适用于深层牙本质的通用粘接剂。

Germán Mirotti, Mónica P Lutri, María E Kraemer, Natalia Monserrat, María C Piconi, Alicia L Caballero, Carlos A Rozas, Luis M Croharé, Mario Sezin
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引用次数: 0

摘要

第八代粘合剂可用于全蚀刻、选择性蚀刻或自调理,并可作为非牙科基材的底漆。目的:通过剪切粘接强度和激光显微观察,探讨不同策略的万能粘接剂对深牙髓壁的粘接特性。材料与方法:36颗拔除的磨牙,雕刻出深4mm,最大宽度为4mm的空腔。根据牙基处理方式和粘结剂分为9组:全蚀组1-单键7自蚀组2-单涂7万能组3-单键万能组;金刚蚀刻:4类单键7自蚀刻、5类单涂7万能、6类单键万能;自调节:7组单键7自蚀刻,8组单涂层7通用,9组单键通用。臼齿是按照制造商的说明补上的。每组3个试件(共27个)采用万能试验机测定剪切粘结强度,其余试件采用显微镜图像和Olympus LEXT 3D软件测量层厚。方差分析用于比较数据。结果:百万帕斯卡(MPa)黏结强度均值(标准差)为:第一组:7.06±3.01;第二组:10.74±4.36;第三组:8.20±3.92;第4组:7.41±2.23;第5组:6.84±1.50;第6组:5.86±2.10;第7组:5.83±1.94;第8组:7.14±2.37;第9组:8.06±3.51。全蚀刻组的粘结强度(8.61±3.96)高于选择性蚀刻组(6.71±1.98)和自调节组(6.91±2.68)(p=0.049)。三种粘接剂间无显著性差异(p=0.205)。微米(μm)的粘接层为全蚀(8.71±4.93)、选择性蚀(5.49±1.70)和自调理(6.27±3.01),差异无统计学意义。结论:不同的粘接策略之间存在显著差异,以全蚀刻的值最高。自调节与选择性腐蚀无显著差异。胶粘剂之间无显著差异,均表现相似。全蚀刻组的粘接层厚度最大,不同粘接方式间无显著差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Universal adhesives applied to deep dentin with different bonding treatments.

Universal adhesives applied to deep dentin with different bonding treatments.

Universal adhesives applied to deep dentin with different bonding treatments.

Universal adhesives applied to deep dentin with different bonding treatments.

Eighth-generation adhesives may be applied with total etch, selective-etch or self-conditioning, and serve as primers for non-dental substrates.

Aim: To determine the bonding characteristics of universal adhesives applied to the deep pulp wall with different strategies, by means of shear bond strength and laser microscopy.

Materials and method: Cavities 4 mm deep and maximum width were carved in 36 extracted molars. Nine groups were formed according to dental substrate treatment and adhesives, as follows: Total-etch: group 1-Monobond 7 self-etch, group 2-One coat 7 universal, and group 3-Single bond universal; Adamantine etch: group 4-Monobond 7 self-etch, group 5-One coat 7 universal, and group 6-Single bond universal; Self-conditioning: group 7-Monobond 7 self-etch, group 8-One coat 7 universal, and group 9-Single bond universal. Molars were filled following the manufacturer's instructions. Three specimens per group (27 altogether) were used to determine shear bond strength using a universal testing machine, while layer thicknesses were measured on the remaining specimens using microscope images and Olympus LEXT 3D Software. Analysis of variance was used to compare data.

Results: Mean (standard deviation) bond strength in megapascals (MPa) was: group 1: 7.06±3.01; group 2: 10.74±4.36; group 3: 8.20±3.92; group 4: 7.41±2.23; group 5: 6.84±1.50; group 6: 5.86±2.10; group 7: 5.83±1.94; group 8: 7.14±2.37; group 9: 8.06±3.51. Bond strength was higher (p=0.049) for total-etch (8.61±3.96) than for selective etch (6.71±1.98) and self-conditioning (6.91±2.68). No significant difference was found among the three adhesives (p=0.205). Adhesive layer in micrometers (μm) was total-etch 8.71±4.93, selective etch 5.49±1.70 and self-conditioning 6.27±3.01, with no significant difference.

Conclusions: There were significant differences among bonding strategies, with the highest values for total-etch. No significant difference was observed between self-conditioning and selective etch. No significant difference was found among the adhesives, which all behaved similarly. The greatest adhesive layer thicknesses were recorded in the total-etch group, with no significant difference among the various adhesive approaches.

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