Journal of Dentistry
Volume 36, Issue 11 , Pages 907-914 , November 2008

Beneficial effects of hydroxyapatite on enamel subjected to 30% hydrogen peroxide

  • Tao Jiang

      Affiliations

    • Key Laboratory for Oral Biomedical Engineering, Ministry of Education, School and Hospital of Stomatology, Wuhan University, 237 Luoyu Road, Wuhan 430079, PR China
    • Institute of Analytical and Biomedical Science, Wuhan University, Luojia Hill, Wuhan 430072, PR China
    • Contributed equally to this work.
  • ,
  • Xiao Ma

      Affiliations

    • Key Laboratory for Oral Biomedical Engineering, Ministry of Education, School and Hospital of Stomatology, Wuhan University, 237 Luoyu Road, Wuhan 430079, PR China
    • Contributed equally to this work.
  • ,
  • Zhejun Wang

      Affiliations

    • Key Laboratory for Oral Biomedical Engineering, Ministry of Education, School and Hospital of Stomatology, Wuhan University, 237 Luoyu Road, Wuhan 430079, PR China
  • ,
  • Hua Tong

      Affiliations

    • Institute of Analytical and Biomedical Science, Wuhan University, Luojia Hill, Wuhan 430072, PR China
  • ,
  • Jiming Hu

      Affiliations

    • Institute of Analytical and Biomedical Science, Wuhan University, Luojia Hill, Wuhan 430072, PR China
  • ,
  • Yining Wang

      Affiliations

    • Key Laboratory for Oral Biomedical Engineering, Ministry of Education, School and Hospital of Stomatology, Wuhan University, 237 Luoyu Road, Wuhan 430079, PR China
    • Corresponding Author InformationCorresponding author. Tel.: +86 27 87646696; fax: +86 27 87873260.

Received 8 April 2008 ,Revised 14 July 2008 ,Accepted 20 July 2008.

References 

  1. Matis BA, Wang Y, Jiang T, Eckert GJ. Extended at-home bleaching of tetracycline-stained teeth with different concentrations of carbamide peroxide. Quintessence International. 2002;33:645–655
  2. Dahl JE, Pallesen U. Tooth bleaching—a critical review of the biological aspects. Critical Reviews in Oral Biology and Medicine. 2003;14:292–304
  3. Joiner A. The bleaching of teeth: a review of the literature. Journal of Dentistry. 2006;34:412–419
  4. Justino LM, Tames DR, Demarco FF. In situ and in vitro effects of bleaching with carbamide peroxide on human enamel. Operative Dentistry. 2004;29:219–225
  5. Sulieman M, Addy M, Macdonald E, Rees JS. A safety study in vitro for the effects of an in-office bleaching system on the integrity of enamel and dentine. Journal of Dentistry. 2004;32:581–590
  6. Maia E, Baratieri LN, Caldeira de Andrada MA, Monteiro S, Vieira LC. The influence of two home-applied bleaching agents on enamel microhardness: an in situ study. Journal of Dentistry. 2008;36:2–7
  7. Cadenaro M, Breschi L, Nucci C, Antoniolli F, Visintini E, Prati C, et al. Effect of two in-office whitening agents on the enamel surface in vivo: a morphological and non-contact profilometric study. Operative Dentistry. 2008;33:127–134
  8. McCracken MS, Haywood VB. Demineralization effects of 10 percent carbamide peroxide. Journal of Dentistry. 1996;24:395–398
  9. Tezel H, Ertas OS, Ozata F, Dalgar H, Korkut ZO. Effect of bleaching agents on calcium loss from the enamel surface. Quintessence International. 2007;38:339–347
  10. Al-Salehi SK, Wood DJ, Hatton PV. The effect of 24h non-stop hydrogen peroxide concentration on bovine enamel and dentine mineral content and microhardness. Journal of Dentistry. 2007;35:845–850
  11. Bitter NC. A scanning electron microscopy study of the effect of bleaching agents on enamel: a preliminary report. Journal of Prosthetic Dentistry. 1992;67:852–855
  12. Flaitz CM, Hicks MJ. Effects of carbamide peroxide whitening agents on enamel surfaces and caries-like lesion formation: an SEM and polarized light microscopic in vitro study. ASDC Journal of Dentistry for Children. 1996;63:249–256
  13. Hegedus C, Bistey T, Flora-Nagy E, Keszthelyi G, Jenei A. An atomic force microscopy study on the effect of bleaching agents on enamel surface. Journal of Dentistry. 1999;27:509–515
  14. Cavalli V, Arrais CA, Giannini M, Ambrosano GM. High-concentrated carbamide peroxide bleaching agents effects on enamel surface. Journal of Oral Rehabilitation. 2004;31:155–159
  15. Jiang T, Ma X, Wang Y, Tong H, Shen X, Hu Y, et al. Investigation of the effects of 30% hydrogen peroxide on human tooth enamel by Raman scattering and laser-induced fluorescence. Journal of Biomedical Optics. 2008;13:014019
  16. Oltu U, Gurgan S. Effects of three concentrations of carbamide peroxide on the structure of enamel. Journal of Oral Rehabilitation. 2000;27:332–340
  17. Cimilli H, Pameijer CH. Effect of carbamide peroxide bleaching agents on the physical properties and chemical composition of enamel. American Journal of Dentistry. 2001;14:63–66
  18. Bistey T, Nagy IP, Sim A, Hegedus C. In vitro FT-IR study of the effects of hydrogen peroxide on superficial tooth enamel. Journal of Dentistry. 2007;35:325–330
  19. Seghi RR, Denry I. Effects of external bleaching on indentation and abrasion characteristics of human enamel in vitro. Journal of Dental Research. 1992;71:1340–1344
  20. Basting RT, Rodrigues Junior AL, Serra MC. The effect of 10% carbamide peroxide bleaching material on microhardness of sound and demineralized enamel and dentin in situ. Operative Dentistry. 2001;26:531–539
  21. Rodrigues JA, Marchi GM, Ambrosano GM, Heymann HO, Pimenta LA. Microhardness evaluation of in situ vital bleaching on human dental enamel using a novel study design. Dental Materials. 2005;21:1059–1067
  22. Basting RT, Rodrigues AL, Serra MC. The effects of seven carbamide peroxide bleaching agents on enamel microhardness over time. Journal of the American Dental Association. 2003;134:1335–1342
  23. Cavalli V, Giannini M, Carvalho RM. Effect of carbamide peroxide bleaching agents on tensile strength of human enamel. Dental Materials. 2004;20:733–739
  24. Marson FC, Sensi LG, Vieira LC, Araujo E. Clinical evaluation of in-office dental bleaching treatments with and without the use of light-activation sources. Operative Dentistry. 2008;33:15–22
  25. Joiner A. Review of the effects of peroxide on enamel and dentine properties. Journal of Dentistry. 2007;35:889–896
  26. Driessens FC, Theuns HM, Borggreven JM, van Dijk JW. Solubility behaviour of whole human enamel. Caries Research. 1986;20:103–110
  27. Rotstein I, Friedman S. pH variation among materials used for intracoronal bleaching. Journal of Endodontics. 1991;17:376–379
  28. Weiger R, Kuhn A, Lost C. Effect of various types of sodium perborate on the pH of bleaching agents. Journal of Endodontics. 1993;19:239–241
  29. Efeoglu N, Wood D, Efeoglu C. Microcomputerised tomography evaluation of 10% carbamide peroxide applied to enamel. Journal of Dentistry. 2005;33:561–567
  30. Arends J, Jongebloed WL, Goldberg M, Schuthof J. Interaction of urea and human enamel. Caries Research. 1984;18:17–24
  31. Attin T, Betke H, Schippan F, Wiegand A. Potential of fluoridated carbamide peroxide gels to support post-bleaching enamel re-hardening. Journal of Dentistry. 2007;35:755–759
  32. de Oliveira R, Paes Leme AF, Giannini M. Effect of a carbamide peroxide bleaching gel containing calcium or fluoride on human enamel surface microhardness. Brazilian Dental Journal. 2005;16:103–106
  33. Giniger M, MacDonald J, Ziemba S, Felix H. The clinical performance of professionally dispensed bleaching gel with added amorphous calcium phosphate. Journal of the American Dental Association. 2005;136:383–392
  34. Legeros RZ. Calcium phosphate materials in restorative dentistry: a review. Advances in Dental Research. 1988;2:164–180
  35. Sun L, Berndt CC, Gross KA, Kucuk A. Material fundamentals and clinical performance of plasma-sprayed hydroxyapatite coatings: a review. Journal of Biomedical Materials Research. 2001;58:570–592
  36. Yamagishi K, Onuma K, Suzuki T, Okada F, Tagami J, Otsuki M, et al. Materials chemistry: a synthetic enamel for rapid tooth repair. Nature. 2005;433:819
  37. Onuma K, Yamagishi K, Oyane A. Nucleation and growth of hydroxyapatite nanocrystals for nondestructive repair of early caries lesions. Journal of Crystal Growth. 2005;282:199–207
  38. Chow LC, Sun L, Hockey B. Properties of nanostructured hydroxyapatite prepared by a spray drying technique. Journal of Research of the National Institute of Standards and Technology. 2004;109:543–551
  39. Niwa M, Sato T, Li W, Aoki H, Aoki H, Daisaku T. Polishing and whitening properties of toothpaste containing hydroxyapatite. Journal of Materials Science: Materials in Medicine. 2001;12:277–281
  40. Jiang T, Ma X, Wang Y, Zhu Z, Tong H, Hu J. Effects of hydrogen peroxide on human dentin structure. Journal of Dental Research. 2007;86:1040–1045
  41. Boanini E, Torricelli P, Gazzano M, Giardino R, Bigi A. Nanocomposites of hydroxyapatite with aspartic acid and glutamic acid and their interaction with osteoblast-like cells. Biomaterials. 2006;27:4428–4433
  42. Deakins M, Volker JF. Amount of organic matter in enamel from several types of human teeth. Journal of Dental Research. 1941;20:117–121
  43. Sydney-Zax M, Mayer I, Deutsch D. Carbonate content in developing human and bovine enamel. Journal of Dental Research. 1991;70:913–916
  44. Featherstone JD, ten Cate JM, Shariati M, Arends J. Comparison of artificial caries-like lesions by quantitative microradiography and microhardness profiles. Caries Research. 1983;17:385–391
  45. Rotstein I, Lehr Z, Gedalia I. Effect of bleaching agents on inorganic components of human dentin and cementum. Journal of Endodontics. 1992;18:290–293
  46. Rotstein I, Dankner E, Goldman A, Heling I, Stabholz A, Zalkind M. Histochemical analysis of dental hard tissues following bleaching. Journal of Endodontics. 1996;22:23–25
  47. Maas MC, Dumont ER. Built to last: the structure, function, and evolution of primate dental enamel. Evolutionary Anthropology Issues News and Reviews. 1999;8:133–152
  48. Whittaker DK. Structural variations in the surface zone of human tooth enamel observed by scanning electron microscopy. Archives of Oral Biology. 1982;27:383–392

PII: S0300-5712(08)00213-3

doi: 10.1016/j.jdent.2008.07.005

Journal of Dentistry
Volume 36, Issue 11 , Pages 907-914 , November 2008