Leme Ariene A, Vidal Cristina M P, Hassan Lina Saleh, Bedran-Russo Ana K
Department of Restorative Dentistry, College of Dentistry, University of Illinois at Chicago, Chicago, IL 60612, USA.
Department of Restorative Dentistry, College of Dentistry, University of Illinois at Chicago, Chicago, IL 60612, USA.
J Biomech. 2015 Jul 16;48(10):2067-71. doi: 10.1016/j.jbiomech.2015.03.016. Epub 2015 Mar 28.
Degradation of the adhesive interface contributes to the failure of resin composite restorations. The hydrophilicity of the dentin matrix during and after bonding procedures may result in an adhesive interface that is more prone to degradation over time. This study assessed the effect of chemical modification of the dentin matrix on the wettability and the long-term reduced modulus of elasticity (Er) of adhesive interfaces. Human molars were divided into groups according to the priming solutions: distilled water (control), 6.5% Proanthocyanidin-rich grape seed extract (PACs), 5.75% 1-ethyl-3-[3-dimethylaminopropyl] carbodiimide hydrochloride/1.4% n-hydroxysuccinimide (EDC/NHS) and 5% Glutaraldehyde (GA). The water-surface contact angle was assessed before and after chemical modification of the dentin matrix. The demineralized dentin surface was treated with the priming solutions and restored with One Step Plus (OS) and Single Bond Plus (SB) and resin composite. Er of the adhesive, hybrid layer and underlying dentin was evaluated after 24h and 30 months in artificial saliva. The dentin hydrophilicity significantly decreased after application of the priming solutions. Aging significantly decreased Er in the hybrid layer and underlying dentin of control groups. Er of GA groups remained stable over time at the hybrid layer and underlying dentin. Significant higher Er was observed for PACs and EDC/NHS groups at the hybrid layer after 24h. The decreased hydrophilicity of the modified dentin matrix likely influence the immediate mechanical properties of the hybrid layer. Dentin biomodification prevented substantial aging at the hybrid layer and underlying dentin after 30 months storage.
粘接界面的降解会导致树脂复合材料修复体的失败。在粘接过程中和之后,牙本质基质的亲水性可能会导致粘接界面随着时间的推移更容易降解。本研究评估了牙本质基质的化学改性对粘接界面润湿性和长期弹性模量降低值(Er)的影响。根据底漆溶液将人类磨牙分为几组:蒸馏水(对照组)、6.5%富含原花青素的葡萄籽提取物(PACs)、5.75%1-乙基-3-[3-二甲基氨基丙基]碳二亚胺盐酸盐/1.4%N-羟基琥珀酰亚胺(EDC/NHS)和5%戊二醛(GA)。在牙本质基质化学改性前后评估水表面接触角。用底漆溶液处理脱矿牙本质表面,并用一步法(OS)和单键法(SB)以及树脂复合材料进行修复。在人工唾液中培养24小时和30个月后,评估粘接剂、混合层和底层牙本质的Er。应用底漆溶液后,牙本质亲水性显著降低。老化显著降低了对照组混合层和底层牙本质中的Er。GA组在混合层和底层牙本质中的Er随时间保持稳定。24小时后,在混合层中观察到PACs和EDC/NHS组的Er显著更高。改性牙本质基质亲水性的降低可能会影响混合层的即时力学性能。牙本质生物改性可防止在储存30个月后混合层和底层牙本质出现明显老化。