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Retentive bond strength of fiber-reinforced composite posts cemented with different surface treatments

Fiber reinforced composite post의 표면 처리에 따른 접착 강도

  • Roh, Hyunsik (Department of Prosthodontics, School of Dentistry, Kyung Hee University) ;
  • Noh, Kwantae (Department of Prosthodontics, School of Dentistry, Kyung Hee University) ;
  • Woo, Yi-Hyung (Department of Prosthodontics, School of Dentistry, Kyung Hee University) ;
  • Pae, Ahran (Department of Prosthodontics, School of Dentistry, Kyung Hee University)
  • 노현식 (경희대학교 치의학전문대학원 치의학과 치과보철학교실) ;
  • 노관태 (경희대학교 치의학전문대학원 치의학과 치과보철학교실) ;
  • 우이형 (경희대학교 치의학전문대학원 치의학과 치과보철학교실) ;
  • 배아란 (경희대학교 치의학전문대학원 치의학과 치과보철학교실)
  • Received : 2014.03.26
  • Accepted : 2014.04.17
  • Published : 2014.04.30

Abstract

This study will evaluate the effectiveness of various pretreatments when fiber-reinforced composite (FRC) post is bonded to endodontically treated tooth with resin cement. Materials and methods: Canal shaping of FRC post (DT Light post, Size 3, Bisco Inc., Schaumburg, IL, USA) was performed on endodontically treated premolars at 1.5 cm from CEJ. Samples were divided into 6 groups of surface treatment after conventional washing and drying to the canal. Total of 24 FRC posts were randomly divided into 6 groups of surface treatment as follows: Group C: control - no surface treatment, Group A: airborne-particle abrasion (Cojet sand, 3M ESPE), Group S: silanization (Bis-silane, Bisco Inc.), Group M: universal primer (Monobond-plus primer, Ivoclar Vivadent Inc.), Group AS: silanization after airborne-particle abrasion, Group AM: universal primer treatment after airborne-particle abrasion. Pretreated fiber posts were cemented with resin-based luting material and photo-polymerized and cut to the thickness of 1 mm. Push-out test using a universal testing machine was performed. Bonding failure strength of post dislodgement was measured and the type of bonding failure was classified. Data were analyzed with Kruskal-Wallis test and multiple comparison groups were performed using Tukey HSD value of rank test (${\alpha}=0.05$). Results: Group AS showed significantly highest bonding strength. Group S, group AM, group A, and group M showed lower bonding strength in order. The control group showed the lowest bonding strength. Conclusion: Surface treatment with silane showed to be the most effective of the surface pretreatment methods for cementation of FRC post. Surface treatment with universal primer showed no significant difference compared with no surface treatment group as for bonding strength.

연구 목적: 본 연구는 근관치료된 치아에 레진 시멘트로 fiber reinforced composite post (FRC) post의 접착시 포스트의 다양한 표면처리를 비교하여, 새롭게 제안되고 있는 다용도 프라이머의 효용성에 대해 평가하고자 하였다. 연구 재료 및 방법: 근관치료된 소구치 중 치근길이 1.8 cm 이상 되는 치아만을 총 24개 선택하였다. 표면 처리하지 않은 대조군과 표면처리를 시행한 FRC posts (DT Light Post, Size3, Bisco Inc., Schaumburg, IL, US)를 다음과 같이 6개의 그룹으로 무작위 분류하였다: Group A: airborne-particle abrasion (Cojet sand, 3M ESPE), Group S: silanization (Bis-silane, Bisco Inc.), Group M: universal primer (Monobond-plus primer, Ivoclar Vivadent Inc.), Group AS: silanization after airborne-particle abrasion, Group AM: universal primer treatment after airborne-particle abrasion. 하였다. CEJ에서 1.5 cm 근관성형 후 레진 시멘트를 이용하여 표면처리된 총 24개의 FRC post를 접착하고 광중합하였다. 생리식염수에 24시간 보관한 후 포스트 장축에 수직으로 1 mm 두께로 절단하여 만능시험기로 push-out test를 시행하였다. 포스트가 탈락되는 접착 실패 강도를 측정하고 SEM을 관찰하여 접착 실패 양상을 분류하고, 접착 강도를 Kruskal-Wallis test와 Tukey HSD value of rank test를 이용하여 통계 분석하였다(${\alpha}=0.05$). 결과: Airborne-particle abrasion후 실란 처리한 실험군에서 유의할만하게 높은 접착 강도를 보였다. 실란 처리, airborne-particle abrasion후 다용도 프라이머를 처리한 실험군의 순서로 접착 강도가 높게 나타났다. FRC post의 표면에 특정 전처리를 하지 않은 대조군에서 가장 낮은 결합 강도를 보이고, 이어서 다용도 프라이머, airborne-particle abrasion 순으로 낮은 평균 접착 강도를 보였다. 결론: FRC post의 접착 전 표면 처리 과정으로서 실란 처리를 거친 실험군에서 높은 결합 강도를 보였으며, 다용도 프라이머를 이용한 표면 처리는 실란과 비교하여 유의성 있는 접착 강도의 변화를 보이지 않았다.

Keywords

References

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