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The Effect of Some Traditional Beverages on the Colour Stability of the Resin Nanoceramic Material

Yıl 2024, Cilt: 10 Sayı: 3, 153 - 158, 31.12.2024
https://doi.org/10.21306/dishekimligi.1505687

Öz

Aim: The aim of this study was to analyse the colouring effect of traditional Turkish beverages, which are frequently consumed in our society, on CAD/CAM resin nano ceramic block Material.
Methods: A total of 20 samples were used resin nanoceramic CAD/CAM blocks (Cerasmart.GC Corporation, Tokyo, Japan) with dimensions of 12x10x2 mm3 . The surfaces of all samples were polished with 800, 1000 and 1200 grit silicon carbide abrasives (3M, St. Paul, USA) and rinsed. The specimens were randomly divided into 4 groups (n=5). The initial color values and time dependent color changes of the samples on 1st, 3rd and 7th days were recorded using a dental spectrophotometer (VITA Easyshade Advance 4.0, Vita Zahnfabrik, Germany). Statistical data were analysed using with the R WRS2 package (Wilcox & Schönbrodt, 2015). Significance level was taken as p<0.050.
Results: The samples kept in all solutions did not exceed the clinically discolouration (ΔE*< 3.3) at the end of 72 hours. After 1 week, the most colour change in the samples was detected in tea (ΔE*= 4,40), while no significant difference was found between the other groups (ΔE*= 2,08 - 1,02). The colour changes in the samples were ranked as distilled water < turnip juice < Turkish coffee < tea.
Conclusıon: After 1 week of immersion, the colour stability of Cerasmart resin nanoceramic block material was clinically affected by tea, while no noticeable colour change occurred in the other groups.

Kaynakça

  • 1. Bona A, Corazza PH, Zhang Y. Characterization of a polymer-infiltrated ceramic-network material. Dent Mater. 2014;30(5):564-69.
  • 2. Rohr N, Flury A, Fischer J: Efficacy of a universal adhesive in the bond strength of composite cements to polymer-infiltrated ceramic. J Adhes Dent. 2017;19(5):417-24.
  • 3. Ruse ND, Sadoun MJ. Resin-composite blocks for dental CAD/CAM applications. J Dent Res. 2014;93(12):1232-34.
  • 4. Wang LK, Liu YN, Hui H, Li PP. Color stability of computer aided design and computer aided manufacture composite ceramic/resin cements after accelerated ageing. Chin. J. Stomatol. 2019;54(11):765-69.
  • 5. Awada A, Nathanson D. Mechanical properties of resin-ceramic CAD/CAM restorative materials. J Prosthet Dent. 2015;114(4):587-93.
  • 6. Facenda JC, Borba M, Corazza PH. A literature review on the new polymer‐infiltrated ceramic‐network material (PICN). J Esthet Restor Dent. 2018;30(4):281-86.
  • 7. Furtado de Mendonca A, Shahmoradi M, Gouvêa CVD de, de Souza GM, Ellakwa A. Microstructural and mechanical characterization of CAD/CAM materials for monolithic dental restorations. J. Prosthodont. 2019;28(2):e587-e594.
  • 8. Gracis S, Thompson VP, Ferencz JL, Silva NRFA, Bonfante EA. A new classification system for all-ceramic and ceramic-like restorative materials. Int J Prosthodont. 2015;28(3):227-35.
  • 9. Akarca EM, Şahin D, Cana RŞ. Rezı̇n matrı̇ks seramı̇kler-derleme. Curr Res Dent Sci. 2022;32(1):114-18.
  • 10. Erdemir U, Yildiz E, Eren MM, Ozel S. Surface hardness evaluation of different composite resin materials: influence of sports and energy drinks immersion after a short-term period. J. Appl. Oral Sci. 2013;21(2):124-31.
  • 11. Stawarczyk B, Sener B, Trottmann A, Roos M, Ozcan M, Hammerle CHF. Discoloration of manually fabricated resins and industrially fabricated CAD/CAM blocks versus glass-ceramic: effect of storage media, duration, and subsequent polishing. Dent Mater J. 2012;31(3):377-83.
  • 12. Nasim I, Neelakantan P, Sujeer R, Subbarao CV. Color stability of microfilled, microhybrid and nanocomposite resins—an in vitro study. J Dent. 2010;38(2):e137-e142.
  • 13. Sproull RC. Color matching in dentistry. Part II. Practical applications of the organization of color. J Prosthet Dent. 2001;86(5):458-464.
  • 14. Ertas E, Gueler AU, Yuecel AC, Köprülü H, Güler E. Color stability of resin composites after immersion in different drinks. Dent Mater J. 2006;25(2):371-76.
  • 15. Guler AU, Yilmaz F, Kulunk T, Guler E, Kurt S. Effects of different drinks on stainability of resin composite provisional restorative materials. J Prosthet Dent. 2005;94(2):118-24.
  • 16. Lim B, Kim C. Difference in polymerization color changes of dental resin composites by the measuring aperture size. J Biomed Mater Res B Appl Biomater. 2003;66(1):373-78.
  • 17. Gasparik C, Culic B, Varvara MA, Grecu A, Burde A, Dudea D. Effect of accelerated staining and bleaching on chairside CAD/CAM materials with high and low translucency. Dent Mater J. 2019;38(6):987-93.
  • 18. Carlos NR, Pinto AVD, Do Amaral FLB, França FMG, Turssi CP, Basting RT. Influence of staining solutions on color change and enamel surface properties during at-home and in-office dental bleaching: an in situ study. Oper Dent. 2019;44(6):595-608.
  • 19. Alharbi N, Alharbi A, Osman R. Stain susceptibility of 3D-printed nanohybrid composite restorative material and the efficacy of different stain removal techniques: an in vitro study. Materials. 2021;14(19):5621.
  • 20. Quek SHQ, Yap AUJ, Rosa V, Tan KBC, Teoh KH. Effect of staining beverages on color and translucency of CAD/CAM composites. J Esthet Restor Dent. 2018;30(2):e9-e17.
  • 21. Ergücü Z, Türkün LS, Aladag A. Color stability of nanocomposites polished with one-step systems. Oper Dent. 2008;33(4):413-20.
  • 22. Ardu S, Braut V, Gutemberg D, Krejci I, Dietschi D, Feilzer AJ. A long-term laboratory test on staining susceptibility of esthetic composite resin materials. Quintessence Int. 2010;41(8):695-702.
  • 23. Lee YK. Changes in the translucency of porcelain and repairing resin composite by the illumination. Dent Mater. 2007;23(4):492-97.
  • 24. Um CM, Ruyter I. Staining of resin-based veneering materials with coffee and tea. Quintessence Int. 1991;22(5):377-86.
  • 25. Kang YA, Lee HA, Chang J, Moon W, Chung SH, Lim BS. Color stability of dental reinforced CAD/CAM hybrid composite blocks compared to regular blocks. Materials. 2020;13(21):4722.
  • 26. Fontes ST, Fernández MR, Moura CM de, Meireles SS. Color stability of a nanofill composite: effect of different immersion media. J Appl Oral Sci. 2009;17(5):388-91.
  • 27. Aydın N, Karaoğlanoğlu S, Oktay EA, Kılıçarslan MA. Investigating the color changes on resin‐based CAD/CAM Blocks. J Esthet Restor Dent. 2020;32(2):251-56.
  • 28. Tuncer D, Karaman E, Firat E. Does the temperature of beverages affect the surface roughness, hardness, and color stability of a composite resin? Eur J Dent. 2013;7(02):165-71.
  • 29. West NX, Maxwell A, Hughes JA, Parker DM, Newcombe RG, Addy M. A method to measure clinical erosion: the effect of orange juice consumption on erosion of enamel. J Dent. 1998;26(4):329-35.
  • 30. Caballero B,Trugo LC, Finglas PM. Encyclopedia of food sciences and nutrition. 2nd ed. Vol 1-10. Elsevier Science BV. pp. 1498-1506, 2003.
  • 31. Farah A. Coffee constituents. Coffee: Emerging health effects and disease prevention. Primera ed. Oxford, UK. John Wiley & Sons Inc. 1: pp. 21-58, 2012.
  • 32. Urgancı Y. Hurma ve Keçiboynuzu Çekirdeği Kullanılarak Türk Kahvesi Üretimi ve Üretilen Kahvelerin Duyusal Özelliklerinin Belirlenmesi. Yüksek Lisans Tezi. İstanbul Gelişim Üniversitesi, Lisansüstü Eğitim Enstitüsü; 2022.
  • 33. Barutcigil Ç, Harorlı Ot, Seven N. Bazı geleneksel içeceklerin mikrohibrit kompozit rezinde meydana getirdiği renk değişikliklerinin incelenmesi. Atatürk Üniv Diş Hek Fak Derg. 2012;22(2):114-19.
  • 34. Atabay C, Tunçdemir MT. Comparison of color stability of laminate temporary restoration materials kept in traditional Turkish beverages. Yeditepe Dent J. 2019;15(2):166-70.

Bazı Geleneksel İçeceklerin Rezin Nano Seramik Materyalinin Renk Stabilitesi̇ Üzerindeki̇ Etkisinin İncelenmesi

Yıl 2024, Cilt: 10 Sayı: 3, 153 - 158, 31.12.2024
https://doi.org/10.21306/dishekimligi.1505687

Öz

AMAÇ: Bu çalışmanın amacı, toplumumuzda sıklıkla tüketilen geleneksel Türk içeceklerinin CAD/CAM rezin nano seramik blok materyali üzerindeki renklendirme etkisini analiz etmektir.
GEREÇ VE YÖNTEM: Toplam 20 örnek, 12x10x2 mm3 boyutlarında rezin nanoseramik CAD/CAM bloklardan (Cerasmart.GC Corporation, Tokyo, Japonya) kesilerek elde edildi. Tüm örneklerin yüzeyleri 800, 1000 ve 1200 grit silikon karbid zımparalar (3M, St. Paul, ABD) ile cilalandı ve yıkandı. Örnekler rastgele 4 gruba ayrıldı (n=5). Örneklerin 1., 3. ve 7. günlerdeki başlangıç renk değerleri ve zamana bağlı renk değişimleri dental bir spektrofotometre (VITA Easyshade Advance 4.0, Vita Zahnfabrik, Almanya) kullanılarak kaydedildi. İstatistiksel veriler R WRS2 paketi kullanılarak analiz edildi (Wilcox & Schönbrodt, 2015). Anlamlılık düzeyi p<0.050 olarak alındı.
BULGULAR: Tüm solüsyonlarda bekletilen örnekler 72 saatin sonunda klinik eşik değeri (ΔE*< 3,3) aşmamıştır. 1 hafta sonra, örneklerdeki en fazla renk değişimi çayda tespit edilirken (ΔE*= 4,40), diğer gruplar arasında anlamlı bir fark bulunamamıştır (ΔE*= 2,08 - 1,02). Test edilen tüm içecekler için örneklerdeki renk değişimleri distile su < şalgam suyu < Türk kahvesi < çay şeklinde sıralanmıştır.
SONUÇ: 1 haftalık daldırma sonrasında, Cerasmart rezin nanoseramik blok materyalinin renk stabilitesi çaydan klinik olarak etkilenirken, Türk kahvesi, şalgam suyu ve distile suya daldırılan örneklerde belirgin bir renk değişikliği meydana gelmemiştir.

Kaynakça

  • 1. Bona A, Corazza PH, Zhang Y. Characterization of a polymer-infiltrated ceramic-network material. Dent Mater. 2014;30(5):564-69.
  • 2. Rohr N, Flury A, Fischer J: Efficacy of a universal adhesive in the bond strength of composite cements to polymer-infiltrated ceramic. J Adhes Dent. 2017;19(5):417-24.
  • 3. Ruse ND, Sadoun MJ. Resin-composite blocks for dental CAD/CAM applications. J Dent Res. 2014;93(12):1232-34.
  • 4. Wang LK, Liu YN, Hui H, Li PP. Color stability of computer aided design and computer aided manufacture composite ceramic/resin cements after accelerated ageing. Chin. J. Stomatol. 2019;54(11):765-69.
  • 5. Awada A, Nathanson D. Mechanical properties of resin-ceramic CAD/CAM restorative materials. J Prosthet Dent. 2015;114(4):587-93.
  • 6. Facenda JC, Borba M, Corazza PH. A literature review on the new polymer‐infiltrated ceramic‐network material (PICN). J Esthet Restor Dent. 2018;30(4):281-86.
  • 7. Furtado de Mendonca A, Shahmoradi M, Gouvêa CVD de, de Souza GM, Ellakwa A. Microstructural and mechanical characterization of CAD/CAM materials for monolithic dental restorations. J. Prosthodont. 2019;28(2):e587-e594.
  • 8. Gracis S, Thompson VP, Ferencz JL, Silva NRFA, Bonfante EA. A new classification system for all-ceramic and ceramic-like restorative materials. Int J Prosthodont. 2015;28(3):227-35.
  • 9. Akarca EM, Şahin D, Cana RŞ. Rezı̇n matrı̇ks seramı̇kler-derleme. Curr Res Dent Sci. 2022;32(1):114-18.
  • 10. Erdemir U, Yildiz E, Eren MM, Ozel S. Surface hardness evaluation of different composite resin materials: influence of sports and energy drinks immersion after a short-term period. J. Appl. Oral Sci. 2013;21(2):124-31.
  • 11. Stawarczyk B, Sener B, Trottmann A, Roos M, Ozcan M, Hammerle CHF. Discoloration of manually fabricated resins and industrially fabricated CAD/CAM blocks versus glass-ceramic: effect of storage media, duration, and subsequent polishing. Dent Mater J. 2012;31(3):377-83.
  • 12. Nasim I, Neelakantan P, Sujeer R, Subbarao CV. Color stability of microfilled, microhybrid and nanocomposite resins—an in vitro study. J Dent. 2010;38(2):e137-e142.
  • 13. Sproull RC. Color matching in dentistry. Part II. Practical applications of the organization of color. J Prosthet Dent. 2001;86(5):458-464.
  • 14. Ertas E, Gueler AU, Yuecel AC, Köprülü H, Güler E. Color stability of resin composites after immersion in different drinks. Dent Mater J. 2006;25(2):371-76.
  • 15. Guler AU, Yilmaz F, Kulunk T, Guler E, Kurt S. Effects of different drinks on stainability of resin composite provisional restorative materials. J Prosthet Dent. 2005;94(2):118-24.
  • 16. Lim B, Kim C. Difference in polymerization color changes of dental resin composites by the measuring aperture size. J Biomed Mater Res B Appl Biomater. 2003;66(1):373-78.
  • 17. Gasparik C, Culic B, Varvara MA, Grecu A, Burde A, Dudea D. Effect of accelerated staining and bleaching on chairside CAD/CAM materials with high and low translucency. Dent Mater J. 2019;38(6):987-93.
  • 18. Carlos NR, Pinto AVD, Do Amaral FLB, França FMG, Turssi CP, Basting RT. Influence of staining solutions on color change and enamel surface properties during at-home and in-office dental bleaching: an in situ study. Oper Dent. 2019;44(6):595-608.
  • 19. Alharbi N, Alharbi A, Osman R. Stain susceptibility of 3D-printed nanohybrid composite restorative material and the efficacy of different stain removal techniques: an in vitro study. Materials. 2021;14(19):5621.
  • 20. Quek SHQ, Yap AUJ, Rosa V, Tan KBC, Teoh KH. Effect of staining beverages on color and translucency of CAD/CAM composites. J Esthet Restor Dent. 2018;30(2):e9-e17.
  • 21. Ergücü Z, Türkün LS, Aladag A. Color stability of nanocomposites polished with one-step systems. Oper Dent. 2008;33(4):413-20.
  • 22. Ardu S, Braut V, Gutemberg D, Krejci I, Dietschi D, Feilzer AJ. A long-term laboratory test on staining susceptibility of esthetic composite resin materials. Quintessence Int. 2010;41(8):695-702.
  • 23. Lee YK. Changes in the translucency of porcelain and repairing resin composite by the illumination. Dent Mater. 2007;23(4):492-97.
  • 24. Um CM, Ruyter I. Staining of resin-based veneering materials with coffee and tea. Quintessence Int. 1991;22(5):377-86.
  • 25. Kang YA, Lee HA, Chang J, Moon W, Chung SH, Lim BS. Color stability of dental reinforced CAD/CAM hybrid composite blocks compared to regular blocks. Materials. 2020;13(21):4722.
  • 26. Fontes ST, Fernández MR, Moura CM de, Meireles SS. Color stability of a nanofill composite: effect of different immersion media. J Appl Oral Sci. 2009;17(5):388-91.
  • 27. Aydın N, Karaoğlanoğlu S, Oktay EA, Kılıçarslan MA. Investigating the color changes on resin‐based CAD/CAM Blocks. J Esthet Restor Dent. 2020;32(2):251-56.
  • 28. Tuncer D, Karaman E, Firat E. Does the temperature of beverages affect the surface roughness, hardness, and color stability of a composite resin? Eur J Dent. 2013;7(02):165-71.
  • 29. West NX, Maxwell A, Hughes JA, Parker DM, Newcombe RG, Addy M. A method to measure clinical erosion: the effect of orange juice consumption on erosion of enamel. J Dent. 1998;26(4):329-35.
  • 30. Caballero B,Trugo LC, Finglas PM. Encyclopedia of food sciences and nutrition. 2nd ed. Vol 1-10. Elsevier Science BV. pp. 1498-1506, 2003.
  • 31. Farah A. Coffee constituents. Coffee: Emerging health effects and disease prevention. Primera ed. Oxford, UK. John Wiley & Sons Inc. 1: pp. 21-58, 2012.
  • 32. Urgancı Y. Hurma ve Keçiboynuzu Çekirdeği Kullanılarak Türk Kahvesi Üretimi ve Üretilen Kahvelerin Duyusal Özelliklerinin Belirlenmesi. Yüksek Lisans Tezi. İstanbul Gelişim Üniversitesi, Lisansüstü Eğitim Enstitüsü; 2022.
  • 33. Barutcigil Ç, Harorlı Ot, Seven N. Bazı geleneksel içeceklerin mikrohibrit kompozit rezinde meydana getirdiği renk değişikliklerinin incelenmesi. Atatürk Üniv Diş Hek Fak Derg. 2012;22(2):114-19.
  • 34. Atabay C, Tunçdemir MT. Comparison of color stability of laminate temporary restoration materials kept in traditional Turkish beverages. Yeditepe Dent J. 2019;15(2):166-70.
Toplam 34 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Protez
Bölüm Araştırma Makaleleri
Yazarlar

Elif Nur Köroğlu 0000-0001-7233-1077

Şükriye Ece Geduk 0000-0003-2569-8428

Yayımlanma Tarihi 31 Aralık 2024
Gönderilme Tarihi 1 Temmuz 2024
Kabul Tarihi 4 Eylül 2024
Yayımlandığı Sayı Yıl 2024 Cilt: 10 Sayı: 3

Kaynak Göster

APA Köroğlu, E. N., & Geduk, Ş. E. (2024). The Effect of Some Traditional Beverages on the Colour Stability of the Resin Nanoceramic Material. Journal of International Dental Sciences (Uluslararası Diş Hekimliği Bilimleri Dergisi), 10(3), 153-158. https://doi.org/10.21306/dishekimligi.1505687
AMA Köroğlu EN, Geduk ŞE. The Effect of Some Traditional Beverages on the Colour Stability of the Resin Nanoceramic Material. J Int Dent Sci. Aralık 2024;10(3):153-158. doi:10.21306/dishekimligi.1505687
Chicago Köroğlu, Elif Nur, ve Şükriye Ece Geduk. “The Effect of Some Traditional Beverages on the Colour Stability of the Resin Nanoceramic Material”. Journal of International Dental Sciences (Uluslararası Diş Hekimliği Bilimleri Dergisi) 10, sy. 3 (Aralık 2024): 153-58. https://doi.org/10.21306/dishekimligi.1505687.
EndNote Köroğlu EN, Geduk ŞE (01 Aralık 2024) The Effect of Some Traditional Beverages on the Colour Stability of the Resin Nanoceramic Material. Journal of International Dental Sciences (Uluslararası Diş Hekimliği Bilimleri Dergisi) 10 3 153–158.
IEEE E. N. Köroğlu ve Ş. E. Geduk, “The Effect of Some Traditional Beverages on the Colour Stability of the Resin Nanoceramic Material”, J Int Dent Sci, c. 10, sy. 3, ss. 153–158, 2024, doi: 10.21306/dishekimligi.1505687.
ISNAD Köroğlu, Elif Nur - Geduk, Şükriye Ece. “The Effect of Some Traditional Beverages on the Colour Stability of the Resin Nanoceramic Material”. Journal of International Dental Sciences (Uluslararası Diş Hekimliği Bilimleri Dergisi) 10/3 (Aralık 2024), 153-158. https://doi.org/10.21306/dishekimligi.1505687.
JAMA Köroğlu EN, Geduk ŞE. The Effect of Some Traditional Beverages on the Colour Stability of the Resin Nanoceramic Material. J Int Dent Sci. 2024;10:153–158.
MLA Köroğlu, Elif Nur ve Şükriye Ece Geduk. “The Effect of Some Traditional Beverages on the Colour Stability of the Resin Nanoceramic Material”. Journal of International Dental Sciences (Uluslararası Diş Hekimliği Bilimleri Dergisi), c. 10, sy. 3, 2024, ss. 153-8, doi:10.21306/dishekimligi.1505687.
Vancouver Köroğlu EN, Geduk ŞE. The Effect of Some Traditional Beverages on the Colour Stability of the Resin Nanoceramic Material. J Int Dent Sci. 2024;10(3):153-8.

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