Journal of Dentistry
Volume 37, Issue 9 , Pages 705-711 , September 2009

In vitro analysis of inhibitory effects of the antibacterial monomer MDPB-containing restorations on the progression of secondary root caries

  • Thaís Thomé

      Affiliations

    • Departamento de Dentística, Faculdade de Odontologia, Universidade de São Paulo, São Paulo, Brazil
  • ,
  • Marcia P.A. Mayer

      Affiliations

    • Departamento de Microbiologia, Institute of Biomedical Sciences, Universidade de São Paulo, São Paulo, Brazil
  • ,
  • Satoshi Imazato

      Affiliations

    • Department of Restorative Dentistry and Endodontology, Osaka University Graduate School of Dentistry, Osaka, Japan
  • ,
  • Vinícius R. Geraldo-Martins

      Affiliations

    • Departamento de Dentística, Faculdade de Odontologia, Universidade de São Paulo, São Paulo, Brazil
  • ,
  • Márcia M. Marques

      Affiliations

    • Departamento de Dentística, Faculdade de Odontologia, Universidade de São Paulo, São Paulo, Brazil
    • Corresponding Author InformationCorresponding author at: Universidade de São Paulo, Faculdade de Odontologia, Departamento de Dentística, Avenida Professor Lineu Prestes, 2227, Cidade Universitária, CEP 05508-900, São Paulo, SP, Brazil. Tel.: +55 11 30917839x213.

Received 10 March 2009 ,Revised 15 May 2009 ,Accepted 19 May 2009.

References 

  1. Saunders RH, Meyerowitz C. Dental caries in older adults. Dental Clinics of North America. 2005;49:293–308
  2. Imazato S, Ikebe K, Nokubi T, Ebisu S, Walls AWG. Prevalence of root caries in a selected population of older adults in Japan. Journal of Oral Rehabilitation. 2006;33:137–143
  3. Lynch E, Baysan A. Reversal of primary root caries using a dentifrice with a high fluoride content. Caries Research. 2001;35:60–64
  4. Syafiuddin T, Hisamitsu H, Toko T, Igarashi T, Goto N, Fujishima A, et al. In vitro inhibition of caries around a resin composite restoration containing antibacterial filler. Biomaterials. 1997;18:1051–1057
  5. Tanagawa M, Yoshida K, Matsumoto S, Yamada T, Atsuta M. Inhibitory effect of antibacterial resin composite against Streptococcus mutans. Caries Research. 1999;33:366–371
  6. Yoshida K, Tanagawa M, Matsumoto S, Yamada T, Atsuta M. Antibacterial activity of resin composites with silver-containing materials. European Journal of Oral Sciences. 1999;107:290–296
  7. Ehara A, Torii M, Imazato S, Ebisu S. Antibacterial activities and release kinetics of a newly developed recoverable controlled agent-release system. Journal of Dental Research. 2000;79:824–828
  8. Beyth N, Yudovin-Farber I, Bahir R, Domb AJ, Weiss EI. Antibacterial activity of dental composites containing quaternary ammonium polyethylenimine nanoparticles against Streptococcus mutans. Biomaterials. 2006;27:3995–4002
  9. Takahashi Y, Imazato S, Kaneshiro AV, Ebisu S, Frencken JE, Tay FR. Antibacterial effects and physical properties of glass-ionomer cements containing chlorhexidine for the ART approach. Dental Materials. 2006;22:647–652
  10. Buergers R, Schneider-Brachert W, Hahnel S, Rosentritt M, Handel G. Streptococcal adhesion to novel low-shrink silorane-based restorative. Dental Materials. 2009;25:269–275
  11. Hiraishi N, Yiu CK, King NM, Tay FR, Pashley DH. Chlorhexidine release and water sorption characteristics of chlorhexidine-incorporated hydrophobic/hydrophilic resins. Dental Materials. 2008;24:1391–1399
  12. Türkün LS, Türkün M, Ertuğrul F, Ateş M, Brugger S. Long-term antibacterial effects and physical properties of a chlorhexidine-containing glass ionomer cement. Journal of Esthetic and Restorative Dentistry. 2008;20:29–45
  13. Torii Y, Itota T, Okamoto M, Nakabo S, Nagamine M, Inoue K. Inhibition of artificial secondary caries in root by fluoride-releasing restorative materials. Operative Dentistry. 2001;26:36–43
  14. Eliasson S, Krasse B, Söremark R. Root caries. A consensus conference statement. Swedish Dental Journal. 1992;16:21–25
  15. Forsten L. Fluoride release of glass ionomers. Journal of Esthetic Dentistry. 1994;6:216–222
  16. Wiegand A, Buchalla W, Attin T. Review on fluoride-releasing restorative materials—fluoride release and uptake characteristics, antibacterial activity and influence on caries formation. Dental Materials. 2007;23:343–362
  17. Imazato S. Antibacterial properties of resin composites and dentin bonding systems. Dental Materials. 2003;19:449–457
  18. Imazato S, Torii M, Tsuchitani Y, McCabe JF, Russell RRB. Incorporation of bacterial inhibitor into resin composite. Journal of Dental Research. 1994;73:1437–1443
  19. Scheie AA. Modes of action of currently known chemical anti-plaque agents other than chlorhexidine. Journal of Dental Research. 1989;68:1609–1616
  20. Ebi N, Imazato S, Noiri Y, Ebisu S. Inhibitory effects of resin composite containing bactericide-immobilized filler on plaque accumulation. Dental Materials. 2001;17:485–491
  21. Imazato S, Russell RRB, McCabe JF. Antibacterial activity of MDPB polymer incorporated in dental resin. Journal of Dentistry. 1995;23:177–181
  22. Imazato S, Kinomoto Y, Tarumi H, Torii M, Russell RRB, McCabe JF. Incorporation of antibacterial monomer MDPB into dentin primer. Journal of Dental Research. 1997;76:768–772
  23. Imazato S, Ehara A, Torii M, Ebisu S. Antibacterial activity of dentin primer containing MDPB after curing. Journal of Dentistry. 1998;26:267–271
  24. Imazato S, Imai T, Russell RRB, Torii M, Ebisu S. Antibacterial activity of cured dental resin incorporating the antibacterial monomer MDPB and an adhesion-promoting monomer. Journal of Biomedical Materials Research. 1998;39:511–515
  25. Imazato S, Ebi N, Tarumi H, Russell RRB, Kaneko T, Ebisu S. Bactericidal activity and cytotoxicity of antibacterial monomer MDPB. Biomaterials. 1999;20:899–903
  26. Imazato S, Torii Y, Takatsuka T, Inoue K, Ebi N, Ebisu S. Bactericidal effect of dentin primer containing antibacterial monomer methacryloyloxydodecylpyridinium bromide (MDPB) against bacteria in human carious dentin. Journal of Oral Rehabilitation. 2001;28:314–319
  27. Imazato S, Ebi N, Takahashi Y, Kaneko T, Ebisu S, Russell RRB. Antibacterial activity of bactericide-immobilized filler for resin-based restoratives. Biomaterials. 2003;24:3605–3609
  28. Imazato S, Kinomoto Y, Tarumi H, Ebisu S, Tay FR. Antibacterial activity and bonding characteristics of an adhesive resin containing antibacterial monomer MDPB. Dental Materials. 2003;19:313–319
  29. Kuramoto A, Imazato S, Walls AWG, Ebisu S. Inhibition of root caries progression by an antibacterial adhesive. Journal of Dental Research. 2005;84:89–93
  30. Lobo MM, Gonçalves RB, Pimenta LAF, Bedran-Russo AKB, Pereira PNR. In vitro evaluation of caries inhibition promoted by self-etching adhesive system containing antibacterial agents. Journal of Biomedical Materials Research. Part B, Applied Biomaterials. 2005;75:122–127
  31. Imazato S, Kuramoto A, Takahashi Y, Ebisu S, Peters MC. In vitro antibacterial effects of the dentin primer of Clearfil Protect Bond. Dental Materials. 2006;22:527–532
  32. Imazato S, Ohmori K, Russell RRB, McCabe JF, Momoi Y, Maeda N. Determination of bactericidal activity of antibacterial monomer MDPB by a viability staining method. Dental Materials Journal. 2008;27:145–148
  33. Imazato S, McCabe JF. Influence of incorporation of antibacterial monomer on curing behavior of a dental composite. Journal of Dental Research. 1994;73:1641–1645
  34. Imazato S, Tarumi H, Kato S, Ebisu S. Water sorption and colour stability of composites containing the antibacterial monomer MDPB. Journal of Dentistry. 1999;27:279–283
  35. Imazato S, Tay FR, Kaneshiro AV, Takahashi Y, Ebisu S. An in vivo evaluation of bonding ability of comprehensive antibacterial system incorporating MDPB. Dental Materials. 2007;23:170–176
  36. Dummer PMH, Edmunds DH, Green RM. Demineralization of human enamel by Streptococcus mutans NCTC 10832 using a sequential batch culture technique. Caries Research. 1982;16:193–196
  37. Gilmour ASM, Edmunds DH, Dummer PMH. The production of secondary caries like lesions on cavity walls and the assessment of microleakage using an in vitro microbial caries system. Journal of Oral Rehabilitation. 1990;17:573–578
  38. Wilson NHF, Burke FJT, Mjör IA. Reasons for placement and replacement of restorations of direct restorative materials by a selected group of practitioners in the United Kingdom. Quintessence International. 1997;28:245–248
  39. Mjör IA. The location of clinically diagnosed secondary caries. Quintessence International. 1998;29:313–317
  40. Mjör IA, Toffeneti F. Secondary caries: a literature review with caries reports. Quintessence International. 2000;31:165–179
  41. Kidd EA. Diagnosis of secondary caries. Journal of Dental Education. 2001;65:997–1000
  42. Scherer W, Lippman N, Kaim J. Antimicrobial properties of glass-ionomer cements and other restorative materials. Operative Dentistry. 1989;14:77–81
  43. Onal B, Pamir T. The two-year clinical performance of esthetic restorative materials in noncarious cervical lesions. Journal of the American Dental Association. 2005;136:1547–1555
  44. Rolland SL, McCabe JF, Robinson C, Walls AWG. In vitro biofilm formation on the surface of resin-based dentine adhesives. European Journal of Oral Sciences. 2006;114:243–249

PII: S0300-5712(09)00129-8

doi: 10.1016/j.jdent.2009.05.024

Journal of Dentistry
Volume 37, Issue 9 , Pages 705-711 , September 2009