Department of Operative Dentistry, Graduate School for Medicine and Dentistry, Okayama University, Okayama, Japan, 700-8525.
J Appl Oral Sci. 2004 Sep;12(3):171-6. doi: 10.1590/s1678-77572004000300002.
Hybridized dentin permits dental treatments that were previously impossible with conventional techniques, opening new frontiers in modern adhesive dentistry. We have investigated the adhesive property of current bonding systems to caries-infected dentin by a microtensile bond strength test (µTBS) and transmission electron microscopy (TEM), and suggested that bonding resin could infiltrate into caries-infected dentin partially to embed carious bacteria within hybrid layers. We have named this concept of caries control as modified sealed restoration (MSR). On the other hand, Kuraray Medical Inc. (Tokyo, Japan) has developed an antibacterial adhesive system (ABF, now marketed in USA as Protect Bond). So as to evaluate the effectiveness of ABF on root caries control, we have examine the microtensile bond strengths (µTBS) of ABF to normal versus carious root dentin and the interfacial morphology by a scanning electron microscopy (SEM). ABF could form the hybrid-like structures by infiltrating into the surfaces of the root carious dentin, and the mean value of µTBS of ABF to root carious dentin was 23.0 MPa. These results suggested that MSR combined with ABF might be an advantageous minimal invasive therapy for root caries.
混合牙本质使得以前无法用传统技术进行的牙科治疗成为可能,为现代黏结牙科开辟了新的领域。我们通过微拉伸结合强度测试 (µTBS) 和透射电子显微镜 (TEM) 研究了当前黏接系统对感染龋的牙本质的黏接性能,并提出黏接树脂可以部分渗透到感染龋的牙本质中,将龋坏细菌嵌入混合层中。我们将这种龋病控制的概念命名为改良密封修复 (MSR)。另一方面,Kuraray Medical Inc.(日本东京)开发了一种抗菌黏接系统 (ABF,现在美国以 Protect Bond 销售)。为了评估 ABF 对根龋控制的有效性,我们通过扫描电子显微镜 (SEM) 检查了 ABF 对正常和龋坏根牙本质的微拉伸结合强度 (µTBS) 和界面形态。ABF 可以通过渗透到根龋牙本质表面形成类似混合的结构,ABF 对根龋牙本质的平均 µTBS 值为 23.0 MPa。这些结果表明,MSR 联合 ABF 可能是根龋微创治疗的一种优势疗法。