首页> 外文期刊>American journal of dentistry >Morphology and microtensile bond strength of adhesive systems to in situ-formed caries-affected dentin after the use of a papain-based chemomechanical gel method.
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Morphology and microtensile bond strength of adhesive systems to in situ-formed caries-affected dentin after the use of a papain-based chemomechanical gel method.

机译:使用基于木瓜蛋白酶的化学机械凝胶法后,粘合剂体系对原位形成的龋齿影响的牙本质的形态和微拉伸粘合强度。

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PURPOSE: To evaluate the microtensile bond strength of adhesive systems to caries-affected dentin formed in situ after the use of a papain-based chemomechanical removal method. METHODS: 84 human dentin specimens (5 x 5 x 3 mm) were sterilized and randomly distributed on palatal devices of 14 volunteers. Each palatal device, containing six dentin slabs, was used for 14 days according to a caries induction design involving plaque accumulation and sucrose use. After this, fragments were removed from devices and randomly assigned to two groups according to the caries removal method: (1) Chemomechanical (papain-based gel followed by curette), or (2) Mechanical (curette--control group). Specimens were subdivided into three subgroups according to the adhesive system tested: (SB) a two-step etch-and-rinse (Adper Single Bond 2); (SE) a two-step self-etching adhesive (Clearfil SE Bond) and (TriS) a one-step self-etching adhesive (Clearfil Tri-S Bond) and subsequently restored with microhybrid composite resin. After 24 hours, resin-tooth blocks were sectioned into 0.9 mm thick slabs, with one slab of each block being prepared for adhesive interface analysis by scanning electron microscopy, and the remaining blocks were sectioned into 0.8-mm2 sticks that were subjected to tensile stress (0.5 mm/minute). Data were subjected to two-way ANOVA and Tukey's test at a 5% level of significance. RESULTS: The application of the chemomechanical and mechanical methods to demineralized dentin did not affect the bond strength values. SB and SE adhesives promoted statistically similar and significantly higher bond strength values than the TriS. SEM analysis showed no interference of papain-based gel in the formation of hybrid layer; SB showed the thickest hybrid layer with presence of numerous tags; SE showed an intermediate hybrid layer thickness and quantity of tags and the TriS showed no evidence of tag formation.
机译:目的:评估使用基于木瓜蛋白酶的化学机械去除方法后,粘合剂系统对龋齿影响的牙本质的微拉伸粘合强度。方法:对84例人类牙本质标本(5 x 5 x 3毫米)进行消毒,并随机分布在14名志愿者的pa装置上。根据龋齿诱导设计(涉及斑块积累和蔗糖使用),每个包含六块牙本质板的pa装置使用14天。此后,从龋齿去除方法中将碎片从器械上去除,并随机分为两组:(1)化学机械(木瓜基凝胶,然后是刮匙),或(2)机械(刮匙-对照组)。根据所测试的粘合剂体系,将样品分为三个亚组:(SB)两步蚀刻和冲洗(Adper Single Bond 2); (SE)两步自蚀刻粘合剂(Clearfil SE Bond)和(TriS)单步自蚀刻粘合剂(Clearfil Tri-S Bond),然后用微混合复合树脂修复。 24小时后,将树脂齿块切成0.9毫米厚的平板,每个块准备一块平板,用于通过扫描电子显微镜进行胶粘剂界面分析,并将其余的块切成0.8平方毫米的棒,这些棒经受拉伸应力(0.5毫米/分钟)。数据经过5%显着性水平的双向方差分析和Tukey检验。结果:化学机械方法的应用对脱矿牙本质没有影响粘结强度值。与TriS相比,SB和SE粘合剂在统计学上具有促进作用,并且粘结强度值明显更高。扫描电镜分析表明,木瓜蛋白酶凝胶不会影响杂化层的形成。 SB显示最厚的杂种层,并带有许多标签。 SE显示出中等的杂种层厚度和标签数量,而TriS没有显示出标签形成的迹象。

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