Review
BibTex RIS Cite

VİTAL DİŞ BEYAZLATMA TEKNİKLERİ VE GÜNCEL YAKLAŞIMLAR

Year 2022, Volume: 32 Issue: 3, 239 - 249, 14.07.2022
https://doi.org/10.17567/ataunidfd.956970

Abstract

Son yıllarda hastaların estetik görünümlerine yönelik kaygılarının artmasıyla birlikte beyazlatma tedavilerine olan talep de artmıştır. Hastalara daha güzel bir gülümseme sağlamak için yapılan tedaviler arasında kom- pozit ve porselen venerler, kronlar, kompozit rezin restorasyonlar, mekanik abrazyon ve beyazlatma uygula- maları yer alır. Tüm bu uygulamaların içerisinde beyazlatma tedavisi en konservatif olandır. Özellikle 1990’lı yılların başından günümüze, beyazlatma ajanlarının hızlı gelişimi sonucunda, estetik diş hekimliği uygula- malarında beyazlatma tedavilerinin uygulaması da yaygınlaşmıştır. Diş renklenmeleri dış kaynaklı (eksternal) veya iç kaynaklı (internal) olabilir. Ayrıca son yıllarda tanımlanmış olan ‘’lekenin içselleştirilmesi’’ kategorisi de renklenme tiplerine eklenmiştir. Beyazlatma tedavisinde dişlerde oluşmuş renklenmeleri ortadan kaldırmak amacıyla çeşitli konsantrasyonlarda hidrojen peroksit veya karbamid peroksit kullanılmaktadır. Bu ajanlar diş hekimi tarafından klinikte uygulanabilir ya da diş hekimi kontrolünde hastanın evde uyguladığı yöntemlerdir. Ayrıca diş hekimi denetimi olmadan hastanın kendisinin evde uyguladığı yöntemler (Over the counter-OTC) de bulunmaktadır. Her tedavinin olduğu gibi beyazlatma tedavilerinin de çeşitli yan etkileri olabilmektedir. Hassasiyet, beyazlatma tedavilerinden sonra en sık karşılaşılan komplikasyondur. Beyazlatma tedavilerinde kullanılan ajanların dişlerin fiziksel özellikleri üzerine olan etkileri ve restorasyonların mine ve dentine bağ- lanması üzerine olan etkileri de bulunmaktadır. Bu makalede vital beyazlatma tedavileri ve güncel yaklaşım- lar ele alınmıştır.
Anahtar kelimeler: Beyazlatma, karbamid peroksit, hidrojen peroksit, OTC, diş renklenmeleri

ABSTRACT
In recent years, the demand for bleaching treatments has increased as patients' concerns about their aes- thetic appearance have increased. Treatments to give patients a nicer smile include composite and porce- lain veners, crowns, composite resin restorations, mechanical abrasions and bleaching treatments. In all of these applications, bleaching treatment is the most conservative. Especially since the beginning of the 1990s, as a result of the rapid development of whitening agents, the application of whitening treatments in aesthetic dentistry applications has become widespread. Dental discoloration may be external or internal. In addition, the ‘internalization of the stain’ category defined in recent years has also been added to the coloration types. In bleaching treatment, various concentrations of hydrogen peroxide or carbamide per- oxide are used to eliminate discoloration of teeth. These agents can be applied at the clinic by the dentist or at home by the patient under the supervision of the dentist. In addition, there are methods (Over the counter-OTC) that the patient applies at home without the supervision of a dentist. As with any treatment, bleaching treatments can have various side effects. Sensitivity is the most common complication after bleaching treatments. The effects of the agents used in bleaching treatments on the physical properties of teeth and restorations on the adhesion of enamel and dentine are also. This article discusses vital bleaching treatments and current approaches.
Keywords: Bleaching, carbamide peroxide, hydrogen peroxide, OTC, tooth discoloration

References

  • 1. Frysh H, Bowles WH, Baker F, Rivera-Hidalgo F, Guillen G. Effect of pH on hydrogen peroxide bleaching agents. J Esthet Dent. 1995;7:130- 133. [Crossref]
  • 2. Oktay EK. Farklı vital beyazlatma sistemlerinin diş rengi üzerine etkileriinin klinik olarak karşılaştırılması. Doktora Tezi, Hacettepe Üniver- sitesi, Sağlık Bilimleri Enstitüsü, Ankara, 2006.
  • 3. Kwon SR. The evolution of tooth whitening. J Contemp Dent Pract.2013;14(4):i. [Crossref]
  • 4. Truman J. Bleaching of non-vital discoloured anterior teeth. Dent Ti- mes. 1864;1(1):69-72.
  • 5. Harlan A. The removal of stains from teeth caused by administration of medical agents and the bleaching of pulpless tooth. Am J Dent Sci. 1884;1884/1885(18):521. [Crossref]
  • 6. Abbot C. Bleaching discolored teeth by mean 30 percent perhydrol and electric light rays. J Allied Dent Society. 1918;13:259.
  • 7. Prinz H. Recent improvements in tooth bleaching. A clinical syllabus.Dental Cosmos. 1924;66:558.
  • 8. Pearson HH. Bleaching of the discolored pulpless tooth. J Am Dent Assoc. Jan 1958;56(1):64-68. [Crossref]
  • 9. Spasser H. A simple bleaching technique using sodium perborate. NY State Dent J. 1961;27:332-335. 10. Nutting E, Poe G. A new combination for bleaching teeth. J So CA Dent Assoc. 1963;31:289-291.
  • 11. Stewart GG. Bleaching discolored pulpless teeth. J Am Dent Assoc. 1965 Feb;70(2):325-328. [Crossref]
  • 12. Baumgartner JC, Reid DE, Pickett AB. Human pulpal reaction to the modified McInnes bleaching technique. J Endod. 1983;9(12):527-529. [Crossref]
  • 13. Haywood V. Nightguard vital bleaching, a history and product upda- te. Part I. Esthet Dent Update. 1991;2:63-66.
  • 14. Abou-Rass M. The elimination of tetracycline discoloration by intenti- onal endodontics and internal bleaching. J Endod. Mar 1982;8(3):101-106. [Crossref]
  • 15. Sulieman MA. An overview of tooth-bleaching techniques: chemistry, safety and efficacy. Periodontol. 2008;48(1):148-169. [Crossref]
  • 16. Croll TP. Enamel microabrasion: the tecnuque. Quintessence Int. Jun 1989;20(6):395-400.
  • 17. Haywood VB, Heymann HO. Nightguard vital bleaching. Quintessen- ce Int. 1989;20(3):173-176.
  • 18. Garber DA, Goldstein RE, Goldstein GE, Schwartz CG. Dentist moni- tored bleaching: a combined approach. Pract Periodontics Aesthet Dent. Mar 1991;3(2):22-26.
  • 19. Tessier J, Rodriguez PN, Lifshitz F, Friedman SM, Lanata EJ. The use of ozone to lighten teeth. An experimental study. Acta Odontol Lati- noam. 2010;23(2):84-89.
  • 20. Grundlingh AA, Grossman ES, Witcomb MJ. Tooth colour change with Ozicure Oxygen Activator: a comparative in vitro tooth bleac- hing study. SADJ. 2012;67(7):332-337.
  • 21. Nathoo SA. The chemistry and mechanism of extrinsic and intrinsic discoloration. J Am Dent Assoc. 1997;128(Suppl):6S-10S. [Crossref]
  • 22. Zantner C, Derdilopoulou F, Martus P, Kielbassa AM. Randomized cli- nical trial on the efficacy of 2 overthe-counter whitening systems. Quintessence Int. 2006; 37(9):695-706.
  • 23. Dayan D, Heifferman A, Gorski M, Begleiter A. Tooth discolora- tion-extrinsic and intrinsic factors. Quintessence Int Dent Dig. 1983;14(2):195-199.
  • 24. Addy A, Moran J, Newcombe R, Warren P. The comparative tea sta- ining potential of phenolic, chlorhexidine and ant-adhesive mouth- rinses. J Clin Periodontol. 1995;22(12):923– 928. [Crossref]
  • 25. Watts A, Addy M. Tooth discolouration and staining. A review of the literature. Br Dent J. 2001;190:309–316. [Crossref]
  • 26. Erten H, Erol S. Renklenme nedenleri ve tedavi planlaması. Dicle Diş Hek Der. 2013;14:153-160.
  • 27. Erten H, Dişlerin ağartılması. Endodonti. Mimtaş Yay; 2012, p.947-984.
  • 28. Özyurt A, Erten H. Staining preventive effect of topical fluoride appli- cation after vital tooth bleaching. Paper presented at: 151 ADA SCA- DA Orlando FL, 2010.
  • 29. Azer SS, Hague AL, Johnston WM. Effect of pH on tooth discolora- tion from food colorant in vitro. J Dent. 2010;38(Suppl 2):e106-109. [Crossref]
  • 30. Leonard RH Jr, Haywood VB, Eagle JC, et al. Nightguard vital bleac- hing of tetracycline-stained teeth: 54 months post treatment. J Est- het Dent. 1999;11(5):265-277. [Crossref]
  • 31. Haywood VB, Leonard RH, Dickinson GL. Efficacy of six months of ni- ghtguard vital bleaching of tetracycline-stained teeth. J Esthet Dent. 1997;9(1):13-29. [Crossref]
  • 32. McCabe PS, Dummer PM. Pulp canal obliteration: An endodontic diagnosis and treatment challenge. Int Endod J. 2012;45(2):177-197. [Crossref]
  • 33. Sulieman M. An overview of bleaching techniques: 2. Night guard vi- tal bleaching and non-vital bleaching. Dent Update. 2005;32(1):39- 40,42-44,46. [Crossref]
  • 34. Zantner C, Beheim-Schwarzbach N, Neumann K, Kielbassa AM. Sur- face microhardness of enamel after different home bleaching proce- dures. Dent Mater. 2007;23(2):243-250. [Crossref]
  • 35. Berger SB CV, Martin AA, Soares LE, Arruda MA, Brancalion ML, Gian- nini M. Effects of combined use light irradiation and 35 % hydrogen peroxide for dental bleaching on human enemal mineral content. Photomed Laser Surg. 2010;28(4):533. [Crossref] 36. Rotstein I, Dankner E, Goldman A, Heling I, Stabholz A, Zalkind M. Histochemical analysis of dental hard tissues following bleaching. J Endod. 1996;22(1):23-25. [Crossref]
  • 37. Demir G, Ömürlü H. Restoratif diş hekimliğinde ozon tedavileri. Curr Res Dent Sci. 2015;24(3):158-168. [Crossref]
  • 38. Goldstein RE. In-office bleaching: where we came from, where we are today. J Am Dent Assoc. 1997;128(Suppl):11S-15S. [Crossref]
  • 39. Jones AH, Diaz-Arnold AM, Vargas MA, Cobb DS. Colorimetric as- sessment of laser and home bleaching techniques. J Esthet Dent. 1999;11(2):87-94. [Crossref]
  • 40. Alaçam T, Alaçam A, Aydın M, et al. Endodonti. Mimtaş Yay.; 2012.
  • 41. Strobl A, Gutknecht N, Franzen R, Hilgers RD, Lampert F, Meister J. Laser-assisted in-office bleaching using a neodymium:yttrium-alumi- num-garnet laser: an in vivo study. Lasers Med Sci. 2010;25(4):503-509. [Crossref]
  • 42. Mangal T. Vital ve Devital Ağartma Yapılmış Diş Yüzeylerine Uygu- lanan Farklı Yüzey Tedavilerinin Tekrar Renklenmeye ve Çürük Yapıcı Mikroorganizmaların Tutunmasına Etkileri. Doktora Tezi, Gazi Üniver- sitesi, Sağlık Bilimleri Enstitüsü, Ankara, 2014.
  • 43. de Almeida ENM, Besegato JF, dos Santos DDL, de Souza Rastelli AN, Bagnato VS. Violet LED for non-vital tooth bleaching as a new appro- ach. Photodiagnosis and Photodynamic Therapy. Dec 2019;28:234-237. [Crossref]
  • 44. Tezel H, Ertas OS, Ozata F, Dalgar H, Korkut ZO. Effect of bleaching agents on calcium loss from the enamel surface. Quintessence Int. 2007;38(4): 339-347.
  • 45. de Silva Gottardi M, Brackett MG, Haywood VB. Number of in-office light-activated bleaching treatments needed to achieve patient sa- tisfaction. Quintessence Int. 2006;37(2):115-120.
  • 46. Heyman H. Additional conservative esthetic procedures. In: Roben- son TM, Heyman HO, Swift EJ, ed. Sturdevart’s, The Art and Science of Operative Dentistry, 4th ed. Elsevier; 2002:591-650.
  • 47. McCloskey RJ. A technique for removal of fluorosis stains. J Am Dent Assoc. 1984;109(1):63-64. [Crossref]
  • 48. Croll TP, Cavanaugh RR. Enamel color modification by controlled hydrochloric acid-pumice abrasion. I. technique and examples. Qu- intessence Int. 1986;17(2):81-87.
  • 49. Ardu S, Stavridakis M, Krejci I. A minimally invasive treatment of se- vere dental fluorosis. Quintessence Int. 2007;38(6):455-458.
  • 50. Wang Y, Sa Y, Liang S, Jiang T. Minimally invasive treatment for esthe- tic management of severe dental fluorosis: A case report. Oper Dent. 2013;38(4):358-362. [Crossref]
  • 51. DenBesten PK, Li W. Chronic fluoride toxicity: Dental fluorosis. Mo- nogr Oral Sci. 2011;22:81- 96. [Crossref]
  • 52. Croll TP, Segura A. Tooth color improvement for children and teens: Enamel microabrasion and dental bleaching. ASDC J Dent Child. 1996;63(1):17-22.
  • 53. Tirlet G, Chabouis HF, Attal JP. Infiltration, a new therapy for masking enamel white spots: A 19- month follow-up case series. Eur J Esthet Dent. 2013;8(2):180-90.
  • 54. Munoz MA, Arana-Gordillo LA, Gomes GM, et al. Alternative esthe- tic management of fluorosis and hypoplasia stains: Blending effect obtained with resin infiltration techniques. J Esthet Restor Dent. 2013;25(1):32-39. [Crossref]
  • 55. Auschill TM, Schmidt KE, Arweiler NB. Resin infiltration for aesthetic improvement of mild to moderate fluorosis: A six- month follow-up case report. Oral Health Prev Dent. 2015;13(4):317-322.
  • 56. Torres CR, Borges AB. Color masking of developmental enamel defe- cts: A case series. Oper Dent. 2015;40(1):25-33. [Crossref]
  • 57. Haywood VB, Heymann HO. Nightguard vital bleaching: how safe is it? Quintessence Int. 1991;22(7):515-523.
  • 58. Gallagher A, Maggio B, Bowman J, Borden L, Mason S, Felix H. Clinical study to compare two in-office (chairside) whitening systems. J Clin Dent. 2002;13(6):219-224.
  • 59. Joiner A. The bleaching of teeth: a review of the literature. J Dent.2006;34(7):412-419. [Crossref]
  • 60. Greenwall L. Bleaching Techniques in Restorative Dentistry. London: Martin Dunitz; 2005:132-163. 61. Leonard RH, Jr., Garland GE, Eagle JC, Caplan DJ. Safety issues when using a 16% carbamide peroxide whitening solution. J Esthet Restor Dent. 2002;14(6):358-367. [Crossref]
  • 62. Tam L. Clinical trial of three 10% carbamide peroxide bleaching pro- ducts. J Can Dent Assoc. 1999;65(4):201-205.
  • 63. Haywood VB. History, safety, and effectiveness of current bleaching techniques and applications of the nightguard vital bleaching tech- nique. Quintessence Int. 1992;23(7):471-488.
  • 64. Bevenius J, Lindskog S, Hultenby K. The micromorphology in vivo of the buccocervical region of premolar teeth in young adults. A rep- lica study by scanning electron microscopy. Acta Odontol Scand. 1994;52(6):323-334. [Crossref]
  • 65. Rotstein I, Mor C, Arwaz JR. Changes in surface levels of mercury, sil- ver, tin, and copper of dental amalgam treated with carbamide pe- roxide and hydrogen peroxide in vitro. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 1997;83(4):506-509. [Crossref]
  • 66. Haywood VB, Leech T, Heymann HO, Crumpler D, Bruggers K. Night- guard vital bleaching: effects on enamel surface texture and diffusi- on. Quintessence Int. 1990;21(10):801-804.
  • 67. Bitter NC. A scanning electron microscopy study of the effect of bleaching agents on enamel: a preliminary report. J Prosthet Dent. 1992;67(6):852-855. [Crossref]
  • 68. Haywood V, Heymann H. Nightguard vital bleaching: effects of var- ying pH solutions on enamel surface texture and colour change. Qu- intessence Int. 1991;22:775-782.
  • 69. Potocnik I, Kosec L, Gaspersic D. Effect of 10% carbamide peroxide bleaching gel on enamel microhardness, microstructure, and mine- ral content. J Endod. 2000;26(4):203-206. [Crossref]
  • 70. Basting RT, Rodrigues AL, Jr., Serra MC. The effects of seven carbami- de peroxide bleaching agents on enamel microhardness over time. J Am Dent Assoc. 2003;134(10):1335-1342. [Crossref]
  • 71. Attin T, Kocabiyik M, Buchalla W, Hannig C, Becker K. Susceptibility of enamel surfaces to demineralization after application of fluoridated carbamide peroxide gels. Caries Res. 2003;37:93-99. [Crossref]
  • 72. Hughes JA, West NX, Parker DM, van den Braak MH, Addy M. Effects of pH and concentration of citric, malic and lactic acids on enamel, in vitro. J Dent. 2000;28(2):147-152. [Crossref]
  • 73. Titley KC, Torneck CD, Smith DC, Chernecky R, Adibfar A. Scanning electron microscopy observations on the penetration and structure on the resin tags in bleached and unbleached bovine enamel. J Endo- dont. 1991;17(2):72–75. [Crossref]
  • 74. McGukin RS, Thurmond BA, Osovitz S. In vitro enamel shear bond strengths following vital bleaching. J Dent Res. 1991;70:377.
  • 75. Haywood VB. Ask the experts. Self-cured composites and bleaching.J Esthet Dent. 1999; 11(3):122–123. [Crossref]
  • 76. Cavalli V, Reis AF, Giannini M, Ambrosano GM. The effect of elapsed time following bleaching on enamel bond strength of resin composi- te. Oper Dent. 2001;26(6):597-602.
  • 77. Jefferson KL, Zena RB, Giammara B. The effect of carbamide peroxide on dental luting agents. J Dent Res. 1991;70:571.
  • 78. Rotstein I, Mor C, Arwaz JR. Changes in surface levels of mercury, sil- ver, tin, and copper of dental amalgam treated with carbamide pe- roxide and hydrogen peroxide in vitro. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 1997;83(4):506-509. [Crossref]
  • 79. Gurgan S, Bolay S, Alacam R. In vitro adherence of bacteria to blea- ched or unbleached enamel surfaces. J Oral Rehabil. 1997;24(8):624- 627. [Crossref]
  • 80. Zheng CY, Pan J, Wang ZH, Wang Y. Effects of hydrogen peroxidecon- taining bleaching on the growth of Streptococcus mutans biofilm on enamel disc surface. Beijing Da Xue Xue Bao. 2014;46(1):30-34.
  • 81. Hosoya N, Honda K, Iino F, Arai T. Changes in enamel surface rou- ghness and adhesion of Streptococcus mutans to enamel after vital bleaching. J Dent. 2003;31(8):543-548. [Crossref]
  • 82. Kossatz S, Martins G, Loguercio AD, Reis A. Tooth sensitivity and blea- ching effectviness associated with use of a calcium-containing in offi- ce bleaching gel. J Am Dent Assoc. 2012;143(12):e81-87. [Crossref]
  • 83. Loguercio AD, Servat F, Stanislawczuk R, et al. Effect of acidity of in-office bleaching gels on tooth sensitivity and whitening: a two-center double-blind randomized clinical trial. Clin Oral Inves- tig. 2017;21(9):2811-2818. [Crossref]
  • 84. Nagi SM, Hassan SN, Abd El-Alim SH, Elmissiry MM. Remine- ralization potential of grape seed extract hydrogels on bleac- hed enamel compared to fluoride gel: An in vitro study. J Clin Exp Dent. 2019;11(5):e401-e407. [Crossref]
  • 85. Soares DG, Marcomini K, Duque CCO, et al. Increased whitening effi- cacy and reduced cytotoxicity are achieved by the chemical activati- on of a highly concentrated hydrogen peroxide bleaching gel. J Appl Oral Sci. 2019;27:e20180453. [Crossref]
  • 86. Alhasyimi AA, Pudyani PS, Hafizi I. Effect of mangosteen peel ext- ract as an antioxidant agent on the shear bond strength of ort- hodontic brackets bonded to bleached teeth. Dental Press J Ort- hod. 2018;23(5):58-64. [Crossref]
  • 87. Silva BG, Gouveia THN, da Silva MAP, Ambrosano GMB, Aguiar FHB, Lima DANL. Evaluation of home bleaching gel modified by diffe- rent thickeners on the physical properties of enamel: An in situ study. Eur J Dent. 2018;12(4):523-527. [Crossref]
  • 88. Shahabi S, Assadian H, Mahmoudi Nahavandi A, Nokhbatolfog- hahaei H. Comparison of tooth color change after bleaching with conventional and different light-activated methods. J Lasers Med Sci. 2018;9(1):27-31. [Crossref]
  • 89. Kaewpinta A, Khongkhunthian S, Chaijareenont P, Okonogi S. Tooth whitening efficacy of pigmented rice gels containing carbamide pe- roxide. Drug Discov Ther. 2018;12(3):126-132. [Crossref]
  • 90. Cuppini M, Leitune VCB, Souza M, Alves AK, Samuel SMW, Colla- res FM. In vitro evaluation of visible light-activated titanium di- oxide photocatalysis for in-office dental bleaching. Dent Mater J. 2019;38(1):68-74. [Crossref]
  • 91. Devji T. Inconclusive evidence about the comparative effectiveness of a low concentration hydrogen peroxide bleaching agent catalyzed by titanium dioxide nanoparticles with a high concentration peroxi- de control. J Am Dent Assoc. 2017;148(11):e184. [Crossref]
  • 92. Okada M, Otsuki M, Tagami J. Effect of nonthermal atmospheric dis- charge on stain removal of tooth. Dent Mater J. 2019;38(3):396-402. [Crossref]
  • 93. Hashash H. Değişik Remineralize Edici Maddeler İçeren Ağartma Ajanlarının Sığır Diş Mine Yüzey Özelliklerine Etkilerinin Değerlendi- rilmesi. Doktora Tezi, Gazi Üniversitesi, Sağlık Bilimleri Enstitüsü, An- kara, 2018.
  • 94. Jung YS, Jo HY, Ahn JH, et al. In vivo and in vitro assessment of the ble- aching effectiveness of a brush-off patch containing 3.0% hydrogen peroxide. Clin Oral Investig. 2019;23(6):2667-2673. [Crossref]
  • 95. Kim YM, Ha AN, Kim JW, Kim SJ. Double-blind randomized study to evaluate the safety and efficacy of over-the-counter tooth-w- hitening agents containing 2.9% hydrogen peroxide. Oper Dent. 2018;43(3):272-281. [Crossref]
  • 96. Takesh T, Sargsyan A, Lee M, Anbarani A, Ho J, Wilder-Smith P. Evaluating the whitening and microstructural effects of a novel whitening strip on porcelain and composite dental materials. Dentistry (Sunn- yvale). Aug 2017;7(8). [Crossref]
  • 97. Brambert P, Qian F, Kwon SR. Erosion potential of tooth whitening regimens as evaluated with polarized light microscopy. J Contemp Dent Pract. 2015;16(11):921-925. [Crossref]
  • 98. Altınışık H, Tüzel S, Erten H. Diş hekimi kontrolünde olmayan beyaz- latma ürünlerinin (OTC) nanohibrit kompozitin renk ve yüzey pürüz- lülüğü üzerine etkilerinin değerlendirilmesi. Gazi Üniversitesi Diş Hekimliği Fakültesi 1. Genç Akademisyenler Kongresi SS-044 numaralı sözlü sunum.
  • 99. Martini EC, Parreiras SO, Szesz AL, Coppla FM, Loguercio AD , Ales- sandra Reis. Bleaching-induced tooth sensitivity with application of a desensitizing gel before and after in-office bleaching: a triple-blind randomized clinical trial. Clin Oral Investig. 2020;24(1):385-394. [Crossref]
  • 100. Machado AC, Sheila RM Braga, Ferreira D, Jacintho FF, Scaramuc- ci T, Sobral MAP. Bleaching of severely darkened nonvital too- th case report-48 months clinical control. J Esthet Restor Dent. 2021;33(2):314-322. [Crossref] 101. Chen YH, Yang S, Hong DW, Attin T, Yu H. Short-term effects of sta- in-causing beverages on tooth bleaching: A randomized controlled clinical trial. J Dent. 2020;95:103318. [Crossref]
  • 102. Costa R, Moraes S, Lemos C, SoutoMaior JR, Vasconcelos Bc do E, Pellizzer E P. Effect of analgesic drugs on tooth sensitivity induced by In-office dental bleaching: A systematic review and meta-analysis. Oper Dent. 2020;45(2):E66-E76. [Crossref]
  • 103. de Oliveira Duque CC, Soares DG, Briso A ,et al. Influence of tooth pigmentation on H2O2 diffusion and its cytotoxicity after in-office tooth bleaching. Oper Dent. 2020;45(6):632-642. [Crossref] 104. Levrini L, Paracchini L, Bakaj R, Diaconu A, Cortese S. Dental bleac- hing during orthodontic treatment with aligners. Int J Esthet Dent. 2020;15(1):44-54.
  • 105. Goettems ML, Dos Santos Fernandez M, Donassollo TA, Donassollo SH, Demarco FF. Impact of tooth bleaching on oral health-related quality of life in adults: A triple-blind randomised clinical trial. J Dent. 2021;105:103564. [Crossref]
  • 106. Daltro TWS, de Almeida SAG, Marlon Ferreira Dias MF, Lins-Filho PC, da Silva CHV, Guimarães RP. The influence of violet LED light on tooth bleaching protocols: In vitro study of bleaching effectiveness. Photodiagnosis Photodyn Ther. 2020;32:102052. [Crossref]

Vital diş beyazlatma teknikleri ve güncel yaklaşımlar

Year 2022, Volume: 32 Issue: 3, 239 - 249, 14.07.2022
https://doi.org/10.17567/ataunidfd.956970

Abstract

ÖZ
Son yıllarda hastaların estetik görünümlerine yönelik kaygılarının artmasıyla birlikte beyazlatma tedavilerine olan talep de artmıştır. Hastalara daha güzel bir gülümseme sağlamak için yapılan tedaviler arasında kompozit ve porselen venerler, kronlar, kompozit rezin restorasyonlar, mekanik abrazyon ve beyazlatma uygulamaları yer alır. Tüm bu uygulamaların içerisinde beyazlatma tedavisi en konservatif olandır. Özellikle 1990’lı yılların başından günümüze, beyazlatma ajanlarının hızlı gelişimi sonucunda, estetik diş hekimliği uygulamalarında beyazlatma tedavilerinin uygulaması da yaygınlaşmıştır. Diş renklenmeleri dış kaynaklı (eksternal) veya iç kaynaklı (internal) olabilir. Ayrıca son yıllarda tanımlanmış olan ‘’lekenin içselleştirilmesi’’ kategorisi de renklenme tiplerine eklenmiştir. Beyazlatma tedavisinde dişlerde oluşmuş renklenmeleri ortadan kaldırmak amacıyla çeşitli konsantrasyonlarda hidrojen peroksit veya karbamid peroksit kullanılmaktadır. Bu ajanlar diş hekimi tarafından klinikte uygulanabilir ya da diş hekimi kontrolünde hastanın evde uyguladığı yöntemlerdir. Ayrıca diş hekimi denetimi olmadan hastanın kendisinin evde uyguladığı yöntemler (Over the counter-OTC) de bulunmaktadır. Her tedavinin olduğu gibi beyazlatma tedavilerinin de çeşitli yan etkileri olabilmektedir. Hassasiyet, beyazlatma tedavilerinden sonra en sık karşılaşılan komplikasyondur. Beyazlatma tedavilerinde kullanılan ajanların dişlerin fiziksel özellikleri üzerine olan etkileri ve restorasyonların mine ve dentine bağlanması üzerine olan etkileri de bulunmaktadır. Bu makalede vital beyazlatma tedavileri ve güncel yaklaşımlar ele alınmıştır.
Anahtar kelimeler: Beyazlatma, karbamid peroksit, hidrojen peroksit, OTC, diş renklenmeleri

ABSTRACT
In recent years, the demand for bleaching treatments has increased as patients' concerns about their aes- thetic appearance have increased. Treatments to give patients a nicer smile include composite and porce- lain veners, crowns, composite resin restorations, mechanical abrasions and bleaching treatments. In all of these applications, bleaching treatment is the most conservative. Especially since the beginning of the 1990s, as a result of the rapid development of whitening agents, the application of whitening treatments in aesthetic dentistry applications has become widespread. Dental discoloration may be external or internal. In addition, the ‘internalization of the stain’ category defined in recent years has also been added to the coloration types. In bleaching treatment, various concentrations of hydrogen peroxide or carbamide per- oxide are used to eliminate discoloration of teeth. These agents can be applied at the clinic by the dentist or at home by the patient under the supervision of the dentist. In addition, there are methods (Over the counter-OTC) that the patient applies at home without the supervision of a dentist. As with any treatment, bleaching treatments can have various side effects. Sensitivity is the most common complication after bleaching treatments. The effects of the agents used in bleaching treatments on the physical properties of teeth and restorations on the adhesion of enamel and dentine are also. This article discusses vital bleaching treatments and current approaches.
Keywords: Bleaching, carbamide peroxide, hydrogen peroxide, OTC, tooth discoloration

References

  • 1. Frysh H, Bowles WH, Baker F, Rivera-Hidalgo F, Guillen G. Effect of pH on hydrogen peroxide bleaching agents. J Esthet Dent. 1995;7:130- 133. [Crossref]
  • 2. Oktay EK. Farklı vital beyazlatma sistemlerinin diş rengi üzerine etkileriinin klinik olarak karşılaştırılması. Doktora Tezi, Hacettepe Üniver- sitesi, Sağlık Bilimleri Enstitüsü, Ankara, 2006.
  • 3. Kwon SR. The evolution of tooth whitening. J Contemp Dent Pract.2013;14(4):i. [Crossref]
  • 4. Truman J. Bleaching of non-vital discoloured anterior teeth. Dent Ti- mes. 1864;1(1):69-72.
  • 5. Harlan A. The removal of stains from teeth caused by administration of medical agents and the bleaching of pulpless tooth. Am J Dent Sci. 1884;1884/1885(18):521. [Crossref]
  • 6. Abbot C. Bleaching discolored teeth by mean 30 percent perhydrol and electric light rays. J Allied Dent Society. 1918;13:259.
  • 7. Prinz H. Recent improvements in tooth bleaching. A clinical syllabus.Dental Cosmos. 1924;66:558.
  • 8. Pearson HH. Bleaching of the discolored pulpless tooth. J Am Dent Assoc. Jan 1958;56(1):64-68. [Crossref]
  • 9. Spasser H. A simple bleaching technique using sodium perborate. NY State Dent J. 1961;27:332-335. 10. Nutting E, Poe G. A new combination for bleaching teeth. J So CA Dent Assoc. 1963;31:289-291.
  • 11. Stewart GG. Bleaching discolored pulpless teeth. J Am Dent Assoc. 1965 Feb;70(2):325-328. [Crossref]
  • 12. Baumgartner JC, Reid DE, Pickett AB. Human pulpal reaction to the modified McInnes bleaching technique. J Endod. 1983;9(12):527-529. [Crossref]
  • 13. Haywood V. Nightguard vital bleaching, a history and product upda- te. Part I. Esthet Dent Update. 1991;2:63-66.
  • 14. Abou-Rass M. The elimination of tetracycline discoloration by intenti- onal endodontics and internal bleaching. J Endod. Mar 1982;8(3):101-106. [Crossref]
  • 15. Sulieman MA. An overview of tooth-bleaching techniques: chemistry, safety and efficacy. Periodontol. 2008;48(1):148-169. [Crossref]
  • 16. Croll TP. Enamel microabrasion: the tecnuque. Quintessence Int. Jun 1989;20(6):395-400.
  • 17. Haywood VB, Heymann HO. Nightguard vital bleaching. Quintessen- ce Int. 1989;20(3):173-176.
  • 18. Garber DA, Goldstein RE, Goldstein GE, Schwartz CG. Dentist moni- tored bleaching: a combined approach. Pract Periodontics Aesthet Dent. Mar 1991;3(2):22-26.
  • 19. Tessier J, Rodriguez PN, Lifshitz F, Friedman SM, Lanata EJ. The use of ozone to lighten teeth. An experimental study. Acta Odontol Lati- noam. 2010;23(2):84-89.
  • 20. Grundlingh AA, Grossman ES, Witcomb MJ. Tooth colour change with Ozicure Oxygen Activator: a comparative in vitro tooth bleac- hing study. SADJ. 2012;67(7):332-337.
  • 21. Nathoo SA. The chemistry and mechanism of extrinsic and intrinsic discoloration. J Am Dent Assoc. 1997;128(Suppl):6S-10S. [Crossref]
  • 22. Zantner C, Derdilopoulou F, Martus P, Kielbassa AM. Randomized cli- nical trial on the efficacy of 2 overthe-counter whitening systems. Quintessence Int. 2006; 37(9):695-706.
  • 23. Dayan D, Heifferman A, Gorski M, Begleiter A. Tooth discolora- tion-extrinsic and intrinsic factors. Quintessence Int Dent Dig. 1983;14(2):195-199.
  • 24. Addy A, Moran J, Newcombe R, Warren P. The comparative tea sta- ining potential of phenolic, chlorhexidine and ant-adhesive mouth- rinses. J Clin Periodontol. 1995;22(12):923– 928. [Crossref]
  • 25. Watts A, Addy M. Tooth discolouration and staining. A review of the literature. Br Dent J. 2001;190:309–316. [Crossref]
  • 26. Erten H, Erol S. Renklenme nedenleri ve tedavi planlaması. Dicle Diş Hek Der. 2013;14:153-160.
  • 27. Erten H, Dişlerin ağartılması. Endodonti. Mimtaş Yay; 2012, p.947-984.
  • 28. Özyurt A, Erten H. Staining preventive effect of topical fluoride appli- cation after vital tooth bleaching. Paper presented at: 151 ADA SCA- DA Orlando FL, 2010.
  • 29. Azer SS, Hague AL, Johnston WM. Effect of pH on tooth discolora- tion from food colorant in vitro. J Dent. 2010;38(Suppl 2):e106-109. [Crossref]
  • 30. Leonard RH Jr, Haywood VB, Eagle JC, et al. Nightguard vital bleac- hing of tetracycline-stained teeth: 54 months post treatment. J Est- het Dent. 1999;11(5):265-277. [Crossref]
  • 31. Haywood VB, Leonard RH, Dickinson GL. Efficacy of six months of ni- ghtguard vital bleaching of tetracycline-stained teeth. J Esthet Dent. 1997;9(1):13-29. [Crossref]
  • 32. McCabe PS, Dummer PM. Pulp canal obliteration: An endodontic diagnosis and treatment challenge. Int Endod J. 2012;45(2):177-197. [Crossref]
  • 33. Sulieman M. An overview of bleaching techniques: 2. Night guard vi- tal bleaching and non-vital bleaching. Dent Update. 2005;32(1):39- 40,42-44,46. [Crossref]
  • 34. Zantner C, Beheim-Schwarzbach N, Neumann K, Kielbassa AM. Sur- face microhardness of enamel after different home bleaching proce- dures. Dent Mater. 2007;23(2):243-250. [Crossref]
  • 35. Berger SB CV, Martin AA, Soares LE, Arruda MA, Brancalion ML, Gian- nini M. Effects of combined use light irradiation and 35 % hydrogen peroxide for dental bleaching on human enemal mineral content. Photomed Laser Surg. 2010;28(4):533. [Crossref] 36. Rotstein I, Dankner E, Goldman A, Heling I, Stabholz A, Zalkind M. Histochemical analysis of dental hard tissues following bleaching. J Endod. 1996;22(1):23-25. [Crossref]
  • 37. Demir G, Ömürlü H. Restoratif diş hekimliğinde ozon tedavileri. Curr Res Dent Sci. 2015;24(3):158-168. [Crossref]
  • 38. Goldstein RE. In-office bleaching: where we came from, where we are today. J Am Dent Assoc. 1997;128(Suppl):11S-15S. [Crossref]
  • 39. Jones AH, Diaz-Arnold AM, Vargas MA, Cobb DS. Colorimetric as- sessment of laser and home bleaching techniques. J Esthet Dent. 1999;11(2):87-94. [Crossref]
  • 40. Alaçam T, Alaçam A, Aydın M, et al. Endodonti. Mimtaş Yay.; 2012.
  • 41. Strobl A, Gutknecht N, Franzen R, Hilgers RD, Lampert F, Meister J. Laser-assisted in-office bleaching using a neodymium:yttrium-alumi- num-garnet laser: an in vivo study. Lasers Med Sci. 2010;25(4):503-509. [Crossref]
  • 42. Mangal T. Vital ve Devital Ağartma Yapılmış Diş Yüzeylerine Uygu- lanan Farklı Yüzey Tedavilerinin Tekrar Renklenmeye ve Çürük Yapıcı Mikroorganizmaların Tutunmasına Etkileri. Doktora Tezi, Gazi Üniver- sitesi, Sağlık Bilimleri Enstitüsü, Ankara, 2014.
  • 43. de Almeida ENM, Besegato JF, dos Santos DDL, de Souza Rastelli AN, Bagnato VS. Violet LED for non-vital tooth bleaching as a new appro- ach. Photodiagnosis and Photodynamic Therapy. Dec 2019;28:234-237. [Crossref]
  • 44. Tezel H, Ertas OS, Ozata F, Dalgar H, Korkut ZO. Effect of bleaching agents on calcium loss from the enamel surface. Quintessence Int. 2007;38(4): 339-347.
  • 45. de Silva Gottardi M, Brackett MG, Haywood VB. Number of in-office light-activated bleaching treatments needed to achieve patient sa- tisfaction. Quintessence Int. 2006;37(2):115-120.
  • 46. Heyman H. Additional conservative esthetic procedures. In: Roben- son TM, Heyman HO, Swift EJ, ed. Sturdevart’s, The Art and Science of Operative Dentistry, 4th ed. Elsevier; 2002:591-650.
  • 47. McCloskey RJ. A technique for removal of fluorosis stains. J Am Dent Assoc. 1984;109(1):63-64. [Crossref]
  • 48. Croll TP, Cavanaugh RR. Enamel color modification by controlled hydrochloric acid-pumice abrasion. I. technique and examples. Qu- intessence Int. 1986;17(2):81-87.
  • 49. Ardu S, Stavridakis M, Krejci I. A minimally invasive treatment of se- vere dental fluorosis. Quintessence Int. 2007;38(6):455-458.
  • 50. Wang Y, Sa Y, Liang S, Jiang T. Minimally invasive treatment for esthe- tic management of severe dental fluorosis: A case report. Oper Dent. 2013;38(4):358-362. [Crossref]
  • 51. DenBesten PK, Li W. Chronic fluoride toxicity: Dental fluorosis. Mo- nogr Oral Sci. 2011;22:81- 96. [Crossref]
  • 52. Croll TP, Segura A. Tooth color improvement for children and teens: Enamel microabrasion and dental bleaching. ASDC J Dent Child. 1996;63(1):17-22.
  • 53. Tirlet G, Chabouis HF, Attal JP. Infiltration, a new therapy for masking enamel white spots: A 19- month follow-up case series. Eur J Esthet Dent. 2013;8(2):180-90.
  • 54. Munoz MA, Arana-Gordillo LA, Gomes GM, et al. Alternative esthe- tic management of fluorosis and hypoplasia stains: Blending effect obtained with resin infiltration techniques. J Esthet Restor Dent. 2013;25(1):32-39. [Crossref]
  • 55. Auschill TM, Schmidt KE, Arweiler NB. Resin infiltration for aesthetic improvement of mild to moderate fluorosis: A six- month follow-up case report. Oral Health Prev Dent. 2015;13(4):317-322.
  • 56. Torres CR, Borges AB. Color masking of developmental enamel defe- cts: A case series. Oper Dent. 2015;40(1):25-33. [Crossref]
  • 57. Haywood VB, Heymann HO. Nightguard vital bleaching: how safe is it? Quintessence Int. 1991;22(7):515-523.
  • 58. Gallagher A, Maggio B, Bowman J, Borden L, Mason S, Felix H. Clinical study to compare two in-office (chairside) whitening systems. J Clin Dent. 2002;13(6):219-224.
  • 59. Joiner A. The bleaching of teeth: a review of the literature. J Dent.2006;34(7):412-419. [Crossref]
  • 60. Greenwall L. Bleaching Techniques in Restorative Dentistry. London: Martin Dunitz; 2005:132-163. 61. Leonard RH, Jr., Garland GE, Eagle JC, Caplan DJ. Safety issues when using a 16% carbamide peroxide whitening solution. J Esthet Restor Dent. 2002;14(6):358-367. [Crossref]
  • 62. Tam L. Clinical trial of three 10% carbamide peroxide bleaching pro- ducts. J Can Dent Assoc. 1999;65(4):201-205.
  • 63. Haywood VB. History, safety, and effectiveness of current bleaching techniques and applications of the nightguard vital bleaching tech- nique. Quintessence Int. 1992;23(7):471-488.
  • 64. Bevenius J, Lindskog S, Hultenby K. The micromorphology in vivo of the buccocervical region of premolar teeth in young adults. A rep- lica study by scanning electron microscopy. Acta Odontol Scand. 1994;52(6):323-334. [Crossref]
  • 65. Rotstein I, Mor C, Arwaz JR. Changes in surface levels of mercury, sil- ver, tin, and copper of dental amalgam treated with carbamide pe- roxide and hydrogen peroxide in vitro. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 1997;83(4):506-509. [Crossref]
  • 66. Haywood VB, Leech T, Heymann HO, Crumpler D, Bruggers K. Night- guard vital bleaching: effects on enamel surface texture and diffusi- on. Quintessence Int. 1990;21(10):801-804.
  • 67. Bitter NC. A scanning electron microscopy study of the effect of bleaching agents on enamel: a preliminary report. J Prosthet Dent. 1992;67(6):852-855. [Crossref]
  • 68. Haywood V, Heymann H. Nightguard vital bleaching: effects of var- ying pH solutions on enamel surface texture and colour change. Qu- intessence Int. 1991;22:775-782.
  • 69. Potocnik I, Kosec L, Gaspersic D. Effect of 10% carbamide peroxide bleaching gel on enamel microhardness, microstructure, and mine- ral content. J Endod. 2000;26(4):203-206. [Crossref]
  • 70. Basting RT, Rodrigues AL, Jr., Serra MC. The effects of seven carbami- de peroxide bleaching agents on enamel microhardness over time. J Am Dent Assoc. 2003;134(10):1335-1342. [Crossref]
  • 71. Attin T, Kocabiyik M, Buchalla W, Hannig C, Becker K. Susceptibility of enamel surfaces to demineralization after application of fluoridated carbamide peroxide gels. Caries Res. 2003;37:93-99. [Crossref]
  • 72. Hughes JA, West NX, Parker DM, van den Braak MH, Addy M. Effects of pH and concentration of citric, malic and lactic acids on enamel, in vitro. J Dent. 2000;28(2):147-152. [Crossref]
  • 73. Titley KC, Torneck CD, Smith DC, Chernecky R, Adibfar A. Scanning electron microscopy observations on the penetration and structure on the resin tags in bleached and unbleached bovine enamel. J Endo- dont. 1991;17(2):72–75. [Crossref]
  • 74. McGukin RS, Thurmond BA, Osovitz S. In vitro enamel shear bond strengths following vital bleaching. J Dent Res. 1991;70:377.
  • 75. Haywood VB. Ask the experts. Self-cured composites and bleaching.J Esthet Dent. 1999; 11(3):122–123. [Crossref]
  • 76. Cavalli V, Reis AF, Giannini M, Ambrosano GM. The effect of elapsed time following bleaching on enamel bond strength of resin composi- te. Oper Dent. 2001;26(6):597-602.
  • 77. Jefferson KL, Zena RB, Giammara B. The effect of carbamide peroxide on dental luting agents. J Dent Res. 1991;70:571.
  • 78. Rotstein I, Mor C, Arwaz JR. Changes in surface levels of mercury, sil- ver, tin, and copper of dental amalgam treated with carbamide pe- roxide and hydrogen peroxide in vitro. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 1997;83(4):506-509. [Crossref]
  • 79. Gurgan S, Bolay S, Alacam R. In vitro adherence of bacteria to blea- ched or unbleached enamel surfaces. J Oral Rehabil. 1997;24(8):624- 627. [Crossref]
  • 80. Zheng CY, Pan J, Wang ZH, Wang Y. Effects of hydrogen peroxidecon- taining bleaching on the growth of Streptococcus mutans biofilm on enamel disc surface. Beijing Da Xue Xue Bao. 2014;46(1):30-34.
  • 81. Hosoya N, Honda K, Iino F, Arai T. Changes in enamel surface rou- ghness and adhesion of Streptococcus mutans to enamel after vital bleaching. J Dent. 2003;31(8):543-548. [Crossref]
  • 82. Kossatz S, Martins G, Loguercio AD, Reis A. Tooth sensitivity and blea- ching effectviness associated with use of a calcium-containing in offi- ce bleaching gel. J Am Dent Assoc. 2012;143(12):e81-87. [Crossref]
  • 83. Loguercio AD, Servat F, Stanislawczuk R, et al. Effect of acidity of in-office bleaching gels on tooth sensitivity and whitening: a two-center double-blind randomized clinical trial. Clin Oral Inves- tig. 2017;21(9):2811-2818. [Crossref]
  • 84. Nagi SM, Hassan SN, Abd El-Alim SH, Elmissiry MM. Remine- ralization potential of grape seed extract hydrogels on bleac- hed enamel compared to fluoride gel: An in vitro study. J Clin Exp Dent. 2019;11(5):e401-e407. [Crossref]
  • 85. Soares DG, Marcomini K, Duque CCO, et al. Increased whitening effi- cacy and reduced cytotoxicity are achieved by the chemical activati- on of a highly concentrated hydrogen peroxide bleaching gel. J Appl Oral Sci. 2019;27:e20180453. [Crossref]
  • 86. Alhasyimi AA, Pudyani PS, Hafizi I. Effect of mangosteen peel ext- ract as an antioxidant agent on the shear bond strength of ort- hodontic brackets bonded to bleached teeth. Dental Press J Ort- hod. 2018;23(5):58-64. [Crossref]
  • 87. Silva BG, Gouveia THN, da Silva MAP, Ambrosano GMB, Aguiar FHB, Lima DANL. Evaluation of home bleaching gel modified by diffe- rent thickeners on the physical properties of enamel: An in situ study. Eur J Dent. 2018;12(4):523-527. [Crossref]
  • 88. Shahabi S, Assadian H, Mahmoudi Nahavandi A, Nokhbatolfog- hahaei H. Comparison of tooth color change after bleaching with conventional and different light-activated methods. J Lasers Med Sci. 2018;9(1):27-31. [Crossref]
  • 89. Kaewpinta A, Khongkhunthian S, Chaijareenont P, Okonogi S. Tooth whitening efficacy of pigmented rice gels containing carbamide pe- roxide. Drug Discov Ther. 2018;12(3):126-132. [Crossref]
  • 90. Cuppini M, Leitune VCB, Souza M, Alves AK, Samuel SMW, Colla- res FM. In vitro evaluation of visible light-activated titanium di- oxide photocatalysis for in-office dental bleaching. Dent Mater J. 2019;38(1):68-74. [Crossref]
  • 91. Devji T. Inconclusive evidence about the comparative effectiveness of a low concentration hydrogen peroxide bleaching agent catalyzed by titanium dioxide nanoparticles with a high concentration peroxi- de control. J Am Dent Assoc. 2017;148(11):e184. [Crossref]
  • 92. Okada M, Otsuki M, Tagami J. Effect of nonthermal atmospheric dis- charge on stain removal of tooth. Dent Mater J. 2019;38(3):396-402. [Crossref]
  • 93. Hashash H. Değişik Remineralize Edici Maddeler İçeren Ağartma Ajanlarının Sığır Diş Mine Yüzey Özelliklerine Etkilerinin Değerlendi- rilmesi. Doktora Tezi, Gazi Üniversitesi, Sağlık Bilimleri Enstitüsü, An- kara, 2018.
  • 94. Jung YS, Jo HY, Ahn JH, et al. In vivo and in vitro assessment of the ble- aching effectiveness of a brush-off patch containing 3.0% hydrogen peroxide. Clin Oral Investig. 2019;23(6):2667-2673. [Crossref]
  • 95. Kim YM, Ha AN, Kim JW, Kim SJ. Double-blind randomized study to evaluate the safety and efficacy of over-the-counter tooth-w- hitening agents containing 2.9% hydrogen peroxide. Oper Dent. 2018;43(3):272-281. [Crossref]
  • 96. Takesh T, Sargsyan A, Lee M, Anbarani A, Ho J, Wilder-Smith P. Evaluating the whitening and microstructural effects of a novel whitening strip on porcelain and composite dental materials. Dentistry (Sunn- yvale). Aug 2017;7(8). [Crossref]
  • 97. Brambert P, Qian F, Kwon SR. Erosion potential of tooth whitening regimens as evaluated with polarized light microscopy. J Contemp Dent Pract. 2015;16(11):921-925. [Crossref]
  • 98. Altınışık H, Tüzel S, Erten H. Diş hekimi kontrolünde olmayan beyaz- latma ürünlerinin (OTC) nanohibrit kompozitin renk ve yüzey pürüz- lülüğü üzerine etkilerinin değerlendirilmesi. Gazi Üniversitesi Diş Hekimliği Fakültesi 1. Genç Akademisyenler Kongresi SS-044 numaralı sözlü sunum.
  • 99. Martini EC, Parreiras SO, Szesz AL, Coppla FM, Loguercio AD , Ales- sandra Reis. Bleaching-induced tooth sensitivity with application of a desensitizing gel before and after in-office bleaching: a triple-blind randomized clinical trial. Clin Oral Investig. 2020;24(1):385-394. [Crossref]
  • 100. Machado AC, Sheila RM Braga, Ferreira D, Jacintho FF, Scaramuc- ci T, Sobral MAP. Bleaching of severely darkened nonvital too- th case report-48 months clinical control. J Esthet Restor Dent. 2021;33(2):314-322. [Crossref] 101. Chen YH, Yang S, Hong DW, Attin T, Yu H. Short-term effects of sta- in-causing beverages on tooth bleaching: A randomized controlled clinical trial. J Dent. 2020;95:103318. [Crossref]
  • 102. Costa R, Moraes S, Lemos C, SoutoMaior JR, Vasconcelos Bc do E, Pellizzer E P. Effect of analgesic drugs on tooth sensitivity induced by In-office dental bleaching: A systematic review and meta-analysis. Oper Dent. 2020;45(2):E66-E76. [Crossref]
  • 103. de Oliveira Duque CC, Soares DG, Briso A ,et al. Influence of tooth pigmentation on H2O2 diffusion and its cytotoxicity after in-office tooth bleaching. Oper Dent. 2020;45(6):632-642. [Crossref] 104. Levrini L, Paracchini L, Bakaj R, Diaconu A, Cortese S. Dental bleac- hing during orthodontic treatment with aligners. Int J Esthet Dent. 2020;15(1):44-54.
  • 105. Goettems ML, Dos Santos Fernandez M, Donassollo TA, Donassollo SH, Demarco FF. Impact of tooth bleaching on oral health-related quality of life in adults: A triple-blind randomised clinical trial. J Dent. 2021;105:103564. [Crossref]
  • 106. Daltro TWS, de Almeida SAG, Marlon Ferreira Dias MF, Lins-Filho PC, da Silva CHV, Guimarães RP. The influence of violet LED light on tooth bleaching protocols: In vitro study of bleaching effectiveness. Photodiagnosis Photodyn Ther. 2020;32:102052. [Crossref]
There are 101 citations in total.

Details

Primary Language Turkish
Subjects Dentistry
Journal Section Reviews
Authors

Seden Tüzel This is me

Semiha Hülya Erten Can This is me

Publication Date July 14, 2022
Submission Date December 5, 2020
Published in Issue Year 2022 Volume: 32 Issue: 3

Cite

AMA Tüzel S, Erten Can SH. VİTAL DİŞ BEYAZLATMA TEKNİKLERİ VE GÜNCEL YAKLAŞIMLAR. Curr Res Dent Sci. July 2022;32(3):239-249. doi:10.17567/ataunidfd.956970

Current Research in Dental Sciences is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.

29936