Tian F, Zhou L, Zhang Z, Niu L, Zhang L, Chen C, Zhou J, Yang H, Wang X, Fu B, Huang C, Pashley D H, Tay F R
Department of Cariology and Endodontology, Peking University School and Hospital of Stomatology, Beijing, PR China.
Key Laboratory for Oral Biomedical Ministry of Education, School & Hospital of Stomatology, Wuhan University, Wuhan, PR China.
J Dent Res. 2016 Apr;95(4):380-7. doi: 10.1177/0022034515623741. Epub 2015 Dec 23.
Self-assembled nanolayering structures have been reported in resin-dentin interfaces created by adhesives that contain 10-methacryloyloxydecyl dihydrogen phosphate (10-MDP). These structures have been hypothesized to contribute to bond durability. The objective of the present study was to determine the extent of nanolayering in resin-dentin interfaces after application of commercialized 10-MDP-containing self-etch and universal adhesives to human dentin. Seven commercialized adhesives were examined: Adhese Universal (Ivoclar-Vivadent), All-Bond Universal (Bisco, Inc.), Clearfil SE Bond 2, Clearfil S3 Bond Plus, Clearfil Universal Bond (all from Kuraray Noritake Dental Inc.), G-Premio Bond (GC Corp.), and Scotchbond Universal (3M ESPE). Each adhesive was applied in the self-etch mode on midcoronal dentin according to the respective manufacturer's instructions. Bonded specimens (n = 6) were covered with flowable resin composite, processed for transmission electron microscopy, and examined at 30 random sites without staining. Thin-film glancing angle X-ray diffraction (XRD) was used to detect the characteristic peaks exhibited by nanolayering (n = 4). The control consisted of 15%wt, 10%wt, and 5%wt 10-MDP (DM Healthcare Products, Inc.) dissolved in a mixed solvent (ethanol and water weight ratio 9:8, with photoinitiators). Experimental primers were applied to dentin for 20 s, covered with hydrophobic resin layer, and examined in the same manner. Profuse nanolayering with highly ordered periodicity (~3.7 nm wide) was observed adjacent to partially dissolved apatite crystallites in dentin treated with the 15% 10-MDP primer. Three peaks in the 2θ range of 2.40° (3.68 nm), 4.78° (1.85 nm), and 7.18° (1.23 nm) were identified from thin-film XRD. Reduction in the extent of nanolayering was observed in the 10% and 5% 10-MDP experimental primer-dentin interface along with lower intensity XRD peaks. Nanolayering and characteristic XRD peaks were rarely observed in specimens prepared from the commercialized adhesives. The sparsity of nanolayering in resin-dentin interfaces created by commercialized adhesives challenges its clinical effectiveness as a mechanism for improving bond longevity in dentin bonding.
据报道,在由含有10 - 甲基丙烯酰氧基癸基磷酸二氢酯(10 - MDP)的粘合剂形成的树脂 - 牙本质界面中存在自组装纳米层结构。这些结构被推测有助于提高粘结耐久性。本研究的目的是确定将商业化的含10 - MDP的自酸蚀和通用粘合剂应用于人类牙本质后,树脂 - 牙本质界面中纳米层的程度。研究了七种商业化粘合剂:Adhese Universal(义获嘉伟瓦登特公司)、All - Bond Universal(必思科公司)、Clearfil SE Bond 2、Clearfil S3 Bond Plus、Clearfil Universal Bond(均来自可乐丽诺瑞特牙科公司)、G - Premio Bond(GC公司)和Scotchbond Universal(3M ESPE)。每种粘合剂均按照各自制造商的说明以自酸蚀模式应用于牙冠中部牙本质。粘结标本(n = 6)用流动树脂复合材料覆盖,进行透射电子显微镜处理,并在30个随机部位进行无染色检查。使用薄膜掠角X射线衍射(XRD)检测纳米层呈现的特征峰(n = 4)。对照组由溶解在混合溶剂(乙醇与水重量比9:8,含光引发剂)中的15%wt、10%wt和5%wt的10 - MDP(DM医疗保健产品公司)组成。将实验性底漆涂覆在牙本质上20秒,覆盖疏水树脂层,并以相同方式进行检查。在用15% 10 - MDP底漆处理的牙本质中,在部分溶解的磷灰石微晶附近观察到大量具有高度有序周期性(约3.7 nm宽)的纳米层。从薄膜XRD中鉴定出在2θ范围为2.40°(3.68 nm)、4.78°(1.85 nm)和7.18°(1.23 nm)处的三个峰。在10%和5% 10 - MDP实验性底漆 - 牙本质界面中观察到纳米层程度降低,同时XRD峰强度也较低。在由商业化粘合剂制备的标本中很少观察到纳米层和特征XRD峰。商业化粘合剂形成的树脂 - 牙本质界面中纳米层的稀疏性对其作为改善牙本质粘结中粘结寿命的机制的临床有效性提出了挑战。