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    Brazilian Journal of Oral Sciences

      ISSN 1677-3225

    Braz. J. Oral Sci. vol.9 no.3 Piracicaba jul./sep. 2010

     

    ORIGINAL ARTICLE

     

    Effect of photochemical activation of hydrogen peroxide bleaching gel with and without TiO2 and different wavelengths

     

     

    Taciana Marco Ferraz CaneppeleI; Carlos Rocha Gomes TorresII; Adriana ChungIII; Edson Hidenobu GotoIV; Soraya Consolin LekeviciusIV

    IPhD student in Restorative Dentistry, Department of Restorative Dentistry, São José dos Campos Dental School, São Paulo State University – UNESP, Brazil
    IIPhD, Department of Restorative Dentistry, São José dos Campos Dental School, São Paulo State University – UNESP, Brazil
    IIIMsC student in Restorative Dentistry, Department of Restorative Dentistry, São José dos Campos Dental School, São Paulo State University – UNESP, Brazil
    IVDDS, Department of Restorative Dentistry, São José dos Campos Dental School, São Paulo State University – UNESP, Brazil

    Correspondence to

     

     


    ABSTRACT

    AIM: To evaluate the effect of photochemical activation of hydrogen peroxide (H2O2) bleaching gel with different wavelengths.
    METHODS:
    In the study, 80 bovine incisors were used, which were stained in 25% soluble coffee and divided in 4 groups. The initial color was measured with the Easy Shade spectrophotometer by CIE Lab. An experimental 35% H2O2 bleaching gel was used, either with or without the presence of titanium dioxide (TiO2) pigment, associated with two light sources: G1 - Transparent Gel (TG) and no activation; G2 - Gel with TiO2 and activation with blue LED (l=470nm)\laser (Easy Bleach) appliance; G3 - Gel with TiO2 and activation with ultraviolet (l=345nm - UV); G4 - TG and activation with UV. Three applications of the gels were made for 10 min, and in each, 3 activations of 3 min, with interval of 30 s between them. The coloration was evaluated again and the variation in color perception (DE) was calculated. The data were submitted to one-way ANOVA and Tukey's test at 5% significance level.
    RESULTS:
    There were significant differences between G1 and G4. The greatest "E value was observed in G4 (13.37). There was no statistically significant difference (p>0.05) between the groups 2, 3 and 4.
    CONCLUSIONS:
    The presence of TiO2 particules in the bleaching gel did not interfere at the bleaching results.

    Keywords: tooth bleaching, hydrogen peroxide, color.


     

     

    Full text available only in PDF format.

     

     

    References

    1. Goldstein GR, Kiremidjian-Schumacher L. Bleaching: is it safe and effective? J Prosthet Dent. 1993 69: 325-8.         [ Links ]

    2. Seghi RR, Denry I. Effects of external bleaching on indentation and abrasion characteristics of human enamel in vitro. J Dent Res. 1992; 71: 1340-4.         [ Links ]

    3. Baik JW, Rueggeberg FA, Liewehr FR. Effect of light-enhanced bleaching on in vitro surface and intrapulpal temperature rise. J Esthet Restor Dent. 2001; 13: 370-8.         [ Links ]

    4. Walsh LJ. Safety issues relating to the use of hydrogen peroxide in dentistry. Aust Dent J. 2000; 45: 257-69; quiz 89.         [ Links ]

    5. Goldstein RE. In-office bleaching: where we came from, where we are today. J Am Dent Assoc. 1997; 128 Suppl: 11S-5S.         [ Links ]

    6. Chen JH, Xu JW, Shing CX. Decomposition rate of hydrogen peroxide bleaching agents under various chemical and physical conditions. J Prosthet Dent. 1993; 69: 46-8.         [ Links ]

    7. Greenwall L. Bleaching techniques in restorative dentistry. London: Taylor & Francis; 2001.         [ Links ]

    8. Sun G. The role of lasers in cosmetic dentistry. Dent Clin North Am. 2000; 44: 831-50.         [ Links ]

    9. Buchalla W, Attin T. External bleaching therapy with activation by heat, light or laser—a systematic review. Dent Mater. 2007; 23: 586-96.         [ Links ]

    10. Torres CRG, Borges AB, Kubo CH, Gonçalves SEP, Celaschi S, S GCE et al. Clareamento dental com fontes híbridas LED/LASER. São Paulo: Santos; 2007. p. 9-15.         [ Links ]

    11. Freitas FS, Machado AEdH, Velani V. Avaliação da atividade fotocatalítica de compósitos de Dióxido de titânio e ftalocianina de zinco. VI Encontro Interno de Iniciação Científica, X Seminário de Iniciação Científica; 2006. Uberlândia: Universidade Federal de Uberlândia; 2006.         [ Links ]

    12. Dias MG, Azevedo EB. Degradação Fotocatalítica de corantes comerciais usando luz UV e solar. 14ª Semana de Iniciação Científica. 2005. Rio de Janeiro: UERJ; 2005. p. 218.         [ Links ]

    13. Romero IH, Robles GS. Tratamiento fotocatalítico de águas residuales utilizando TiO2 como catalizador. 2003. Available from: http: //www.csva.gov.mx/foromundial/Material/MISION_ultimo.pdf. Acessed 2010 Apr.         [ Links ]

    14. Auschill TM, Hellwig E, Schmidale S, Sculean A, Arweiler NB. Efficacy, side-effects and patients' acceptance of different bleaching techniques (OTC, in-office, at-home). Oper Dent. 2005; 30: 156-63.         [ Links ]

    15. Tung FF, Goldstein GR, Jang S, Hittelman E. The repeatability of an intraoral dental colorimeter. J Prosthet Dent. 2002; 88: 585-90.         [ Links ]

    16. Borges AB. The influence of bleaching agents on enamel bond strength of a composite resin according to storage time. J Dent Res. 2003; 82: B-191.         [ Links ]

    17. Bowles WH, Bokmeyer TJ. Staining of adult teeth by minocycline: binding of minocycline by specific proteins. J Esthet Dent. 1997; 9: 30-4.         [ Links ]

    18. Rigoni RE. Degradação de corante alimentício amarelo crepúsculo utilizando fotocatálise [dissertation]. Erechim: Universidade Regional Integrada do Alto do Uruguai; 2006.         [ Links ]

    19. Ishibashi T, Higahiizumi E, Sotoaka R, Ishihara F, Kakuda M, Ogasawara M et al. Tooth bleaching compositions and methods of bleaching discolored tooth. United States Patent US 6843981. 2005 Jan 18.         [ Links ]

    20. Herrmann J-M, Guillard C, Disdier J, Lehaut C, Malato S, Blanco J. New industrial photocatalysts for the solar detoxification of water containing various pollutants. Appl Catal B: Environ. 2002; 35: 281-94.         [ Links ]

    21. Grzechulska J, Morawski AW. Photocatalytic decomposition of azo-dye acid black in water over modified titanium dioxide. Appl Catal B: Environ. 2001; 36: 45-51.         [ Links ]

    22. Tseng J, Huang CP, editors. International Symposium on Chemical Oxidation Technologies for the Nineties. Nashville, TN: Vanderbilt University; 1991.         [ Links ]

    23. Suyama Y, Otesuki M, Ogisu S, Kishikawa R, Tagami J, Ikeda M, Kurata H, Cho T. Effects fo light sources and visible ligth-activated titanium dioxide phtotocatalyst on bleaching. Dent Mater J. 2009; 28: 693-9         [ Links ]

    24. Joiner A, Thakker G, Cooper Y. Evaluation of a 6% hydrogen peroxide tooth whitening gel on enamel and dentin microhardness in vitro. J Dent. 2004; 32: 27-34.         [ Links ]

     

     

    Correspondence to:
    Adriana Chung
    Muniz de Souza, 1020 apt 181 CEP 01534-001 São Paulo SP, Brazil
    Phone: 11-8778-2457/ 12-3308-4724
    E-mail: adri_chung@yahoo.com.br

    Received for publication: September 28, 2009
    Accepted: August 24, 2010