Journal of Dentistry
Volume 37, Issue 7 , Pages 514-521 , July 2009

Antimicrobial properties of dentine bonding agents determined using in vitro and ex vivo methods

  • M. Vaidyanathan

      Affiliations

    • Dental Institute, King's College London, SE1 9RT, UK
  • ,
  • E.C. Sheehy

      Affiliations

    • Biomedical Research Centre, Guy's and St Thomas’ Hospital Foundation Trust, St Thomas’ Street, SE1 9RT, UK
  • ,
  • S.C. Gilbert

      Affiliations

    • Biomedical Research Centre, Guy's and St Thomas’ Hospital Foundation Trust, St Thomas’ Street, SE1 9RT, UK
  • ,
  • D. Beighton

      Affiliations

    • Dental Institute, King's College London, SE1 9RT, UK
    • Biomedical Research Centre, Guy's and St Thomas’ Hospital Foundation Trust, St Thomas’ Street, SE1 9RT, UK
    • Corresponding Author InformationCorresponding author at: Department of Microbiology, The Henry Wellcome Laboratories for Microbiology and Salivary Research, Dental Institute, King's College London, Floor 17, Guys Tower, London Bridge, SE1 9RT, UK. Tel.: +44 2071887465; fax: +44 2071887466.

Received 14 January 2009 ,Revised 6 March 2009 ,Accepted 11 March 2009.

References 

  1. Rayner J, Holt R, Blinkhorn F, Duncan K. British Society of Paediatric Dentistry: a policy document on oral health care in preschool children. International Journal of Paediatric Dentistry. 2003;13:279–285
  2. Berg JH. The continuum of restorative materials in Pediatric Dentistry—a review for the clinician. Pediatric Dentistry. 1998;20:93–100
  3. Roulet JF, Noack MJ. Criteria for substituting amalgam with composite resins. International Dental Journal. 1991;41:195–205
  4. Bergenholtz G, Cox CF, Loesche WJ, Syed S. Bacterial leakage around dental restorations: it's effect on the dental pulp. Journal of Oral Pathology. 1992;11:439–450
  5. McCabe JF, Walls AG. Applied dental materials. 8th Edition. Blackwell Science; 1998;
  6. Ricketts D, Kidd E, Innes NPT, Clarkson JE. Complete or ultraconservative removal of decayed tissue in unfilled teeth. Cochrane Database of Systematic Reviews 2006, Issue 3. Art. No.: CD003808, doi:10.1002/14651858.CD003808.pub2.
  7. Tobias RS, Browne RM, Wilson CA. Antibacterial activity of dental restorative materials. International Endodontic Journal. 1985;18:161–171
  8. Emillson CG, Bergenholtz G. Antibacterial properties of dentinal bonding agents. Quintessence International. 1993;24:511–515
  9. Meiers JC, Miller GA. Antibacterial activity of dentin bonding systems, resin modified glass ionomers and polyacid modified composite resins. Operative Dentistry. 1996;21:257–264
  10. Hererra M, Castillo A, Bravo M, Liebana J, Carrion P. Antibacterial activity of resin adhesives, glass ionomer and resin modified glass ionomer cements with compomer in contact with dentin caries samples. Operative Dentistry. 2000;25:265–269
  11. Atac AS, Cehreli ZC, Sener B. Antibacterial activity of fifth generation dentin bonding systems. Journal of Endodontics. 2001;27:730–733
  12. Karanika-Kouma , Dionysopoulos P, Koliniotou-Koubia E, Kolokotronis A. Antibacterial properties of dentin bonding ayatems, polyacid-modified composite resins and composite resins. Journal of Oral Rehabilitation. 2001;28:157–160
  13. Cehreli ZC, Atac AS, Sener B. Antimicrobial properties of self-etching primer-bonding systems. Operative Dentistry. 2003;28:143–148
  14. Schmalz G, Ergucu Z, Hiller KA. Effect of dentin an the antibacterial activity of dentin bonding agents. Journal of Endodontics. 2004;30:352–358
  15. Schmidlin OA, Zehnder M, Schmidlin PR. Effectiveness of dentine bonding agents against cariogenic bacteria in vitro: a comparison of two methods. Oral Microbiology. 2003;18:140–143
  16. Brandt PD, de Wet FA, Botha SJ, de Wet BJ. Anti-bacterial efficacy of new self etching dentine bonding agent. South African Dental Journal. 2004;59:280–282
  17. Slutzky H, Matalon S, Weiss EI. Antibacterial surface properties of polymersied single-bottle bonding agents. Part II. Quintessence International. 2004;35:275–279
  18. Imazato S, Torii M, Tsuchitani Y, McCabe JF, Russell RRB. Incorporation of bacterial inhibitor into composite resin. Journal of Dental Research. 1994;73:1437–1443
  19. Imatazo S, Kuramoto A, Takahashi Y, Ebisu S, Peter MC. In vitro antibacterial effects of the dentin primer of Clearfill Protect Bond. Dental Materials. 2006;22:527–532
  20. Feuerstein O, Matalon S, Slutzky H, Weiss EI. Antibacterial properties of self-etching dental adhesive systems. Journal of the American Dental Association. 2007;138:349–354
  21. Kormaz Y, Ozalp M, Attar N. Comparison of the antibacterial activity of different self-etching primers and adhesives. The Journal of Contemporary Dental Practice. 2008;9:57–65
  22. Weiss EI, Shalhav M, Fuss Z. Assessment of antibacterial activity of endodontic sealers by the direct contact method. Endodontics and Dental Traumatology. 1996;12:179–184
  23. Ajdić D, McShan WM, McLaughlin RE, Savić G, Chang J, Carson MB, et al. Genome sequence of Streptococcus mutans UA159, a cariogenic dental pathogen. Proceedings of the National academy of sciences of the United States of America. 2002;99:14434–14439
  24. Kidd EAM, Joyston-Bechal S, Beighton D. Microbiological validation of assessment of caries activity during cavity preparation. Caries Research. 1993;27:402–408
  25. Paddick JS, Brailsford SR, Kidd EAM, Beighton D. Phenotypic and genotypic selection of microbiota surviving under dental restorations. Applied and Environmental Microbiology. 2005;71:2467–2472
  26. Matalon S, Slutzky H, Mazor Y, Weiss EI. Surface antibacterial properties of packable resin composites. Part I. Endodontics and Dental Traumatology. 2004;35:189–193
  27. Marsh PD. Dental plaque as a microbial biofilm. Caries Research. 2004;38:204–211
  28. Kidd EA. How ‘clean’ must a cavity be before restoration?. Caries Research. 2004;38:305–313

PII: S0300-5712(09)00061-X

doi: 10.1016/j.jdent.2009.03.007

Journal of Dentistry
Volume 37, Issue 7 , Pages 514-521 , July 2009