Laboratório Especial de Laser em Odontologia, Departamento de Dentística, Faculdade de Odontologia da Universidade de São Paulo, São Paulo, SP 05508-000, Brazil.
Microsc Res Tech. 2011 Aug;74(8):720-6. doi: 10.1002/jemt.20949. Epub 2010 Oct 13.
Dentin irradiation with erbium lasers has been reported to alter the composite resin bond to this treated surface. There is still a lack of studies reporting the effect of erbium lasers on dentin organic content and elucidating how laser treatment could interfere in the quality of the resin-dentin interface. This study aimed to evaluate the effect of erbium laser irradiation on dentin morphology and microtensile bond strength (μTBS) of an adhesive to dentin. Seventy-two dentin disks were divided into nine groups (n = 8): G1-Control (600-grit SiC paper); Er:YAG groups: G2- 250 mJ/4 Hz; G3- 200 mJ/4 Hz; G4- 180 mJ/10 Hz; G5- 160 mJ/10 Hz; Er,Cr:YSGG groups: G6- 2 W/20 Hz; G7- 2.5 W/20 Hz; G8- 3 W/20 Hz; G9- 4 W/20 Hz. Specimens were processed for cross-sectional analysis by scanning electron microscopy (SEM) (n = 3), transmission electron microscopy (TEM) (n = 2), and adhesive interface (n = 3). Forty-five dentin samples (n = 5) were restored and submitted to μTBS testing. ANOVA (α = 5%) revealed that G1 presented the highest μTBS values and irradiated groups did not differ from each other. TEM micrographs showed a superficial layer of denatured collagen fibrils. For SEM micrographs, it was possible to verify the laser effects extending to dentin subsurface presenting a rough aspect. Cross-sectional dentin micrographs of this hybridized surface revealed a pattern of modified tags with ringlike structures around it. This in vitro study showed that erbium laser irradiation interacts with the dental hard tissue resulting in a specific morphological pattern of dentin and collagen fibrils that negatively affected the bond strength to composite resin.
已有研究报道铒激光照射牙本质会改变其与复合树脂的粘结。目前仍缺乏研究报道铒激光对牙本质有机物含量的影响,以及阐明激光处理如何干扰树脂-牙本质界面的质量。本研究旨在评估铒激光照射对牙本质形貌和牙本质微拉伸粘结强度(μTBS)的影响。将 72 个牙本质圆盘分为 9 组(n = 8):G1-对照组(600 目 SiC 砂纸);Er:YAG 组:G2-250 mJ/4 Hz;G3-200 mJ/4 Hz;G4-180 mJ/10 Hz;G5-160 mJ/10 Hz;Er,Cr:YSGG 组:G6-2 W/20 Hz;G7-2.5 W/20 Hz;G8-3 W/20 Hz;G9-4 W/20 Hz。通过扫描电子显微镜(SEM)(n = 3)、透射电子显微镜(TEM)(n = 2)和粘结界面(n = 3)对标本进行横截面分析。45 个牙本质样本(n = 5)被修复并进行 μTBS 测试。方差分析(α = 5%)显示 G1 组具有最高的 μTBS 值,且各组间差异无统计学意义。TEM 显微照片显示了变性胶原纤维的浅层。对于 SEM 显微照片,可以验证激光作用扩展到牙本质次表面,呈现出粗糙的外观。杂交表面的牙本质横截面显微照片显示出一种改性标签模式,其周围有环状结构。本体外研究表明,铒激光与牙体硬组织相互作用,导致牙本质和胶原纤维呈现出特定的形态模式,从而对复合树脂的粘结强度产生负面影响。