Journal of Dentistry
Volume 37, Issue 7 , Pages 554-559 , July 2009

Does strontium play a role in the cariostatic activity of glass ionomer? Strontium diffusion and antibacterial activity

  • Firas Dabsie

      Affiliations

    • Department of Biomaterials, Faculty of Odontology, University Toulouse III, 31062 Toulouse, France
  • ,
  • Geneviève Gregoire

      Affiliations

    • Department of Biomaterials, Faculty of Odontology, University Toulouse III, 31062 Toulouse, France
    • Corresponding Author InformationCorresponding author.
  • ,
  • Michel Sixou

      Affiliations

    • Dental Department of Epidemiology, Toulouse Dental Hospital, Toulouse, France
  • ,
  • Patrick Sharrock

      Affiliations

    • Medical and Spatial Imaging Laboratory, University Toulouse III, Toulouse, France

Received 19 January 2009 ,Revised 10 March 2009 ,Accepted 21 March 2009.

References 

  1. Shorr E, Carter AC. The usefulness of strontium as an adjuvant to calcium in the remineralization of the skeleton in man. Bulletin of the Hospital for Joint Diseases. 1952;13:59–66
  2. Van Meerbeek B, De Munch J, Yoshida Y, Inoue S. Buonocore memorial lecture. Adhesion to enamel and dentin: current status and future challenges. Operative Dentistry. 2003;28:215–235
  3. Forss H. Release of fluoride and other elements from light-cured glass ionomers in neutral and acidic conditions. Journal of Dental Research. 1993;72:1257–1262
  4. Geurtsen W. Substances released from dental resin composites and glass ionomer cements. European Journal of Oral Sciences. 1998;106:687–695
  5. Zhou M, Drummond J, Hanley L. Barium and strontium leaching from aged glass particle/resin matrix dental composites. Dental Materials. 2005;21:145–155
  6. Gao PZ, Matsuya S, Ohta M, Zhang JZ. Erosion process of light-cured and conventional glass ionomer cements in citrate buffer solution. Dental Materials. 1997;16:170–179
  7. De Gee AJ, Pallav P. Occlusal wear simulation with the ACTA wear machine. Journal of Dentistry. 1994;22:S21–S27
  8. Shabanian M, Richards LC. In vitro wear rates of materials under different loads and varying pH. Journal of Prosthetic Dentistry. 2002;87:650–656
  9. Correr GM, Bruschi Alonso RC, Lourenc , Correr Sobrinho L, Puppin-Rontani RM, Ferracane JL. In vitro wear of resin-based materials—simultaneous corrosive and abrasive wear. Journal of Biomedical Materials Research Part B: Applied Biomaterials. 2006;78:105–114
  10. Marczuk-Kolada G, Waszkiel D, Luczaj-Cepowicz E, Kierklo A, Pawińska M, Mystkowska J. The effect of glass ionomer cement Fuji IX on the hard tissues of teeth treated by sparing methods (ART and CMCR). Advanced Medical Sciences. 2006;51:138–141
  11. Ngo HC, Mount G, Mc Intyre J, Tuisuva J, Von Doussa RJ. Chemical exchange between glass-ionomer restorations and residual carious dentine in permanent molars: an in vivo study. Journal of Dentistry. 2006;34:608–613
  12. Oliva A, Della Ragione F, Salerno A, Riccio V, Tartaro G, Cozzolino A, et al. Biocompatibility studies on glass ionomer cements by primary cultures of human osteoblasts. Biomaterials. 1996;17:1351–1356
  13. Souza PP, Aranha AM, Hebling J, Giro EM, Costa CA. In vitro cytotoxicity and in vivo biocompatibility of contemporary resin-modified glass-ionomer cements. Dental Materials. 2006;22:838–844
  14. De Souza Costa CA, Hebling J, Garcia-Godoy F, Hanks CT. In vitro cytotoxicity of five glass-ionomer cements. Biomaterials. 2003;24:3853–3858
  15. Rogalewicz R, Voelkel A, Kownacki I. Application of HS-SPME in the determination of potentially toxic organic compounds emitted from resin-based dental materials. Journal of Environmental Monitoring. 2006;8:377–383
  16. Featherstone JD, Shields CP, Khademazad B, Oldershaw MD. Acid reactivity of carbonated apatites with strontium and fluoride substitutions. Journal of Dental Research. 1983;62:1049–1053
  17. Bigi A, Boanini E, Capuccini C, Gazzano M. Strontium-substituted hydroxyapatite nanocrystals. Inorganica Chimica Acta. 2007;360:1009–1016
  18. Czarnecka B, Nicholson JW. Ion release by resin-modified glass-ionomer cements into water and lactic acid solutions. Journal of Dentistry. 2006;34:539–543
  19. Sales D, Sae-Lee D, Matsuya S, Ana ID. Short-term fluoride and cations release from polyacid-modified composites in a distilled water, and an acidic lactate buffer. Biomaterials. 2003;24:1687–1696
  20. Sennou HE, Lebugle AA, Grégoire G. X-ray photoelectron spectroscopy study of the dentin–glass ionomer cement interface. Dental Materials. 1999;15:229–237
  21. MacFadden JF. Media for isolation-cultivation-identification-maintenance of medical bacteria. volume 1. Baltimore, MD: Williams & Wilkins; 1985;
  22. Zylber LJ, Jordan HV. Development of a selective medium for detection and enumeration of Actinomyces viscosus and Actinomyces naeslundii in dental plaque. Journal of Clinical Microbiology. 1982;15:253–259
  23. Rogosa M, Mitchell JA, Wiseman RF. A selective medium for the isolation and enumeration of oral and fecal lactobacilli. Journal of Bacteriology. 1951;62:132–133
  24. Sutter VL, Citron DM, Edelstein MAC, Finegold SM. Wadsworth Anaerobic Bacteriology Manual. 4th ed.. Belmont, CA: Star Publishing; 1985;
  25. Slots J. Selective medium for isolation of Actinobacillus actinomycetemcomitans. Journal of Clinical Microbiology. 1982;15:606–609
  26. Losee FL, Ludwig TG. Trace elements and caries. Journal of Dental Research. 1970;49:1229–1235
  27. Guida A, Towler MR, Wall JG, Hill RG, Eramo S. Preliminary work on the antibacterial effect of strontium in glass ionomer cements. Journal of Materials Science Letters. 2003;22:1401–1403
  28. Thuy TT, Nakagaki H, Kato K, Hung PA, Inukai J, Tsuboi S, et al. Effect of strontium in combination with fluoride on enamel remineralisation in vitro. Archives of Oral Biology. 2008;53:1017–1022
  29. Athanassouli TM, Papastathopoulos DS, Apostolopoulos AX. Dental caries and strontium concentration in drinking water and surface enamel. Journal of Dental Research. 1983;62:989–991

PII: S0300-5712(09)00071-2

doi: 10.1016/j.jdent.2009.03.013

Journal of Dentistry
Volume 37, Issue 7 , Pages 554-559 , July 2009