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Chlorhexidine 처리가 상아질 접착제의 미세인장결합강도에 미치는 영향 (Effect if chlorhexidine on microtensile bond strength of dentin bonding systems)

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기타파일
최초등록일 2025.05.05 최종저작일 2008.03
14P 미리보기
Chlorhexidine 처리가 상아질 접착제의 미세인장결합강도에 미치는 영향
  • 미리보기

    서지정보

    · 발행기관 : 대한치과보존학회
    · 수록지 정보 : Restorative Dentistry and Endodontics / 33권 / 2호 / 148 ~ 161페이지
    · 저자명 : 오은화, 최경규, 김종률, 박상진

    초록

    The purpose of this study was to evaluate the effect of chlorhexidine (CHX) on microtensile bond strength (μTBS) of dentin bonding systems.
    Dentin collagenolytic and gelatinolytic activities can be suppressed by protease inhibitors, indicating that MMPs (Matrix metalloproteinases) inhibition could be beneficial in the preservation of hybrid layers. Chlorhexidine (CHX) is known as an inhibitor of MMPs activity in vitro.
    The experiment was proceeded as follows :
    At first, flat occlusal surfaces were prepared on mid-coronal dentin of extracted third molars. GI
    (Glass Ionomer) group was treated with dentin conditioner, and then, applied with 2 % CHX. Both SM (Scotchbond Multipurpose) and SB (Single Bond) group were applied with CHX after acidetched with 37% phosphoric acid. TS (Clearfil Tri-S) group was applied with CHX, and then, with adhesives. Hybrid composite Z-250 and resin-modified glass ionomer Fuji-II LC was built up on experimental dentin surfaces. Half of them were subjected to 10,000 thermocycle, while the others were tested immediately. With the resulting data, statistically two-way ANOVA was performed to assess the μTBS before and after thermocycling and the effect of CHX. All statistical tests were carried out at the 95 % level of confidence. The failure mode of the testing samples was observed under a scanning electron microscopy (SEM).
    Within limited results, the results of this study were as follows;
    1. In all experimental groups applied with 2 % chlorhexidine, the microtensile bond strength
    increased, and thermocycling decreased the microtensile bond strength (P > 0.05).
    2. Compared to the thermocycling groups without chlorhexidine, those with both thermocycling and chlorhexidine showed higher microtensile bond strength, and there was significant difference especially in GI and TS groups.
    3. SEM analysis of failure mode distribution revealed the adhesive failure at hybrid layer in most
    of the specimen, and the shift of the failure site from bottom to top of the hybrid layer with chlorhexidine groups.
    2 % chlorhexidine application after acid-etching proved to preserve the durability of the hybrid
    layer and microtensile bond strength of dentin bonding systems.

    영어초록

    The purpose of this study was to evaluate the effect of chlorhexidine (CHX) on microtensile bond strength (μTBS) of dentin bonding systems.
    Dentin collagenolytic and gelatinolytic activities can be suppressed by protease inhibitors, indicating that MMPs (Matrix metalloproteinases) inhibition could be beneficial in the preservation of hybrid layers. Chlorhexidine (CHX) is known as an inhibitor of MMPs activity in vitro.
    The experiment was proceeded as follows :
    At first, flat occlusal surfaces were prepared on mid-coronal dentin of extracted third molars. GI
    (Glass Ionomer) group was treated with dentin conditioner, and then, applied with 2 % CHX. Both SM (Scotchbond Multipurpose) and SB (Single Bond) group were applied with CHX after acidetched with 37% phosphoric acid. TS (Clearfil Tri-S) group was applied with CHX, and then, with adhesives. Hybrid composite Z-250 and resin-modified glass ionomer Fuji-II LC was built up on experimental dentin surfaces. Half of them were subjected to 10,000 thermocycle, while the others were tested immediately. With the resulting data, statistically two-way ANOVA was performed to assess the μTBS before and after thermocycling and the effect of CHX. All statistical tests were carried out at the 95 % level of confidence. The failure mode of the testing samples was observed under a scanning electron microscopy (SEM).
    Within limited results, the results of this study were as follows;
    1. In all experimental groups applied with 2 % chlorhexidine, the microtensile bond strength
    increased, and thermocycling decreased the microtensile bond strength (P > 0.05).
    2. Compared to the thermocycling groups without chlorhexidine, those with both thermocycling and chlorhexidine showed higher microtensile bond strength, and there was significant difference especially in GI and TS groups.
    3. SEM analysis of failure mode distribution revealed the adhesive failure at hybrid layer in most
    of the specimen, and the shift of the failure site from bottom to top of the hybrid layer with chlorhexidine groups.
    2 % chlorhexidine application after acid-etching proved to preserve the durability of the hybrid
    layer and microtensile bond strength of dentin bonding systems.

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