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Influence of Sodium Hypochorite & EDTA on the Microtensile Bond Strength of Ethanol Wet Bonding

Ethanol Wet Bonding에서 NaOCl과 EDTA가 결합강도에 미치는 영향

  • Kim, Deok-Joong (Dept. of Conservative Dentistry, Chonbuk National University) ;
  • Song, Yong-Beom (Dept. of Conservative Dentistry, Chonbuk National University) ;
  • Park, Sang-Hee (Dept. of Conservative Dentistry, Chonbuk National University) ;
  • Kim, Hyoung-Sun (Dept. of Conservative Dentistry, Chonbuk National University) ;
  • Lee, Hye-Yoon (Dept. of Conservative Dentistry, Chonbuk National University) ;
  • Yu, Mi-Kyung (Dept. of Conservative Dentistry, Chonbuk National University) ;
  • Lee, Kwang-Won (Dept. of Conservative Dentistry, Chonbuk National University)
  • 김덕중 (전북대학교 치의학전문대학원 치과보존학 교실) ;
  • 송용범 (전북대학교 치의학전문대학원 치과보존학 교실) ;
  • 박상희 (전북대학교 치의학전문대학원 치과보존학 교실) ;
  • 김형선 (전북대학교 치의학전문대학원 치과보존학 교실) ;
  • 이혜윤 (전북대학교 치의학전문대학원 치과보존학 교실) ;
  • 유미경 (전북대학교 치의학전문대학원 치과보존학 교실) ;
  • 이광원 (전북대학교 치의학전문대학원 치과보존학 교실)
  • Received : 2012.12.11
  • Accepted : 2013.03.25
  • Published : 2013.03.30

Abstract

Sodium hypochlorite and ethylene diamine tetra acetic acid are substances usually used during endodontic treatment. Several studies found that the bonding was negated with certain irrigants and some of the used irrigants have demineralizing and chealating effects, so it was advocated to omit the etching step in etch and rinse adhesive systems. The purpose of this in vitro study was to evaluate the influence of NaOCl & EDTA on the bonding strength of ethanol wet bonding. Thirty human molars were selected and mesiodistally sectioned into halves, thus providing sixty specimens. The specimens were randomly assigned to 4 groups(n=15) according to the irrigant regimen used : (1) irrigated with distilled water for 10min (control); (2) irrigated with 5.25% NaOCl(10min), flushed with 5.25% NaOCl(1min) (3) irrigated with 5.25% NaOCl, flushed with 17% EDTA (4) irrigated with 5.25% NaOCl, flushed with 17% EDTA. Each group was acid-etched with 37% phosphoric acid(except group 4) and had their dentin surfaces dehydrated with ethanol solutions : 50%, 70%, 80%, 95%, 3x100%, 30s for each application. After dehydration, a primer( 50% all bond 3 resin + 50% ethanol) was used, followed by the adhesive(ALL-BOND 3 RESIN) application. Resin composite build-ups were then prepared using an incremental technique. Specimens were sectioned into beams and submitted to a tensile load using a Micro Tensile Tester(Bisco Inc.). The data were statistically analyzed using one-way ANOVA and Tukey HSD at p<0.5 level. There was no significant difference on G1(control) and G2(irrigated with NaOCl only ). (p>0.05). G3(flushed with EDTA) showed significantly high tensile bonding strength compared to the G2 (p<0.05). G4( treated with EDTA but no acid-etching) was significantly lower value than G3. (p<0.05) Although there was no significant difference, 5.25% NaOCl seemed to have an adverse effect on the bonding strength of ethanol wet bonding. The flushing with EDTA after NaOCl irrigation prevents the decrease of bonding strength. The use of 17% EDTA as a final flush can enhance the bonding strength but EDTA flushing can't substitute for a acid-etching.

근관치료 후 적절한 치관부 밀폐를 위해 레진을 이용한 코어수복방법이 현재 많이 사용되고 있다. 하지만, 근관치료 과정에서 사용되는 NaOCl이나 EDTA같은 근관세척제는 레진 접착에 영향을 주는 것으로 알려져 있으며, 이에 관한 많은 연구들이 이루어져 왔다. 본 연구에서는 ethanol wet bonding을 치수강 상아질에 적용 시에 NaOCl과 EDTA가 결합강도에 미치는 영향에 대해 조사하였다. 30개의 인간 대구치로부터 총 60개의 시편을 얻었고, 이를 무작위로 4개의 군으로 분류했다. G1: 증류수로 세척후 증류수로 마무리 세척, G2: NaOCl로 세척 후 NaOCl로 마무리세척, G3: NaOCl로 세척 후 EDTA로 마무리세척, G4: NaOCl로 세척 후 EDTA로 마무리세척하고 접착과정에서 산부식과정 생략. 접착과정은 인산부식 후 에탄올의 농도를 50%, 70%, 80%, 95% 그리고 100%로 순차적으로 증가시켜가면서 상아질을 탈수시키고 에탄올에 적셔지도록 하였다. 프라이머는 HEMA가 포함되지 않은 상용화된 접착제인 ALL-BOND 3 RESIN과 에탄올을 반반씩 섞어 만들었다. 프라이머 적용 후 ALL-BOND 3 RESIN을 접착제로 사용하였다. 저점도 복합레진을 이용하여 6mm 두께로 적층충전한 후 빔 형태로 잘라 미세인장결합강도 실험을 하였다. NaOCl 처리한 그룹은 미세인장결합강도에 통계적으로 유의한 차이를 보여주지는 않았지만 낮은 평균값을 보여주었다(p=0.052). NaOCl 처리 후 1분간 EDTA로 처리한 그룹은 다른 그룹보다 유의하게 높은 결합강도를 보여주었다(p<0.05). EDTA 처리가 결합강도를 향상 시켰지만, 산부식 과정을 생략할 경우 유의하게 낮은 결합 강도를 보여주었으며, 이는 EDTA처리가 산부식 과정을 대신할 수는 없다는 것을 보여준다.

Keywords

References

  1. Belli S, Zhang Y, Pereira PNR, et al. Regional bond strengths of adhesive resins to pulp chamber dentin. J Endod 2001;27:527-32. https://doi.org/10.1097/00004770-200108000-00007
  2. Santos JN, Carrilho MRO, De Goes MF, et al. Effect of chemical irrigants on the bond strength of a self-etching adhesive to pulp chamber dentin. J Endod 2006;32:1088-90. https://doi.org/10.1016/j.joen.2006.07.001
  3. Kwon SM, Kim TG, Y MK, et al. Changes in μ -TBS to pulp chamber dentin after the application of NaOCl & reversal effect by using sodium ascorbate. J Kor Ac of Cons Dent 2009;34:515-25. https://doi.org/10.5395/JKACD.2009.34.6.515
  4. Fawzi EM, Elkassas EW, Ghoneim AG Bonding strategies to pulp chamber dentin treated with different endodontic irrigants: microshear bond strength testing and SEM analysis. J Adhes Dent 2010;12:63-70.
  5. Teixeira CS, Felippe MCS, Felippe WT. The effect of application time of EDTA and NaOCl on intracanal smear layer removal: an SEM analysis. Int Endod J 2005;38:285-90. https://doi.org/10.1111/j.1365-2591.2005.00930.x
  6. Estrela C, Estrela CR, Barbin EL, et al. Mechanism of action of sodium hypochlorite. Braz Dent J 2002;13:113-7. https://doi.org/10.1590/S0103-64402002000200007
  7. Estrela C, Estrela CR, Decurcio DA, et al. Antimicrobial efficacy of ozonated water, gaseous ozone, sodium hypochlorite and chlorohexidine in infected human root canals. Int Endod J 2007;40:85-93. https://doi.org/10.1111/j.1365-2591.2006.01185.x
  8. Baumfartner JC, Hohakl S, Marshall JG. Comparison of the antimicrobial efficacy of 1.3% NaOCl/BioPure MTAD to 5.35% NaOCl/ 15% EDTA for root canal irrigation. J Endod 2007;33:48-51.
  9. Morris MD, Lee KW, Agree KA, et al. Effects of sodium hypochlorite and RC-Prep on bond strengths of resin cement to endodontic surfaces. J Endod 2001;27:753-7. https://doi.org/10.1097/00004770-200112000-00010
  10. Ito S, Hashimoto M, Wadgaonkar B, et al, Effects or resin hydrophilicity on water sorption and changes in modulus of elasticity. Biomaterials. 2005;26:6449-59. https://doi.org/10.1016/j.biomaterials.2005.04.052
  11. Tay FR, Pashley DH, Kapur RR, et al. Bonding BisGMA to dentin-a proof of concept for hydrophobic dentin bonding. J Dent Res 2007;86:1034-9. https://doi.org/10.1177/154405910708601103
  12. Pashley DH, Tay FR, Carvalho RM, et al. From dry bonding to water-wet bonding to ethanol-wet bonding. A review of the interactions between dentin matrix and solvated resins using a macromodel of the hybrid layer. Am J Dent 2007;20:7-20.
  13. Nakajima M, Kanemura N, Pereira PN, et al. Comparative microtensile bond strength and SEM analysis of bonding to wet and dry dentin. Am J Dent 2000;13:324-8.
  14. Meerbeek B, Yoshida Y, Lambrechts P, et al. A TEM study of two water-based adhesive systems bonded to dry and wet dentin. J Dent Res 1998;77:55-9.
  15. Tay FR, Gwinnett JA, Wei SH. Micromorphological spectrum from overdrying to overwetting acidconditioned dentin in water-free acetone-based, single -bottle primer/adhesive. Dent Mater 1996;12:236-44. https://doi.org/10.1016/S0109-5641(96)80029-7
  16. Hadhimoto M, Tay FR, Ito S, et al. Permeability of adhesive resin films. J Biomed Mater Res 2005;74:699-705.
  17. Malacarne J, Carvalho RM, de Goes MF, et al. Water sorption/solubility of dental adhesive resins. Dent Mater 2006;22:973-80 https://doi.org/10.1016/j.dental.2005.11.020
  18. Munck J, Meerbeek B, Yoshida Y, et al. Four-year water degradation of total-etch adhesives bonded to dentin. J Dent Res 2003;82:136-40 https://doi.org/10.1177/154405910308200212
  19. Koshiro K, Inoue S, Sano H, et al. In vivo degradation of resin-dentin bonds produced by a self-etch and an etch-and-rinse adhesive. Eur J Oral Sci 2005;113:341-8 https://doi.org/10.1111/j.1600-0722.2005.00222.x
  20. Munck J, Landuyt K, Peumans M, et al. A critical review of the durability of adhesion to tooth tissue: methods and results. J Dent Res 2005;84:118-32 https://doi.org/10.1177/154405910508400204
  21. Tay FR, Pashley DH. Have dentin adhesives become too hydrophilic? J Can Dent Assoc 2003;69:726-31
  22. Sadek FT, Pashley DH, Nishitani Y, et al. Application of hydrophobic resin adhesives to acid-etched dentin with an alternative wet bonding technique. J Bio Mater Res 2008;84:19-29
  23. Sadek FT, Mazzoni A, Breschi L, et al. Six-month evaluation of adhesives interface created by a hydrophobic adhesives to acid-etched ethanol-wet bonded dentine with simplified dehydration protocols. J Dent 2010;38:276-83 https://doi.org/10.1016/j.jdent.2009.11.007
  24. Lai SCN, Mak UF, Cheung GSP, et al. Reversal of compromised bonding to oxidized etched dentin. J Dent Rest 2001;80:1919-24. https://doi.org/10.1177/00220345010800101101
  25. Jeon SY, Lee KW, Yu MK. Influence of sodium ascorbate on microtensile bond strengths to pulp chamber dentin treated with NaOCl. J Kor Ac of Cons Dent 2008;33:545-52. https://doi.org/10.5395/JKACD.2008.33.6.545
  26. Farina AP, Cecchin D, Barbizam JVB, et al. Influence of endodotnic irrigants on bond strength of a self-etching adhesive. Aust Endod J 2011;37:26-30.
  27. Hawkins Cl, Davies MJ. Hypochlorite-induced oxidation of proteins in plasma: formation of chloramines and nitrogen-centered radicals and their role in protein fragmentation. Biochem J 1999;340: 539-48. https://doi.org/10.1042/0264-6021:3400539
  28. Ari H, Erdemir A. Effect of endodontic irrigant solutions on mineral content of root canal dentin using ICP-AES technique. J Endod 2005;31:187-9. https://doi.org/10.1097/01.don.0000137643.54109.81
  29. Sim TPC, Knowles JC, Ng T-L, et al. Effect of sodium hypochlorite on mechanical properties of dentine and tooth surface strain. Int Endod J 2001; 34:120-32. https://doi.org/10.1046/j.1365-2591.2001.00357.x
  30. Miyasak K, Nakabayashi N. Combination of EDTA conditioner and Phenyl-HEMA self-etching primer for bonding to dentin. Dent Mater 1999;15:153-7. https://doi.org/10.1016/S0300-5712(99)00025-1
  31. Weston CH, Ito S, Wadgaonkar B, et al. Effects of time and concentration of sodium ascorbate on reversal of NaOCl-induced reduction in bond strengths. J Endod 2007;33:879-81 https://doi.org/10.1016/j.joen.2007.04.004