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상아질 위치에 따른 접착성 수복재의 미세전단결합강도에 관한 연구

Micro-shear bond strength of resin-modified glass ionomer and resin-based adhesives to dentin

  • 홍현경 (경희대학교 대학원 치의학과 치과보존학교실) ;
  • 최경규 (경희대학교 대학원 치의학과 치과보존학교실) ;
  • 박상혁 (경희대학교 대학원 치의학과 치과보존학교실) ;
  • 박상진 (경희대학교 대학원 치의학과 치과보존학교실)
  • Hong, Hyun-Kyung (Department of Conservative Dentistry, Division of Dentistry, Graduate School of Kyung Hee University) ;
  • Choi, Kyoung-Kyu (Department of Conservative Dentistry, Division of Dentistry, Graduate School of Kyung Hee University) ;
  • Park, Sang-Hyuk (Department of Conservative Dentistry, Division of Dentistry, Graduate School of Kyung Hee University) ;
  • Park, Sang-Jin (Department of Conservative Dentistry, Division of Dentistry, Graduate School of Kyung Hee University)
  • 발행 : 2003.07.01

초록

이 연구의 목적은 수종 상아질 접착 시스템과 복합 레진 및 resin-modified glass ionomer를 상아질 표면에 접착하여 재료 및 상아질내 위치에 따른 미세전단결합강도를 측정, 비교하는 것이다. 상아질 접착 시스템으로는, 3-step인 Scotchbond Multi-Purpose Plus, 2-step인 Single Bond와 자가 부식형 시스템인 Clearfil SE Bond를, 1-step인 Prompt L-Pop을 사용하였다. 이와 함께 hybrid type의 복합 레진인 Clearfil AP-X와 2250을 사용하였으며 resin-modified glass ionomer로는 Fuji II LC를 사용하였다. 상악 소구치를 치아의 근원심 중앙부를 절단하여 상아질면을 노출시켰다. 5개 실험군으로 분류하고 상아질면을 위치에 따라 치관부의 occlusal $\frac{1}{3}$, middle $\frac{1}{3}$, cervical $\frac{1}{3}$과 치근부로 구분지어 시편을 부착하였다. 미세전단결합강도측정는 Universal testing machine(EZ-test; Shimadzu, Japan)에서 측정하였다. Occlusal 1/3부위에서는 SE가 가장 높은 값을, SM과 SB간에는 유의차가 없었으며, PL, GI순으로, Middle 1/3부위에서는 $SM{\;}{\geq}{\;}SE{\;}{\geq}{\;}SB{\;}{\geq}{\;}PL{\;}{\geq}{\;}GI$순으로, cervical 1/3부위에서는 SM, SE, SB간에 유의차가 없었다. Root dentin에서는 SM이 가장 높은 값을 보였으며 SE, PL, GI간에 유의차가 없었다. SE만이 치관부 상아질에 비해 치근부에서 유의할만한 결합강도의 감소를 나타냈다(p<0.05). GI는 치관부 상아질에서는 다른 군에 비해 유의성 있게 낮은 결합강도를 보였으나 치근부에서는 SE, PL과 유의차가 없었다.

키워드

참고문헌

  1. Duke E.S. and Lindemuth J. : Variability of clinical dentin substrates. Am J Dent, 4 : 241-246, 1991
  2. Yoshiyama M., Carvalho R.M., Sano H. and Pashley D.H. : Regional bond strengths of resin to human root dentin. J Dent. 24 : 435-442, 1996 https://doi.org/10.1016/0300-5712(95)00102-6
  3. Nakajima M., Takada T., Tagarni J. and Hoseda H. : A study on bonding to dentine in various teeth and sites. Japan J Conserv Dent, 34 : 266-274, 1991
  4. Yoshiyama M., Matsuo T., Ebisu S. and Pashley D. : Regional bond strengths of self-etching/self-priming adhesive systems. J Dent, 26 : 609-616, 1998 https://doi.org/10.1016/S0300-5712(97)00046-8
  5. Yoshiyama M., Carvalho R., Sano H., Horner J., Brewer P.D. and Pashley D.H. : Interfacial morphology and strength of bonds made to superficial versus deep dentin. Am J Dent, 8 : 297-302, 1995
  6. Pashley D.H. : Dentin bonding : Overview of the substrate with respect to adhesive materials. J Esthet Dent, 3 : 46-50, 1991 https://doi.org/10.1111/j.1708-8240.1991.tb00808.x
  7. Tay F.R. and Pashley D.L. : Aggressiveness of contemporary self-etching systems. I : Depth of penetration beyond dentin smear layers. Dent Mater, 17 : 296-308, 2001 https://doi.org/10.1016/S0109-5641(00)00087-7
  8. Perdiago J., Lopes L., Lambrechts P., Van Meerbeek B. and Vanherle G. : Effects of a self-etching primer on enamel shear bond strengths and SEM morphology. Am J Dent. 10 : 141-146, 1997
  9. Marshall Jr G.W., Marshall S.J. and Kinney J.H. : The dentin substrate : structure and properties related to bonding. J Dent, 25 : 441-458, 1997 https://doi.org/10.1016/S0300-5712(96)00065-6
  10. Swift E.J., Perdiagao J. and Heymann H.O. : Bonding to enamel and dentin : A brief history and state of the art. Quint Jnt 26 : 95-110, 1995
  11. Kubo S., Finger W.J., Moller M. and Podzun W. : Principles and mechanism of bonding with dentin adhesive materials. J Esthet Dent, 3 : 62-69, 1992 https://doi.org/10.1111/j.1708-8240.1991.tb00812.x
  12. Sano H., Takatsu T. and Ciucchi B., : Nanoleakage : leakage within the hybrid layer. Oper Dent, 20 : 18-25, 1995
  13. Nakabayashi N., Kojima K. and Masuhara E. : The promotion of adhesion by the infiltration of monomers into tooth substrates. J Biomed Mater Res, 16 : 265-273, 1982 https://doi.org/10.1002/jbm.820160307
  14. Carvalho R.M., Fernandes C.A. and Villanueva R. : Tensile strength of human dentin as a function of tubule orientation and density. J Adhes Dent, 3(4) : 309-14, 2001
  15. Pereira P.N.R., Okuda M. and Sano H. : Effect of intrinsic wetness and regional difference on dentin bond strength. Dent Mater, 15 : 46-53, 1999 https://doi.org/10.1016/S0109-5641(99)00013-5
  16. Bouillaquet S., Gysi P. and Wataha J.C. : Bond strength of composite to dentin using conventional. one-step, and self-etching adhesive systems. J Dent, 29 : 55-61, 2001 https://doi.org/10.1016/S0300-5712(00)00049-X
  17. Burrow M.F., Sano H., Nakajima M., Harada N. and Tagami J. : Bond strength to crown and root dentin. Am J Dent, 9 : 223-229, 1996
  18. Pashley D.H. and Carvalho R.M. : Dentine permeability and dentine adhesion. J Dent, 25 : 355-372, 1995 https://doi.org/10.1016/S0300-5712(96)00057-7
  19. Pashley D.H., Ciucchi B., Sano H., Carvalho R.M. and Russel C.M. : Bond strength vs. dentin structure: A modeling approach. Arch Oral Biol. 40 : 242-271, 1995
  20. Vargas M.A. : Interfacial micromorphology and shear bond strength of single-bottle primer/adhesives. Dent Mater, 13 : 316-324, 1997 https://doi.org/10.1016/S0109-5641(97)80102-9
  21. Van Meerbeek B., Yoshida Y. and Snauwaert J. : Hybridization effectiveness of a two-step versus three step smear layer removing adhesive materials examined correlatively by TEM and AFM. J Dent Res, 78 : 906-911, 1999 https://doi.org/10.1177/00220345990780041101
  22. Phrukkanon S., Burrow M.F. and Tyas M.J. : The effect of dentine location and tubule orientation on the bond strengths between resin and dentine. J Dent, 27 : 265-274, 1999 https://doi.org/10.1016/S0300-5712(98)00060-8
  23. Y. Shimada and P. Senawongse : Bond strength of two adhesive systems to primary and permanent enamel. Oper Dent, 27 : 403-409, 2002
  24. McDonough W.G., Antonucci K.M. and Shimada Y. : A microshear test to measure bond strengths of dentin-polymer interfaces. Biometer, 23(17) : 3603-3608, 2002 https://doi.org/10.1016/S0142-9612(02)00089-3
  25. Sidhu S.K. and Watson T.F. : Interfacial characteristics of resin-modified glass-ionomer cements. J Dent Res, 77 : 1749-59, 1998 https://doi.org/10.1177/00220345980770091101
  26. Burgess J.O. : Dental materials for the restoration of root surface caries. Am J Dent, 8(6) : 342-51, 1995
  27. Oilo G. : Bond strength testing-what does it mean? Int Dent J, 43 : 492-498, 1993
  28. Paulo E.C. Cardoso and Rebento R. Braga : Evaluation of micro-tensile, shear and tensile tests determining the bond strength of three adhesive systems. Dent Mater, 14 : 394-298, 1998 https://doi.org/10.1016/S0300-5712(99)00012-3
  29. Sano H., Shono T. and Sonoda H. : Relationship between surface area for adhesion and tensile bond strength -evaluation of a microtensile bond test. Dent Mater, 10 : 236-240, 1994 https://doi.org/10.1016/0109-5641(94)90067-1
  30. Y. Shono and M. Terashita. : Regional measurement of resin-dentin bond strength. a trial of new version of micro-tensile test method. Proceedings of the Adhesive dent, 74-84, 1999
  31. Dunne S.M., Goolnik J.S., Millar B.J. and Seddon R.P. : Caries inhibition by a resin-modified and conventional glass ionomer cement. in vitro. J Dent, 24 91-94, 1996 https://doi.org/10.1016/0300-5712(95)00051-8
  32. Gianini M., Carvalho R.M. and Martins L.R : The influence of tubule density and area of solid dentin on bond strength of two adhesive systems to dentin. J Adhes Dent, 3(4) : 315-324, 2001
  33. Friedl K.H., Powers J.M. and Hiller K.A. : Influence of selected variables on adhesion testing. Dent Mater, 8 : 265-269, 1995
  34. Furseth R. : The structure of peripheral root detine in young dentine. Scand J Dent Res, 82 : 557-561, 1974
  35. Fogel H.M., Marshall F.J. and Pashley D.H. : Effect of distance from pulp and thickness on hydraulic conductance of human radicular dentin. J Dent Res, 67: 1381-1385, 1987 https://doi.org/10.1177/00220345880670110401
  36. Ferrari M., Cagidiaco C.M. and Mason P.N. : Morphologic aspects of the resin-dentin interdiffusion zone with five different adhesive systems tested in vivo. J Prosthet Dent, 71 : 404-408, 1994 https://doi.org/10.1016/0022-3913(94)90104-X
  37. Inoue S., Vargas M.A., Abe Y. and Yoshida Y. : Microtensile bond strength of eleven contemporary adhesives to dentin. J Adhes Dent, 3(3) : 237-45, 2001
  38. Mount G.J. : Glass-ionomer cements : past, present, and future. Oper Dent, 19 : 82-90, 1994
  39. Pereira P.N.R., Yamada T., Tei R. and Tagami J. : Bond strength and interfacial micromorphology of an improved resin-modified glass ionomer cement. Am J Dent, 10 : 128-132, 1997