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实验性生物活性/仿生自酸蚀黏合剂掺杂钙磷填料和磷蛋白仿生模拟物的黏结性能。

Bonding performance of experimental bioactive/biomimetic self-etch adhesives doped with calcium-phosphate fillers and biomimetic analogs of phosphoproteins.

机构信息

Department of Restorative Dentistry, Dental Materials Division, School of Dentistry, Campinas State University (UNICAMP), Piracicaba, SP, Brazil.

Department of Restorative Dentistry, Federal University of Ceara, Fortaleza, Brazil.

出版信息

J Dent. 2016 Sep;52:79-86. doi: 10.1016/j.jdent.2016.07.016. Epub 2016 Jul 27.

Abstract

OBJECTIVES

This study examined the bonding performance and dentin remineralization potential of an experimental adhesive containing calcium-phosphate (Ca/P) micro-fillers, and self-etching primers doped with phosphoprotein biomimetic analogs (polyacrylic acid-(PAA) and/or sodium trimetaphosphate-(TMP)).

METHODS

Experimental self-etching primers doped with biomimetic analogs (PAA and/or TMP), and an adhesive containing Ca(2+), PO4(-3)-releasing micro-fillers (Ca/P) were formulated. Sound human dentin specimens were bonded and cut into sticks after aging (24h or 6 months) under simulated pulpal pressure (20cm H2O), and tested for microtensile bond strength (μTBS). Results were analyzed using two-way ANOVA and Tukey's test (p<0.05). Interfacial silver nanoleakage was assessed using SEM. Remineralization of EDTA-demineralized dentin was assessed through FTIR and TEM ultrastructural analysis.

RESULTS

Application of the Ca/P-doped adhesive with or without dentin pre-treatments with the primer containing both biomimetic analogs (PAA and TMP) promoted stable μTBS over 6 months. Conversely, μTBS of the control primer and filler-free adhesive significantly decreased after 6 months. Nanoleakage decreased within the resin-dentin interfaces created using the Ca/P-doped adhesives. EDTA-demineralized dentin specimens treated the Ca/P-doped adhesive and the primer containing PAA and TMP showed phosphate uptake (FTIR analysis), as well as deposition of needle-like crystallites at intrafibrillar level (TEM analysis).

SIGNIFICANCE

The use of Ca/P-doped self-etching adhesives applied in combination with analogs of phosphoproteins provides durable resin-dentin bonds. This approach may represent a suitable bonding strategy for remineralization of intrafibrillar dentin collagen within the resin-dentin interface.

摘要

目的

本研究考察了一种含有钙-磷(Ca/P)微填料的实验性胶粘剂以及掺杂有磷酸蛋白仿生模拟物(聚丙烯酸(PAA)和/或三聚磷酸钠(TMP))的自酸蚀底漆的粘结性能和牙本质再矿化潜力。

方法

配制了掺杂有仿生模拟物(PAA 和/或 TMP)的实验性自酸蚀底漆和含有释放 Ca2+和 PO43--的微填料(Ca/P)的胶粘剂。将健康的人牙本质标本在模拟牙髓压力(20cm H2O)下老化(24 小时或 6 个月)后粘结并切成棒状,然后进行微拉伸粘结强度(μTBS)测试。使用双因素方差分析和 Tukey 检验(p<0.05)对结果进行分析。使用 SEM 评估界面银纳米渗漏。通过 FTIR 和 TEM 超微结构分析评估 EDTA 脱矿质牙本质的再矿化。

结果

应用含有或不含有两种仿生模拟物(PAA 和 TMP)的底漆预处理的 Ca/P 掺杂胶粘剂可在 6 个月内保持稳定的 μTBS。相反,不含填料和控制底漆的 μTBS 在 6 个月后显著降低。在使用 Ca/P 掺杂胶粘剂形成的树脂-牙本质界面内,纳米渗漏减少。EDTA 脱矿质牙本质标本用 Ca/P 掺杂胶粘剂和含有 PAA 和 TMP 的底漆处理后,显示出磷酸盐摄取(FTIR 分析)以及纤维内结晶的针状沉积物的沉积(TEM 分析)。

意义

使用掺杂 Ca/P 的自酸蚀胶粘剂与磷酸蛋白的模拟物联合应用可提供持久的树脂-牙本质粘结。这种方法可能代表了在树脂-牙本质界面内再矿化纤维内牙本质胶原的一种合适的粘结策略。

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