Rezin Simanlara Güncel Bakış

Yapıştırma simanlarının temel görevi, indirekt restorasyon ve diş dokusu veya implant dayanağı arasında kalan boşluğu doldurmak ve restorasyonun fonksiyon sırasında yerinden çıkmasını önlemektir. Geleneksel simanların yüksek çözünürlük, adezyon eksikliği ve yetersiz estetik özellikleri gibi olumsuz taraflarını iyileştirmek amacıyla rezin simanlar geliştirilmiş ve yaygın kullanım alanı bulmuştur. Geleneksel simanlara göre üstün özellikleri olan rezin simanların avantajlarından yararlanabilmek için hangi tip rezin simanın, nerede nasıl kullanılacağı konusunda bilgi sahibi olunmalıdır

Contemporary Approach to Resin Cements

The primary function of luting cements is to fill the space between indirect restorations and dental tissue or implant abutments, and to prevent dislodgement during function. In order to overcome the negative aspects of conventional cement such as high solubility, adhesion deficiency, insufficient esthetic features; resin cements have been developed and have found widespread use. To take the advantage of superior characteristic of resin cements, one should be knowledgable about which resin cement type to use, when and how

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  • Hill EE., Lott J. A clinically focused discussion of luting materials. Aust. Dent. J. 56 (Suppl 1): 67- 76, 2011.
  • Rosenstiel SF., Land MF., Crispin BJ. Dental luting agents: A review of the current literature. J. Prosthet. Dent. 80: 280-301, 1998.
  • Powers JM. Resin Composite Restorative Materials. In: Craig’s Restorative Dental Materials. 12nd ed. St. Louis: Elsevier Mosby, Mo. 2006.
  • Van Landuyf KL., Snauwaert J., De Munck J., Peumans M., Yoshida Y., Poitevin A., Coutinho E., Suzuki K., Lambrechts P., Van Meerbeek B. Systematic review of the chemical composition of contemporary dental adhesives. Biomaterials. 28: 3757-3785, 2007.
  • Blatz MB., Sadan A., Kern M. Resin-ceramic bonding: A review of the literature. J. Prosthet. Dent. 89: 268-274, 2003.
  • Lu H., Mehmood A., Chow A., Powers JM. Influence of polymerization mode on flexural properties of esthetic resin luting agents. J. Prosthet. Dent. 94: 549-554, 2005.
  • de la Macorra JC., Pradíes G. Conventional and adhesive luting cements. Clin. Oral Investig. 6: 198-204, 2002.
  • Arisu HD., Uçtasli MB., Eligüzeloglu E., Ozcan S., Omürlü H. The effect of occlusal loading on the microleakage of class V restorations. Oper. Dent. 33: 135-141, 2008.
  • Lu H., Powers JM. Color stability of resin cements after accelerated aging. Am. J. Dent. 17: 354- 358, 2004.
  • Burke FJ., Fleming GJ., Nathanson D., Marquis PM. Are adhesive technologies needed to support ceramics? An assessment of the current evidence. J. Adhes. Dent. 4: 7-22, 2002.
  • Alex G. Preparing porcelain surfaces for optimal bonding. Compend. Contin. Educ. Dent. 29: 324-335; quiz 36, 2008.
  • Boyle JJ. Jr., Naylor WP., Blackman RB. Marginal accuracy of metal ceramic restorations with porcelain facial margins. J. Prosthet. Dent. 69: 19-27, 1993.
  • Beschnidt SM., Strub JR. Evaluation of the marginal accuracy of different all-ceramic crown systems after simulation in the artificial mouth. J. Oral. Rehabil. 26: 582-593, 1999.
  • Behr M., Rosentritt M., Wimmer J., Lang R, Kolbeck C., Bürgers R., Handel G. Self-adhesive resin cement versus zinc phosphate luting material: A prospective clinical trial begun 2003. Dent. Mater. 25: 601-604, 2009.
  • Radovic I., Monticelli F., Goracci C., Vulicevic ZR., Ferrari M. Self-adhesive resin cements: A literature review. J. Adhes. Dent. 10: 251-258, 2008.
  • Jongsma LA., de Jager N., Kleverlaan CJ., Pallav P., Feilzer AJ. Shear bond strength of three dual- cured resin cements to dentin analyzed by finite element analysis. Dent. Mater. 28: 1080-1088, 2012.
  • Kilinc E., Antonson SA., Hardigan PC., Kesercioglu A. Resin cement color stability and its influence on the final shade of all-ceramics. J. Dent. 39 (Suppl 1): 30-36, 2011.
  • Giachetti L., Grandini S., Calamai P., Fantini G., Scaminaci Russo D. Translucent fiber post cementation using light- and dual-curing adhesive techniques and a self-adhesive material: Push-out test. J. Dent. 37: 638-642, 2009.
  • Piwowarczyk A., Bender R., Ottl P., Lauer HC. Long-term bond between dual-polymerizing cementing agents and human hard dental tissue. Dent. Mater. 23: 211-217, 2007.
  • Cal E., Türkün LS., Türkün M., Toman M., Toksavul S. Effect of an antibacterial adhesive on the bond strength of three different luting resin composites. J. Dent. 34: 372-380, 2006.
  • Van Meerbeek M., Inokoshi S., Braem M., Lambrechts P., Vanherle G. Morphological aspects of the resin-dentin interdiffusion zone with different dentin adhesive systems. J. Dent. Res. 71: 1530-1540, 1992.
  • Perdigão J. Dentin bonding-variables related to the clinical situation and the substrate treatment. Dent. Mater. 26: 24-37, 2010.
  • Hashimoto M., Fujita S., Endo K. Bonding of self-etching adhesives on dehydrated dentin. J. Adhes. Dent. 13: 49-54, 2011.
  • Carville R., Quinn F. The selection of adhesive systems for resin-based luting agents. J. Ir. Dent. Assoc. 54: 218-222, 2008.
  • D’Arcangelo C., De Angelis F., D’Amario M., Zazzeroni S., Ciampoli C., Caputi S. The influence of luting systems on the microtensile bond strength of dentin to indirect resin-based composite and ceramic restorations. Oper. Dent. 34: 328-336, 2009.
  • Nishiyama N., Tay FR., Fujita K., Pashley DH., Ikemura K., Hiraishi N., King NM. Hydrolysis of functional monomers in a single-bottle self- etching primer--correlation of 13C NMR and TEM findings. J. Dent. Res. 85: 422-426, 2006.
  • Nishiyama N., Suzuki K., Nagatsuka A., Yokota I., Nemoto K. Dissociation states of collagen functional groups and their effects on the priming efficacy of HEMA bonded to collagen. J. Dent. Res. 82: 257-261, 2003.
  • Tay FR., Pashley DH., Garcìa-Godoy F., Yiu CK. Single-step, self-etch adhesives behave as permeable membranes after polymerization. Part II. Silver tracer penetration evidence. Am. J. Dent. 17: 315-322, 2004.
  • Yeşilyurt C., Bulucu B. Bond strength of total- etch and self-etch dentin adhesive systems on peripheral and central dentinal tissue: A microtensile bond strength test. J. Contemp. Dent. Pract. 7: 26-36, 2006.
  • Jivraj SA., Kim TH., Donovan TE. Selection of luting agents, part 1. J. Calif. Dent. Assoc. 34: 149-160, 2006.
  • Hill EE. Dental cements for definitive luting: A review and practical clinical considerations. Dent. Clin. North Am. 51: 643-658, 2007.
  • Gokce K., Aykor A., Ersoy M., Ozel E., Soyman M. Effect of phosphoric acid etching and self- etching primer application methods on dentinal shear bond strength. J. Adhes. Dent. 10: 345- 349, 2008.
  • Burke FJ. Evaluating restorative materials and procedures in dental practice. Adv. Dent. Res. 18: 46-49, 2005.
  • Pegoraro TA., da Silva NR., Carvalho RM. Cements for use in esthetic dentistry. Dent. Clin. North Am. 51: 453-471, 2007.
  • De Munck J., Vargas M., Van Landuyt K., Hikita K., Lambrechts P., Van Meerbeek B. Bonding of an auto-adhesive luting material to enamel and dentin. Dent. Mater. 20: 963-971, 2004.
  • Yang B., Ludwig K., Adelung R., Kern M. Micro- tensile bond strength of three luting resins to human regional dentin. Dent. Mater. 22: 45-56, 2006.
  • Viotti RG., Kasaz A., Pena CE., Alexandre RS., Arrais CA., Reis AF. Microtensile bond strength of new self-adhesive luting agents and conventional multistep systems. J. Prosthet. Dent. 102: 306- 312, 2009.
  • Abo-Hamar SE., Federlin M., Hiller KA., Friedl KH., Schmalz G. Effect of temporary cements on the bond strength of ceramic luted to dentin. Dent. Mater. 21: 794-803, 2005.
  • Nakamura T., Wakabayashi K., Kinuta S., Nishida H., Miyamae M., Yatani H. Mechanical properties of new self-adhesive resin-based cement. J. Prosthodont. Res. 54: 59-64, 2010.
  • Pavan S., dos Santos PH., Berger S., Bedran- Russo AK. The effect of dentin pretreatment on the microtensile bond strength of self-adhesive resin cements. J. Prosthet. Dent. 104: 258-264, 2010.
  • Duarte S. Jr., Botta AC., Meire M., Sadan A. Microtensile bond strengths and scanning electron microscopic evaluation of self-adhesive and self- etch resin cements to intact and etched enamel. J. Prosthet. Dent. 100: 203-210, 2008.
  • Usumez A., Aykent F. Bond strengths of porcelain laminate veneers to tooth surfaces prepared with acid and Er,Cr:YSGG laser etching. J. Prosthet. Dent. 90: 24-30, 2003.
  • Shen C., Oh WS., Williams JR. Effect of post- silanization drying on the bond strength of composite to ceramic. J. Prosthet. Dent. 91: 453- 458, 2004.
  • Manicone PF., Rossi Iommetti P., Raffaelli L. An overview of zirconia ceramics: Basic properties and clinical applications. J. Dent. 35: 819-826, 2007.
  • Conrad HJ., Seong WJ., Pesun IJ. Current ceramic materials and systems with clinical recommendations: A systematic review. J. Prosthet. Dent. 98: 389-404, 2007.
  • Hooshmand T., Matinlinna JP., Keshvad A., Eskandarion S., Zamani F. Bond strength of a dental leucite-based glass ceramic to a resin cement using different silane coupling agents. J. Mech. Behav. Biomed. Mater. 17: 327-332, 2013.
  • Matinlinna JP., Vallittu PK. Silane based concepts on bonding resin composite to metals. J. Contemp. Dent. Pract. 8: 1-8, 2007.
  • Ozcan M., Nijhuis H., Valandro LF. Effect of various surface conditioning methods on the adhesion of dual-cure resin cement with MDP functional monomer to zirconia after thermal aging. Dent. Mater. J. 27: 99-104, 2008.
  • Hummel M., Kern M. Durability of the resin bond strength to the alumina ceramic Procera. Dent. Mater. 20: 498-508, 2004.
  • Atsu SS., Kilicarslan MA., Kucukesmen HC., Aka PS. Effect of zirconium-oxide ceramic surface treatments on the bond strength to adhesive resin. J. Prosthet. Dent. 95: 430-436, 2006.
  • Sahinkesen G., Oktay EA., Er Ö., Koçak MM., Kiliç A. Evaluation of residual antimicrobial effects and surface changes of gutta-percha disinfected with different solutions. J. Contemp. Dent. Pract. 12: 47-51, 2011.
  • Fabianelli A., Pollington S., Papacchini F., Goracci C., Cantoro A., Ferrari M., Van Noort R. The effect of different surface treatments on bond strength between leucite reinforced feldspathic ceramic and composite resin. J. Dent. 38: 39-43, 2010.
  • Kern M., Wegner SM. Bonding to zirconia ceramic: Adhesion methods and their durability. Dent. Mater. 14: 64-71, 1998.
  • Dias de Souza GM., Thompson VP., Braga RR. Effect of metal primers on microtensile bond strength between zirconia and resin cements. J. Prosthet. Dent. 105: 296-303, 2011.
  • Yang B., Barloi A., Kern M. Influence of air- abrasion on zirconia ceramic bonding using an adhesive composite resin. Dent. Mater. 26: 44- 50, 2010.
  • Wolfart M., Lehmann F., Wolfart S., Kern M. Durability of the resin bond strength to zirconia ceramic after using different surface conditioning methods. Dent. Mater. 23: 45-50, 2007.
  • Kim BK., Bae HE., Shim JS., Lee KW. The influence of ceramic surface treatments on the tensile bond strength of composite resin to all-ceramic coping materials. J. Prosthet. Dent. 94: 357-362, 2005.
  • Bitter K., Priehn K., Martus P., Kielbassa AM. In vitro evaluation of push-out bond strengths of various luting agents to tooth-colored posts. J. Prosthet. Dent. 95: 302-310, 2006.
ADO Klinik Bilimler Dergisi-Cover
  • ISSN: 1307-3540
  • Yayın Aralığı: Yılda 3 Sayı
  • Başlangıç: 2006
  • Yayıncı: Ankara Diş Hekimleri Odası