Ramos Renata Pereira, Chinelatti Michelle Alexandra, Chimello Daniela Thomazatti, Borsatto Maria Cristina, Pécora Jesus Djalma, Palma-Dibb Regina Guenka
Department of Restorative Dentistry, Social and Preventive Dentistry, School of Dentistry of Ribeirão Preto, University of São Paulo (USP), Ribeirão Preto, SP, Brazil.
Braz Dent J. 2004;15 Spec No:SI9-20.
This study investigated the effect of Er:YAG laser on bonding to dentin and the interaction pattern of different adhesive systems with the lased substrate. Tensile bond strength of a self-etching [Clearfil SE Bond (CSEB)] and two total-etch [Single Bond (SB) and Gluma One Bond (GOB)] systems to lased and non-lased dentin was evaluated and the adhesive interface morphology was examined by SEM. Dentin was either treated following the manufacturers' instructions (A) or submitted to Er:YAG lasing (80 mJ; 2 Hz) + adhesive protocol (B). Resin cones were bonded to demarcated dentin sites and tested for tensile strength. For SEM, dentin discs were obtained, bisected and the halves were treated (A or B). The adhesive interfaces were examined. Means of tensile bond strength (in MPa) were: CSEB: (A) 20.65+/-1.81, (B) 14.06+/-1.88; SB: (A) 18.36+/-1.48, (B) 16.19+/-1.90; GOB: (A) 16.58+/-1.94, (B) 14.07+/-2.13. ANOVA and Tukey tests showed that lasing of dentin resulted in a significant decrease in bond strength (p<0.05). In the non-lased subgroups, CSEB had higher bond strength than the total-etch adhesives (p<0.05). Conversely, in laser-ablated specimens, CSEB had the lowest bond strength, while SB had the highest values (p<0.05). Consistent hybrid layers were observed for conventionally treated specimens, whereas either absent or scarce hybridization zones were viewed for lased subgroups. Er:YAG laser irradiation severely undermined the formation of consistent resin-dentin hybridization zones and yielded lower bond strengths. CSEB self-etching primer appeared to be the most affected by the laser ablation on the dentin substrate, resulting in the weakest adhesion.
本研究调查了铒钇铝石榴石(Er:YAG)激光对牙本质粘结的影响以及不同粘结系统与经激光处理的牙本质基质的相互作用模式。评估了一种自酸蚀粘结系统[Clearfil SE Bond(CSEB)]以及两种全酸蚀粘结系统[Single Bond(SB)和Gluma One Bond(GOB)]与经激光处理和未经激光处理的牙本质之间的拉伸粘结强度,并通过扫描电子显微镜(SEM)观察粘结界面的形态。牙本质要么按照制造商的说明进行处理(A组),要么接受Er:YAG激光照射(80 mJ;2 Hz)并采用粘结方案(B组)。将树脂桩核粘结到划定的牙本质部位,并测试其拉伸强度。对于SEM观察,获取牙本质圆盘,将其对半切开,两半分别进行处理(A组或B组),然后检查粘结界面。拉伸粘结强度的平均值(单位为MPa)如下:CSEB:(A组)20.65±1.81,(B组)14.06±1.88;SB:(A组)18.36±1.48,(B组)16.19±1.90;GOB:(A组)16.58±1.94,(B组)14.07±2.13。方差分析和Tukey检验表明,牙本质激光照射导致粘结强度显著降低(p<0.05)。在未经激光处理的亚组中,CSEB的粘结强度高于全酸蚀粘结剂(p<0.05)。相反,在激光消融的样本中,CSEB的粘结强度最低,而SB的粘结强度最高(p<0.05)。对于传统处理的样本,观察到了一致的混合层,而对于激光处理的亚组,要么未观察到混合区,要么混合区很少。Er:YAG激光照射严重破坏了一致的树脂-牙本质混合区的形成,并导致较低的粘结强度。CSEB自酸蚀底漆似乎受牙本质基质上激光消融的影响最大,导致粘结力最弱。