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Color Stability of Alkasite Restorative Material: in vitro Studies

알카자이트 수복재의 색안정성 : 실험실적 연구

  • Jihye, Ahn (Department of Pediatric Dentistry, School of Dentistry, Chosun University) ;
  • Sangho, Lee (Department of Pediatric Dentistry, School of Dentistry, Chosun University) ;
  • Nanyoung, Lee (Department of Pediatric Dentistry, School of Dentistry, Chosun University) ;
  • Hyewon, Shin (Department of Pediatric Dentistry, School of Dentistry, Chosun University) ;
  • Myeongkwan, Jih (Department of Pediatric Dentistry, School of Dentistry, Chosun University)
  • 안지혜 (조선대학교 치과대학 소아치과학교실) ;
  • 이상호 (조선대학교 치과대학 소아치과학교실) ;
  • 이난영 (조선대학교 치과대학 소아치과학교실) ;
  • 신혜원 (조선대학교 치과대학 소아치과학교실) ;
  • 지명관 (조선대학교 치과대학 소아치과학교실)
  • Received : 2022.08.08
  • Accepted : 2022.09.23
  • Published : 2022.11.30

Abstract

The purpose of this study is was to compare the color stability of alkasite and other restorative materials commonly used in the field of pediatric dentistry and to study a color change in response to various beverages. Test specimens of glass ionomer, resin modified glass ionomer, alkasite restorative material, and composite resin were prepared, and the color stability was measured after thermocycling. Each specimen was also subdivided into 5 groups and submerged in PBS, coffee, green tea, coke, and orange juice to analyze the color change from the original CIE L*a*b* values after 7, 14, 21, and 28 days. Composite resin showed the best color stability after thermocycling, followed by alkasite restorative material, glass ionomer, and resin modified glass ionomer. Submerging in various beverages for 7 days resulted in color change in all test specimens, with alkasite restorative material showing less color change than glass ionomer but greater change than composite resin. Alkasite restorative material showed the greatest color change in coffee, followed by green tea and orange juice, but almost no change in coke and PBS even after 28 days of submersion.

이 연구의 목적은 알카자이트 수복재와 소아치과 영역에서 널리 사용되고 있는 수복재들의 색 안정성을 비교하고, 다양한 음료에서의 색상 변화를 비교하는 것이다. 글라스아이오노머, 레진강화형 글라스아이오노머, 알카자이트 수복재, 복합레진의 시편을 준비하였고, 열순환 후 색 안정성을 측정하였다. 침전 전과 7일, 14일, 21일, 28일 후 CIE L*a*b*값의 색상 변화를 분석하기 위해 각 수복재료의 시편을 5개의 군으로 나누어 각각 PBS, 커피, 녹차, 콜라, 오렌지주스 용액에 침전시켰다. 열순환 후 복합레진에서 가장 높은 색 안정성을 보였고, 알카자이트 수복재, 글라스아이오노머, 레진강화형 글라스아이오노머 순으로 높은 안정성을 보였다. 7일간 다양한 용액에 침전시킨 결과 모든 시편에서 색상 변화가 나타났으며, 알카자이트 수복재는 글라스아이오노머 계열보다 낮은 색상 변화를 보였고, 복합레진보다는 높은 색상 변화를 나타냈다. 알카자이트 수복재는 커피에서 가장 많은 색상 변화가 나타났으며 그 다음은 녹차, 오렌지주스 순이었으나, 콜라와 PBS 용액에서는 침전 28일 이후에도 색상 변화를 거의 보이지 않았다.

Keywords

Acknowledgement

This study was supported by research fund from Chosun University (2020).

References

  1. Tunc ES, Bayrak S, Guler AU, Tuloglu N : The effects of children's drinks on the color stability of various restorative materials. J Clin Pediatr Dent, 34:147-150, 2009.  https://doi.org/10.17796/jcpd.34.2.953q255621436788
  2. Majeti C, Ravi R, Kambhampati K, Borugadda R, Athkuri S, Kakani AK : Evaluation of the color stability of two different posterior tooth colored restorative materials. F1000Research, 9:1251-1260, 2020.  https://doi.org/10.12688/f1000research.26277.1
  3. Nasim I, Neelakantan P, Sujeer R, Subbarao CV : Color stability of microfilled, microhybrid and nanocomposite resins-an in vitro study. J Dent, 38(Suppl 2): E137-E142, 2010.  https://doi.org/10.1016/j.jdent.2010.05.020
  4. Villalta P, Lu H, Okte Z, Garcia-Godoy F, Powers JM : Effects of staining and bleaching on color change of dental composite resins. J Prosthet Dent, 95:137-142, 2006.  https://doi.org/10.1016/j.prosdent.2005.11.019
  5. Yazkan B, Celik EU, Recen D : Effects of aging on surface roughness and color stability of a novel alkasite in comparison with current direct restorative materials. Oper Dent, 46:E240-E250, 2021.  https://doi.org/10.2341/20-195-L
  6. Savas S, Colgecen O, Yasa B, Kucukyilmaz E : Color stability, roughness, and water sorption/solubility of glass ionomer-based restorative materials. Niger J Clin Pract, 22:824-832, 2019.  https://doi.org/10.4103/njcp.njcp_592_18
  7. Todd JC : Scientific documentation: Cention N. Ivoclar Vivadent Press, Schann, 2016. 
  8. Lee DL, Kim JS, Han MR, Shin JS : Fluoride release and recharge properties of several fluoride-containing restorative materials. J Korean Acad Pediatr Dent, 47:196-204, 2020.  https://doi.org/10.5933/JKAPD.2020.47.2.196
  9. Poggio C, Vialba L, Berardengo A, Federico R, Colombo M, Beltrami R, Scribante A : Color stability of new esthetic restroative materials: A spectrophotometic analysis. J Funct Biomater, 8:26, 2017.   https://doi.org/10.3390/jfb8030026
  10. Jung JE, Lee W, Son SA, Kwak SW, Kwon YH, Park JK : The color stability of resin composite after exposure to pH solutions and immerse into staining beverages. Korean J Dent Mater, 43:111-120, 2016.  https://doi.org/10.14815/kjdm.2016.43.2.111
  11. ten Cate JM, Duijsters PP : Alternating demineralization and remineralization of artificial enamel lesions. Caries Res, 16:201-210, 1982.  https://doi.org/10.1159/000260599
  12. Lee KH, Kim JS, Shin JS, Han MR : Comparison of microhardness and compressive strength of alkasite and conventional restorative materials. J Korean Acad Pediatr Dent, 47:320-326, 2020.  https://doi.org/10.5933/JKAPD.2020.47.3.320
  13. Barga SR, Vasconcelos BT, Vasconcelos BT, de Paula Macedo MR, Martins VR, Sobral MA : Reasons for placement and replacement of direct restorative materials in Brazil. Quintessence Int, 38:E189-E194, 2007. 
  14. Kang SK, Song JH : Color stability of Bulk-fill resin composites after immersion in different media. J Korean Acad Pediatr Dent, 46:353-361, 2019.  https://doi.org/10.5933/JKAPD.2019.46.4.353
  15. Barutcigi C, Yildiz M : Intrinsic and extrinsic discoloration of dimethacrylate and silorane based composites. J Dent, 40(Suppl 1):E57-E63, 2012.  https://doi.org/10.1016/j.jdent.2011.12.017
  16. Erdemir U, Yildiz E, Eren MM : Effects of sportsdrinks on colorstability of nanofilled and micro hybrid composites after long-term immersion. J Dent, 40(Suppl 2):E55-E63, 2012.  https://doi.org/10.1016/j.jdent.2012.06.002
  17. Bezgin T, Ozer L, Oz FT, Ozkan P : Effect of toothbrushing on color changes of esthetic restorative materials. J Esthet Restor Dent, 27(Suppl 2):S65-S73, 2015.  https://doi.org/10.1111/jerd.12136
  18. Schulze KA, Marshall SJ, Gansky SA, Marshall GW : Color stability and hardness in dental composites after accelerated aging. Dent Mater, 19:612-619, 2003.  https://doi.org/10.1016/S0109-5641(03)00003-4
  19. Fay RM, Servos T, Powers JM : Color of restorative materials after staining and bleaching. Oper Dent, 24:292- 296, 1999. 
  20. Horn DJ, Bulan-Brady J, Hicks ML : Sphere spectrophotometer versus human evaluation of tooth shade. J Endod, 24:786-790, 1998.  https://doi.org/10.1016/S0099-2399(98)80002-2
  21. Choi WS, Lee SH, Jih MK, Sung MA, Lee NY : Color comparison of maxillary primary anterior teeth and various composite resin using a spectrophotometer. J Korean Acad Pediatr Dent, 49:1-13, 2022.  https://doi.org/10.5933/JKAPD.2022.49.1.1
  22. Chu SJ, Trushkowsky RD, Paravina RD : Dental color matching instruments and systems. Review of clinical and research aspects. J Dent, 38(Suppl 2):E2-E16, 2010.  https://doi.org/10.1016/j.jdent.2010.07.001
  23. Bagheri R, Burrow MF, Tyas M : Influence of foodsimulating solutions and surface finish on susceptibility to staining of aesthetic restorative materials. J Dent, 33:389-398, 2005.  https://doi.org/10.1016/j.jdent.2004.10.018
  24. Yap AU, Sim CP, Loh WL, Teo JH : Human-eye versus computerized color matching. Oper Dent, 24:358-363, 1999. 
  25. Alkhadim YK, Hulbah MJ, Nassar HM : Color shift, color stability, and post-polishing surface roughness of esthetic resin composites. Materials (Basel), 13: 1376, 2020.  https://doi.org/10.3390/ma13061376
  26. Braem M, Lambrechts P, Van Doren V, Vanherle G : In vivo evaluation of four posterior composites: quantitative wear measurements and clinical behavior. Dent Mater, 2:106-113, 1986.  https://doi.org/10.1016/S0109-5641(86)80004-5
  27. Ernst CP, Canbek K, Euler T, Willershausen B : In vivo validation of the historical in vitro thermocycling temperature range for dental materials testing. Clin Oral Investig, 8:130-138, 2004. 
  28. Wendt SL, Mclnnes PM, Dickinson GL : The effect of thermocycling in microleakage analysis. Dent Mater, 8:181-184, 1992.  https://doi.org/10.1016/0109-5641(92)90079-R
  29. Gale MS, Darvell BW : Thermal cycling procedures for laboratory testing of dental restorations. J Dent, 27:88-99, 1999. 
  30. Yap AUJ, Wang X, Wu X, Chung SM : Comparative hardness and modulus of tooth-colored restoratives: A depth-sensing microindentation study. Biomaterials, 25:2179-2185, 2004.  https://doi.org/10.1016/j.biomaterials.2003.09.003
  31. Son YJ, Hyun HK, Kim YJ, Kim JW, Lee SH, Lim CC, Hahn SH, Jang KT : Color stability of new silorane-based composite resin: An in vitro spectrophotometric study. J Korean Acad Pediatr Dent, 37:73-81, 2010. 
  32. 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, 94: 118-124, 2005.  https://doi.org/10.1016/j.prosdent.2005.05.004
  33. Ertas E, Guler AU, Yucel AC, Koprulu H, Guler E : Color stability of resin composites after immersion in different drinks. Dent Mater J, 25:371-376, 2006.  https://doi.org/10.4012/dmj.25.371
  34. Ceci M, Rattalino D, Viola M, Beltrami R, Chiesa M, Colombo M, Poggio C : Resin infiltrant for non-cavitated caries lesions: evaluation of color stability. J Clin Exp Dent, 9:E231-E237, 2017. 
  35. Bhattacharya S, Purayil TP, Ginjupalli K, Kini S, Pai S : Effect of thermocycling on the colour stability of aesthetic restorative materials: An in-vitro spectrophotometric analysis. Pesqui Bras Odontopediatria Clin Intergr, 20:E5174, 2020.  https://doi.org/10.1590/pboci.2020.020
  36. Mazumdar P, Das A, Das UK : Comparative evaluation of microleakage of three different direct restorative materials (silver amalgam, glass ionomer cement, cention N), in class II restorations using stereomicroscope: An in vitro study. Indian J Dent Res, 30:277- 281, 2019.  https://doi.org/10.4103/ijdr.ijdr_481_17
  37. Altinvi P, Durkaya P : Effects of thermocycling and various drinks on the color stability of heat-polymerized acrylic resin. J Istanb Univ Fac Dent, 50:15-20, 2016.  https://doi.org/10.17096/jiufd.28587
  38. Furuse AY, Gordon K, Rodrigues FP, Silikas N, Watts DC : Colour-stability and gloss-retention of silorane and dimethacrylate composites with accelerated aging. J Dent, 36:945-952, 2008.  https://doi.org/10.1016/j.jdent.2008.08.001
  39. Cattani-Lorente MA, Dupuis V, Payan J, Moya F, Meyer JM : Effect of water on the physical properties of resin-modified glass ionomer cements. Dent Mater, 15:71-78, 1999.  https://doi.org/10.1016/S0109-5641(99)00016-0
  40. Small IC, Watson TF, Chadwick AV, Sidhu SK : Water sorption in resin-modified glass-ionomer cements: an in vitro comparison with other materials. Biomaterials, 19:545-550, 1998.  https://doi.org/10.1016/S0142-9612(97)00135-X
  41. Um CM, Ruyter IE : Staining of resin-based veneering materials with coffee and tea. Quintessence Int, 22: 377-386, 1991. 
  42. Rosentritt M, Esch J, Behr M, Leibrock A, Handel G : In vivo color stability of resin composite veneers and acrylic resin teeth in removal partial dentures. Quintessence Int, 29:517-522, 1998. 
  43. Dietschi D, Campanile G, Holz J, Meyer JM : Comparison of the color stability of ten new-eneration composites: An in vitro study. Dent Mater, 10:353-362, 1994.  https://doi.org/10.1016/0109-5641(94)90059-0
  44. de Luca Cunha CMB, Wambier LM, Dias GF, Reis A, Alves FBT, Chibinski ACR, Wambier DS : In vitro evaluation of the impact of erosive/abrasive challenge in glass ionomer cements. Biomed J Sci Tech Res, 1: 1263-1266, 2017. 
  45. Tekce N, Tuncer S, Demirci M, Serim ME, Baydemir C : The effect of different drinks on the color stability of different restorative materials after one month. Restor Dent Endod, 40:255-261, 2015.  https://doi.org/10.5395/rde.2015.40.4.255
  46. Iftikhar N, Devashish, Srivastava B, Gupta N, Ghambir N, Singh R : A comparative evaluation of Mechanical properties of four different restorative materials: An in vitro study. Int J Clin Pediatr Dent, 12:47-49, 2019.  https://doi.org/10.5005/jp-journals-10005-1592
  47. Lee YK, Powers JM : Discoloration of dental resin composites after immersion in a series of organic and chemical solutions. J Biomed Mater Res B Appl Biomater, 73:361-367, 2005. 
  48. Lu H, Roeder LB, Lei L, Powers JM : Effect of surface roughness on stain resistance of dental resin composites. J Esthet Restor Dent, 17:102-108, 2005.  https://doi.org/10.1111/j.1708-8240.2005.tb00094.x
  49. Patel SB, Gordan VV, Barrett AA, Shen C : The effect of surface finishing and storage solutions on the color stability of resin-based composites. J Am Dent Assoc, 135:587-594, 2004.  https://doi.org/10.14219/jada.archive.2004.0246
  50. Mishra A, Singh G, Singh SK, Agarwal M, Qureshi R, Khurana N : Comparative evaluation of mechanical properties of Cention N with conventionally used restorative materials-An in vitro study. Int J Prosthodont Restor Dent, 8:120-124, 2018. https://doi.org/10.5005/jp-journals-10019-1219