Dimitriadi Maria, Zinelis Spiros, Zafiropoulou Maria, Silikas Nikolaos, Eliades George
Department of Biomaterials, School of Dentistry, National and Kapodistrian University of Athens, 11527 Athens, Greece.
Dentistry, School of Medical Sciences, University of Manchester, Manchester M15 6FH, UK.
Materials (Basel). 2020 Jan 31;13(3):641. doi: 10.3390/ma13030641.
The aim of the study was to evaluate the stability, reactivity, and bond strength with a lithium disilicate ceramic of a self-etch silane primer (Monobond Etch and Prime/MEP). The stability was evaluated by H-,P-NMR spectroscopy (before/after aging), and the reactivity by micro MIR-FTIR spectroscopy on Ge surfaces (0, 1, 24 h) using a prehydrolyzed silane primer (Calibra Silane Coupling Agent/CLB), as a control. The effect of MEP vs. 5% HF-etching on ceramic roughness was assessed by optical profilometry. The shear bond strength (SBS) of a resin composite bonded to polished ceramic surfaces treated with MEP, HF without silane (HF+NS), HF+CLB, and HF+MEP (n = 20) was evaluated after storage in water (A: 37 °C/1 week, B: 5000×/5-55 °C and C: 100 °C/24 h). Aging did not affect the silanol groups of MEP, but only the phosphate co-monomer. Silanols were reactive forming siloxanes, but exhibited lower consumption rate than CLB. HF-etching induced significantly higher values than MEP, in all the roughness parameters tested (Sa, Sz, Sdr, Sc, Sv), with the greatest differences found in Sdr and Sv. For SBS, MEP was inferior to all treatments/storage conditions, except of HF+NS in A, where the values were similar. However, on a HF-etched substrate, MEP provided highest strength and reliability.
本研究的目的是评估一种自酸蚀硅烷底漆(单组分酸蚀底漆/MEP)与二硅酸锂陶瓷的稳定性、反应活性和粘结强度。通过H-、P-核磁共振光谱(老化前后)评估稳定性,使用预水解硅烷底漆(校准硅烷偶联剂/CLB)作为对照,通过微红外傅里叶变换红外光谱在Ge表面(0、1、24小时)评估反应活性。通过光学轮廓仪评估MEP与5%氢氟酸蚀刻对陶瓷粗糙度的影响。在水中储存后(A:37℃/1周,B:5000×/5 - 55℃,C:100℃/24小时),评估粘结到用MEP、无硅烷氢氟酸(HF+NS)、HF+CLB和HF+MEP处理的抛光陶瓷表面的树脂复合材料的剪切粘结强度(SBS)(n = 20)。老化不影响MEP的硅醇基团,仅影响磷酸共聚单体。硅醇具有反应活性,形成硅氧烷,但消耗速率低于CLB。在所有测试的粗糙度参数(Sa、Sz、Sdr、Sc、Sv)中,氢氟酸蚀刻诱导的值明显高于MEP,在Sdr和Sv中差异最大。对于SBS,MEP不如所有处理/储存条件,除了A中的HF+NS,其值相似。然而,在氢氟酸蚀刻的基材上,MEP提供了最高的强度和可靠性。