • [5] DALBY R., ELLAKWA A., MILLAR B., MARTIN F.E., Influence of immediate dentin sealing on the shear bond strength of pressed ceramic luted to dentin with self-etch resin cement, Intern. J. of Dent., 2012, 310702.
  • [6] FUENTES M.V., CEBALLOS L., GONZÁLEZ-LÓPEZ S., Bond strength of self-adhesive resin cements to different treated indirect composites, Clin. Oral Investig., 2013, 17, 717–724.
  • [7] GO E., SHIN Y., PARK J., Evaluation of the microshear bond strength of MDP-containing and non–MDP-containing self- -adhesive resin cement on zirconia restoration, Oper. Dent., 2019, 44, 379–385.
  • [8] GUNDOGDU M., ALADAG L.I., Effect of adhesive resin cements on bond strength of ceramic core materials to dentin, Niger J. Clin. Pract., 2018, 21, 367–374.
  • [9] IvoclarVivadent Official: https://www.ivoclarvivadent.pl/pl/ p/dla-technikow-dentystycznych/produkty/materialy-caloceramiczne/ips-emax-system-dla-technikow/ips-emax-zircad/, [accessed: 12 November 2019].
  • [10] IvoclarVivadent Official: https://www.ivoclarvivadent.pl/pl/p/dla-technikow-dentystycznych/ips-emax-cad-mt/, [accessed: 12 November 2019.
  • [11] IvoclarVivadent Official: https://www.ivoclarvivadent.pl/pl/p/dla-technikow-dentystycznych/produkty/materialy-caloceramiczne/ips-empress-system-dla-technikow/ips-empress-cad/, [accessed: 12 November 2019].
  • [12] KACHHARA S., ARIGA P., JAIN A., Recommended cementation for monolithic zirconia crowns, Drug Invent. Today, 2018, 10, 566–568.
  • [13] LEE J.J., CHOI J.Y., SEO J.M., Influence of nano-structured alumina coating on shear bond strength between Y-TZP ceramic and various dual-cured resin cements, J. Adv. Prosthodont., 2017, 9, 130.
  • [14] LEE S., BAE J., CHOI J., JEON Y., JEONG C., YOON M., HUH J., Comparative Shear-Bond Strength of Six Dental Self-Adhesive Resin Cements to Zirconia, Materials, 2015, 8, 3306–3315.
  • [15] LENHARD W., LENHARD A., Calculation of effect sizes, Psychometrica, Dettelbach, Germany, 2016.
  • [16] LI R.W.K., CHOW T.W., MATINLINNA J.P., Ceramic dental biomaterials and CAD/CAM technology: State of the art, Journal of Prosthodontic Research, 2014, 58, 208–216.
  • [17] LÜHRS A.K., GUHR S., GUNAY H., GEURTSEN W., Shear bond strength of self-adhesive resins compared to resin cements with etch and rinse adhesives to enamel and dentin in vitro, Clin. Oral Investig., 2010, 14, 193–199.
  • [18] OZYONEY G., YANIKOĞLU F., TAĞTEKIN D., OZYONEY N., OKSÜZ M., Shear Bond Strength of Composite Resin Cements to Ceramics, Marmara Dent. J., 2013, 2, 61–66.
  • [19] PEUTZFELDT A., SAHAFI A., FLURY S., Bonding of restorative materials to dentin with various luting agents, Oper. Dent., 2011, 36, 266–273.
  • [20] REBHOLZ-ZARIBAF N., ÖZCAN M., Adhesion to zirconia as a function of primers/silane coupling agents, luting cement types, aging and test methods, J Adhes Sci Technol, 2017, 31, 1408–1421.
  • [21] SATHISH S., LAKSHMI S., PATEL P., ANNAPOORNI H., Effect of thermocycling on the micro-tensile bond strength between self-adhesive resin cement and nonphosphate monomer cements on zirconium-oxide ceramics, Indian J. Dent. Res., 2019, 30, 73–79.
  • [22] SIRISHA K., RAMBABU T., RAVI SHANKAR Y., RAVIKUMAR P., Validity of bond strength tests: A critical review, Part I, J. Conser. Dentis., 2014, 17, 305–311.
  • [23] SPITZNAGEL F.A., BOLDT J., GIERTHMUEHLEN P.C., CAD/CAM Ceramic Restorative Materials for Natural Teeth, J. Dent. Res., 2018, 97, 1082–1091.
  • [24] SUYAMA Y., DE MUNCK J., CARDOSO M.V., YAMADA T., VAN MEERBEEK B., Bond durability of self-adhesive composite cements to dentine, J. Dent., 2013, 41, 908–917.
  • [25] VIOTTI R.G., KASAZ A., PENA C.E., ALEXANDRE R.S., ARRAIS C.A., REIS A.F., Microtensile bond strength of new self-adhesive luting agents and conventional multistep systems, J. Prosthet. Dent., 2009, 102, 306–312.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-8bea87c9-e9cf-4632-836b-f7634d5f8dea
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.