Kurokawa Rie, Finger Werner J, Hoffmann Marcus, Endo Tatsuo, Kanehira Masafumi, Komatsu Masashi, Manabe Atsufumi
Department of Oral Biological Science, Division of Orthodontics, Niigata University, Japan.
J Dent. 2007 Dec;35(12):923-9. doi: 10.1016/j.jdent.2007.09.003. Epub 2007 Nov 1.
Aim of this in vitro study was to investigate the correlation of shear bond strength and marginal cavity adaptation, together with polymerization shrinkage and contraction stress, using the combination of four self-etch adhesives and three resin composites.
Interactions were studied between one two-step and three one-step adhesives, and the hybrid-type resin composites, Beautifil (BEU, Shofu) and Venus (VEN, Heraeus), and an experimental nano-hybrid resin composite NEUN (NEU, Heraeus). For all 12 combinations shear bond strengths (SBS) were determined on human dentin. Marginal adaptation (MGW) was assessed in cylindrical butt-joint dentin cavities. Further, polymerization contraction and contraction stress of the resin restoratives were measured.
Significant determinants of SBSs on dentin were time of testing (10min or 24h) and adhesives (p<0.001). Marginal adaptation was best for NEU, followed by VEN and BEU. Only the resin composite used was a highly significant determinant of cavity adaptation. Polymerization shrinkage after 5min was 2.58, 2.74, and 1.53% for BEU, VEN, and NEU, respectively. Polymerization contraction stresses were largest for BEU, less for VEN, and smallest for NEU (p<0.05).
No correlation was found between bond strength and marginal cavity adaptation. In contrast, reduced shrinkage and low polymerization contraction stress of resin composites were identified as important determinants of marginal cavity adaptation.
本体外研究旨在使用四种自酸蚀粘结剂和三种树脂复合材料的组合,研究剪切粘结强度与边缘洞适应性以及聚合收缩和收缩应力之间的相关性。
研究了一种两步法粘结剂和三种一步法粘结剂与混合型树脂复合材料Beautifil(BEU,松风)、Venus(VEN,贺利氏)以及一种实验性纳米混合型树脂复合材料NEUN(NEU,贺利氏)之间的相互作用。对所有12种组合在人牙本质上测定剪切粘结强度(SBS)。在圆柱形对接牙本质洞中评估边缘适应性(MGW)。此外,测量树脂修复体的聚合收缩和收缩应力。
牙本质上SBS的显著决定因素是测试时间(10分钟或24小时)和粘结剂(p<0.001)。NEU的边缘适应性最佳,其次是VEN和BEU。仅所使用的树脂复合材料是洞适应性的高度显著决定因素。BEU、VEN和NEU在5分钟后的聚合收缩率分别为2.58%、2.74%和1.53%。BEU的聚合收缩应力最大,VEN较小,NEU最小(p<0.05)。
未发现粘结强度与边缘洞适应性之间存在相关性。相反,树脂复合材料收缩率降低和聚合收缩应力低被确定为边缘洞适应性的重要决定因素。