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Short Communication Development of anticariogenic composite resin
Jeong-Won Park
2010;35(2):-68.
DOI: https://doi.org/10.5395/JKACD.2010.35.2.065
Published online: March 31, 2010

Department of Conservative Dentistry, College of Dentistry, Yonsei University, Seoul, Korea.

Corresponding Author: Jeong-Won Park. Department of Conservative Dentistry College of Dentistry, Yonsei University, 712 Unjuro Dogok-dong Gangnam-gu, Seoul, 135-720, Korea. Tel: 82-2-2019-1350, Fax: 82-2-3463-4052, pjw@yuhs.ac
• Received: March 2, 2010   • Revised: March 7, 2010   • Accepted: March 10, 2010

Copyright © 2010 Korean Academy of Conservative Dentistry

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  • Due to the improvement of the composite resin and esthetic desire of the patient, amalgam restoration has been replaced by composite resin. However, still there are many unsolved problems, for example, technique sensitivity, polymerization shrinkage stress and limited mechanical properties. These factors results in fracture of the restoration and secondary caries of the tooth. Also the use of the dental bonding system should be used for the retention of the restoration. In this paper, I want to talk about the present and the future of the remineralizing component released from dental composite resin to overcome the secondary caries and there possibility in the clinical use.
  • 1. Sarrett DC. Clinical challenges and the relevance of materials testing for posterior composite restorations. Dent Mater. 2005;21: 9-20.ArticlePubMed
  • 2. Silvestry-Rodriguez N, Sicairos-Ruelas EE, Gerba CP, Bright KR. Silver as a disinfectant. Rev Environ Contam Toxicol. 2007;191: 23-45.ArticlePubMedPMC
  • 3. Park SH, Kim KY. The anticariogenic effect of fluoride in primer, bonding agent, and composite resins in the cavosurface enamel area. Oper Dent. 1997;22: 115-120.PubMed
  • 4. Skrtic D, Hailer AW, Tagaki S, Antonucci JM, Eanes ED. Quantative assessment of the efficacy of amorphous calcium phosphate/methacrylate composites in remineralizing caries-like lesions artificially produced in bovine enamel. J Dent Res. 1996;75: 1679-1686.ArticlePubMedPDF
  • 5. Dickens SH, Flaim GM, Takagi S. Mechanical properties and biochemical activity of remineralizing resin-based Ca-PO4 cements. Dent Mater. 2003;19: 558-566.ArticlePubMed
  • 6. Xu HH, Moreau JL, Sun L, Chow LC. Strength and fluoride release characteristics of a calcium fluoride-based dental nanocomposite. Biomaterials. 2008;29: 4261-4267.ArticlePubMedPMC
  • 7. Skrtic D, Antonucci JM, Eanes ED. Improved properties of amorphous calcium phosphate filers in remineralizing resin composites. Dent Mater. 1996;12: 295-301.PubMed
  • 8. O'Donnell JNR, Antonucci JM, Skrtic D. Mechanical properties of amorphous calcium phosphate composite(abstract). J Dent Res. 2005;84(Spec Iss A):Abstract 586.
  • 9. Xu HH, Sun L, Weir MD, Antonucci JM, Tagaki S, Chow LC, Peltz M. Nano DCPA-whisker composites with high strength and Ca and PO4 release. J Dent Res. 2006;85: 722-727.PubMed
  • 10. Xu HH, Weir MD, Sun L, Takagi S, Chow LC. Effect of calcium phosphate nanoparticles on Ca-PO4 composite. J Dent Res. 2007;86: 378-383.ArticlePubMedPDF
  • 11. Xu HH, Weir MD, Sun L. Nanocomposites with Ca-PO4 release: effects of reinforcement, dicalcium phosphate particle size and silinization. Dent Mater. 2007;23: 1482-1491.PubMedPMC

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REFERENCES

  • 1. Sarrett DC. Clinical challenges and the relevance of materials testing for posterior composite restorations. Dent Mater. 2005;21: 9-20.ArticlePubMed
  • 2. Silvestry-Rodriguez N, Sicairos-Ruelas EE, Gerba CP, Bright KR. Silver as a disinfectant. Rev Environ Contam Toxicol. 2007;191: 23-45.ArticlePubMedPMC
  • 3. Park SH, Kim KY. The anticariogenic effect of fluoride in primer, bonding agent, and composite resins in the cavosurface enamel area. Oper Dent. 1997;22: 115-120.PubMed
  • 4. Skrtic D, Hailer AW, Tagaki S, Antonucci JM, Eanes ED. Quantative assessment of the efficacy of amorphous calcium phosphate/methacrylate composites in remineralizing caries-like lesions artificially produced in bovine enamel. J Dent Res. 1996;75: 1679-1686.ArticlePubMedPDF
  • 5. Dickens SH, Flaim GM, Takagi S. Mechanical properties and biochemical activity of remineralizing resin-based Ca-PO4 cements. Dent Mater. 2003;19: 558-566.ArticlePubMed
  • 6. Xu HH, Moreau JL, Sun L, Chow LC. Strength and fluoride release characteristics of a calcium fluoride-based dental nanocomposite. Biomaterials. 2008;29: 4261-4267.ArticlePubMedPMC
  • 7. Skrtic D, Antonucci JM, Eanes ED. Improved properties of amorphous calcium phosphate filers in remineralizing resin composites. Dent Mater. 1996;12: 295-301.PubMed
  • 8. O'Donnell JNR, Antonucci JM, Skrtic D. Mechanical properties of amorphous calcium phosphate composite(abstract). J Dent Res. 2005;84(Spec Iss A):Abstract 586.
  • 9. Xu HH, Sun L, Weir MD, Antonucci JM, Tagaki S, Chow LC, Peltz M. Nano DCPA-whisker composites with high strength and Ca and PO4 release. J Dent Res. 2006;85: 722-727.PubMed
  • 10. Xu HH, Weir MD, Sun L, Takagi S, Chow LC. Effect of calcium phosphate nanoparticles on Ca-PO4 composite. J Dent Res. 2007;86: 378-383.ArticlePubMedPDF
  • 11. Xu HH, Weir MD, Sun L. Nanocomposites with Ca-PO4 release: effects of reinforcement, dicalcium phosphate particle size and silinization. Dent Mater. 2007;23: 1482-1491.PubMedPMC

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      Development of anticariogenic composite resin
      J Korean Acad Conserv Dent. 2010;35(2):65-68.   Published online March 31, 2010
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