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追求树脂-牙本质粘结耐久性:同时增强混合层中的胶原结构和聚合物网络形成。

The pursuit of resin-dentin bond durability: Simultaneous enhancement of collagen structure and polymer network formation in hybrid layers.

机构信息

Department of Restorative Dentistry and Cariology, Adhesive Dentistry Research Group, Institute of Dentistry, University of Turku, Turku, Finland; Turku University Hospital, TYKS, University of Turku, Turku, Finland.

Department of Restorative Dentistry and Cariology, Adhesive Dentistry Research Group, Institute of Dentistry, University of Turku, Turku, Finland; Department of Prosthodontics and Clinical Dentistry, Institute of Dentistry, University of Eastern Finland, Kuopio, Finland.

出版信息

Dent Mater. 2021 Jul;37(7):1083-1095. doi: 10.1016/j.dental.2021.03.010. Epub 2021 Apr 15.

Abstract

OBJECTIVE

Imperfect polymer formation as well as collagen's susceptibility to enzymatic degradation increase the vulnerability of hybrid layers over time. This study investigated the effect of new dimethyl sulfoxide (DMSO)-containing pretreatments on long-term bond strength, hybrid layer quality, monomer conversion and collagen structure.

METHODS

HPO-etched mid-coronal dentin surfaces from extracted human molars (n = 8) were randomly treated with aqueous and ethanolic DMSO solutions or following the ethanol-wet bonding technique. Dentin bonding was performed with a three-step etch-and-rinse adhesive. Resin-dentin beams (0.8 mm) were stored in artificial saliva at 37 °C for 24 h and 2.5 years, submitted to microtensile bond strength testing at 0.5 mm/min and semi-quantitative SEM nanoleakage analysis (n = 8). Micro-Raman spectroscopy was used to determine the degree of conversion at different depths in the hybrid layer (n = 6). Changes in the apparent modulus of elasticity of demineralized collagen beams measuring 0.5 × 1.7 × 7 mm (n = 10) and loss of dry mass (n = 10) after 30 days were calculated via three-point bending and precision weighing, respectively.

RESULTS

DMSO-containing pretreatments produced higher bond strengths, which did not change significantly over time presenting lower incidence of water-filled zones. Higher uniformity in monomer conversion across the hybrid layer occurred for all pretreatments. DMSO-induced collagen stiffening was reversible in water, but with lower peptide solubilization.

SIGNIFICANCE

Improved polymer formation and higher stability of the collagen-structure can be attributed to DMSO's unique ability to simultaneously modify both biological and resin components within the hybrid layer. Pretreatments composed of DMSO/ethanol may be a viable-effective alternative to extend the longevity of resin-dentin bonds.

摘要

目的

聚合物形成不完美以及胶原易受酶降解,会随着时间的推移增加混合层的脆弱性。本研究旨在探讨新型含二甲基亚砜(DMSO)预处理对长期粘结强度、混合层质量、单体转化率和胶原结构的影响。

方法

从离体人磨牙的近中冠牙本质表面(n = 8)中制取 HPO 酸蚀牙本质表面,随机用含水溶液和乙醇溶液的 DMSO 或乙醇湿粘结技术处理。用三步酸蚀-冲洗粘结剂进行牙本质粘结。将树脂-牙本质梁(0.8mm)在人工唾液中于 37°C 下储存 24 h 和 2.5 年,以 0.5mm/min 的速度进行微拉伸粘结强度测试,并进行半定量 SEM 纳米渗漏分析(n = 8)。采用微拉曼光谱法测定混合层不同深度的转化率(n = 6)。通过三点弯曲和精密称重分别计算测量值为 0.5×1.7×7mm 的脱矿胶原梁的表观弹性模量变化(n = 10)和干燥质量损失(n = 10)。

结果

含 DMSO 的预处理可提高粘结强度,且随时间推移无明显变化,水填充区的发生率较低。所有预处理方法均使混合层中的单体转化率更加均匀。DMSO 诱导的胶原变硬在水中是可逆的,但肽的溶解度较低。

意义

聚合物形成的改善和胶原结构的更高稳定性可归因于 DMSO 同时修饰混合层中生物和树脂成分的独特能力。由 DMSO/乙醇组成的预处理可能是一种可行的有效替代方法,可延长树脂-牙本质粘结的寿命。

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