首页> 外文期刊>Odontology >Dentin bond strength of an experimental adhesive system containing calcium chloride, synthetic peptides derived from dentin matrix protein 1 (pA and pB), and hydroxyapatite for direct pulp capping and as a bonding agent.
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Dentin bond strength of an experimental adhesive system containing calcium chloride, synthetic peptides derived from dentin matrix protein 1 (pA and pB), and hydroxyapatite for direct pulp capping and as a bonding agent.

机译:实验性粘合剂体系的牙本质粘合强度,该体系包含氯化钙,衍生自牙本质基质蛋白1的合成肽(pA和pB)以及羟基磷灰石,可直接封端并用作粘合剂。

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The purpose of this study was to evaluate the microtensile bond strength (microTBS) of an experimental adhesive system containing calcium chloride (CaCl(2)), synthetic peptides derived from dentin matrix protein 1 (DMP1: pA and pB), and hydroxyapatite experimentally developed for direct pulp capping to human dentin. Clearfil SE Bond/Primer (SEP) and Bond (SEB) were used for each experimental group as the matrix agents. Experimental self-etching primers included: primer-I, SEP containing 10 wt% CaCl(2), and primer-II, SEP containing a 10 wt% compound of pA and pB. The experimental bonding agent was a mixture of SEB and 10 wt% hydroxyapatite. Specimens were divided into five experimental groups, including the control, according to the mode of primer application. Primer-I was primarily applied, followed by primer-II for group 1, primer-I as the primary and SEP as the secondary for group 2, SEP as the primary and primer-II as the secondary for group 3, and SEP was applied twice for group 4, and SEP was applied once for the control. Clearfil SE Bond adhesive system was used as the control. Flat dentin surfaces of human molars were assigned to bonding tests. After each experimental primer was applied to the dentin surface, each experimental bonding agent was applied and photopolymerized, and then resin composite paste (Clearfil Flow FX and Clearfil AP-X) was placed and photopolymerized. The specimens were subjected to microTBS testing. The data were compared using analysis of variance (ANOVA) and post-hoc Bonferroni/Dunn tests. Results showed that the minimum mean value of microTBS was 15.4 MPa for group 1, while the maximum mean value of microTBS was 52.7 MPa for the control. There were significant differences among the experimental groups, except for group 4 and the control. The experimental primers containing CaCl(2) or DMP1 negatively affected the microTBS value of the experimental adhesive system to dentin.
机译:这项研究的目的是评估包含氯化钙(CaCl(2)),衍生自牙本质基质蛋白1的合成肽(DMP1:pA和pB)和通过实验开发的羟基磷灰石的实验粘合剂系统的微拉伸粘合强度(microTBS)直接将纸浆封盖到人类牙本质上。每个实验组均使用Clearfil SE Bond / Primer(SEP)和Bond(SEB)作为基质试剂。实验性自蚀刻底漆包括:底漆I,包含10 wt%CaCl(2)的SEP,和底漆II,SEP,包含10 wt%的pA和pB化合物。实验粘合剂是SEB和10 wt%羟基磷灰石的混合物。根据引物的应用方式,将标本分为五个实验组,包括对照组。首先应用引物-I,然后对第1组使用引物-II,对于第2组,使用引物-I作为主要试剂,将SEP作为第二组,对于第3组,将SEP作为主要应用,将引物-II作为辅助试剂,然后使用SEP第4组两次,S​​EP一次用于对照组。将Clearfil SE Bond胶粘剂系统用作对照。将人类臼齿的平坦牙本质表面进行粘合测试。在将每个实验底漆施加到牙本质表面后,施加每个实验粘合剂并使其光聚合,然后放置树脂复合浆料(Clearfil Flow FX和Clearfil AP-X)并进行光聚合。样品进行了microTBS测试。使用方差分析(ANOVA)和事后Bonferroni / Dunn检验比较数据。结果表明,第1组的microTBS的最小平均值为15.4 MPa,而对照组的microTBS的最大平均值为52.7 MPa。除第4组和对照组外,实验组之间存在显着差异。包含CaCl(2)或DMP1的实验引物对牙本质的粘合系统的microTBS值有负面影响。

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