de Brito Graça Maria Abreu Pereira, Silva Daniella Oliveira, Macedo Rayssa Ferreira Cavaleiro, Ferreira Michel Wendlinger Cantanhede, Bauer Jose, Pedroso Flavia de Brito, Reis Alessandra, Siqueira Fabiana Suelen Figuerêdo, Loguercio Alessandro Dourado, Cardenas Andres Felipe Millan
Department of Postgraduate Program in Dentistry, CEUMA University, São Luis 65075-120, Brazil.
Department of Postgraduate Program in Dentistry, Federal University of Maranhao, São Luis 65085-805, Brazil.
Polymers (Basel). 2022 Jun 30;14(13):2701. doi: 10.3390/polym14132701.
This paper evaluates the effect of an additional hydrophobic resin coat (extra HL) associated with universal adhesives on sound and eroded dentin and evaluated immediately or after 2 years of water storage to improve the microtensile bond strength (μTBS) and nanoleakage (NL) when compared to the use of universal adhesives only. Sixty-four molars were assigned to eight groups using the following combinations: 1. dentin substrate, including sound and eroded dentin; 2. treatment, including the control and extra HL and storage time (immediately and after two-years of storage). Two universal adhesives (Prime & Bond Active or Scotchbond Universal) were evaluated. Before restoration, half of the teeth were subjected to soft-drink erosion. Composite buildups were bonded; specimens were stored (37 °C/24 h), sectioned into resin−dentin bonded sticks and tested for microtensile bond strength and nanoleakage using SEM (immediately and after two-years of storage). Three-way ANOVA and Tukey’s test (α = 0.05%) were used. In the immediate testing, the application of extra HL did not increase microtensile bond strength values compared with the control group in either substrate (p > 0.05). However, extra HL significantly decreased nanoleakage values when applied to eroded and sound dentin (p = 0.0001). After two years, the application of extra HL produced significantly higher microtensile bond strength and lower nanoleakage values than the control group for both adhesives (p = 0.0001). In all cases, sound dentin showed higher microtensile bond strength and lower nanoleakage values than eroded dentin (p = 0.000001). An extra HL increased the bond strength and reduced nanoleakage in eroded dentin after two-years of storage.
本文评估了通用型粘结剂联合额外疏水树脂涂层(extra HL)对完好牙本质和酸蚀牙本质的影响,并与仅使用通用型粘结剂相比,在即刻或水储存2年后评估其对微拉伸粘结强度(μTBS)和纳米渗漏(NL)的影响。64颗磨牙按以下组合分为八组:1. 牙本质基质,包括完好牙本质和酸蚀牙本质;2. 处理方式,包括对照组、extra HL以及储存时间(即刻和储存两年后)。评估了两种通用型粘结剂(Prime & Bond Active或Scotchbond Universal)。修复前,一半牙齿进行软饮料酸蚀处理。粘结复合树脂堆塑体;将标本储存(37℃/24小时),切成树脂-牙本质粘结棒,使用扫描电子显微镜(SEM)检测微拉伸粘结强度和纳米渗漏(即刻和储存两年后)。采用三因素方差分析和Tukey检验(α = 0.05%)。在即刻测试中,与对照组相比,在任何一种基质上应用extra HL均未增加微拉伸粘结强度值(p > 0.05)。然而,当应用于酸蚀牙本质和完好牙本质时,extra HL显著降低了纳米渗漏值(p = 0.0001)。两年后,两种粘结剂应用extra HL均产生了显著高于对照组的微拉伸粘结强度和更低的纳米渗漏值(p = 0.0001)。在所有情况下,完好牙本质的微拉伸粘结强度均高于酸蚀牙本质,纳米渗漏值低于酸蚀牙本质(p = 0.000001)。储存两年后,extra HL增加了酸蚀牙本质的粘结强度并减少了纳米渗漏。