Department of Operative Dentistry, Tsurumi University School of Dental Medicine, Yokohama, Japan.
Acta Biomater. 2012 May;8(5):1928-34. doi: 10.1016/j.actbio.2012.01.013. Epub 2012 Jan 18.
Besides functional and cross-linking monomers, dental adhesives contain a photo-initiator system for polymerization, thereby providing physico-mechanical strength to the adhesive-tooth interface. Few studies have investigated the effect of the functional monomer and polymerization-initiation system on the polymerization efficiency of the adhesive. Here, we tested the effect of two different functional monomers (MAC-10 vs. SR) and two photo-initiator systems, camphorquinone-amine (CQ) vs. borate (BO), on the degree of conversion (DC) of different adhesive formulations. The DC of the CQ-cured adhesive formulations was significantly affected by the MAC-10 monomer. This should be ascribed to the known inactivation of the amine co-initiator through acid-base reaction. However, the SR monomer did not decrease the DC, which could be attributed to a "gel effect" or the so-called "Trommsdorff-Norrish" phenomenon of enhanced DC with more viscous resins, and to the more favorable availability of CC double bonds. In contrast, the DC of the BO-cured adhesive formulations was not affected by any acidic monomer. It is concluded that the degree of conversion of an adhesive can be affected by the functional monomer, but this depends on the kind of photo-initiator system used. As bond durability depends, among other factors, on the strength and thus degree of conversion of the adhesive, potential interaction between adhesive ingredients and the photo-initiator system definitely needs to be studied further.
除了功能性和交联单体,牙本质黏结剂还包含光引发剂系统,以聚合提供物理机械强度的黏结剂 - 牙界面。很少有研究调查了功能性单体和聚合引发系统对黏结剂聚合效率的影响。在这里,我们测试了两种不同的功能性单体(MAC-10 与 SR)和两种光引发系统(樟脑醌-胺[CQ]与硼酸盐[BO])对不同黏结剂配方的转化率(DC)的影响。CQ 固化黏结剂配方的 DC 显著受到 MAC-10 单体的影响。这归因于已知的胺共引发剂通过酸碱反应失活。然而,SR 单体并没有降低 DC,这可能归因于更粘稠的树脂增强 DC 的所谓“凝胶效应”或“Trommsdorff-Norrish”现象,以及 CC 双键的更有利可用性。相比之下,BO 固化黏结剂配方的 DC 不受任何酸性单体的影响。可以得出结论,黏结剂的转化率可以受到功能性单体的影响,但这取决于所使用的光引发剂系统的类型。由于结合耐久性取决于其他因素,包括黏结剂的强度和因此转化率,黏结剂成分与光引发剂系统之间的潜在相互作用肯定需要进一步研究。