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含 45S5 和铌磷灰石生物活性玻璃的自酸蚀黏结剂的制备与性能表征:理化性能、力学性能、生物活性和界面特性。

Development and characterization of self-etching adhesives doped with 45S5 and niobophosphate bioactive glasses: Physicochemical, mechanical, bioactivity and interface properties.

机构信息

University Ceuma (UNICEUMA), School of Dentistry, R. Josué Montello, 1, Renascença II, 65075-120 São Luis, Maranhão, Brazil.

Department of Restorative Dentistry, Dental Materials Division, School of Dentistry, University of Campinas (UNICAMP), Av. Limeira, 901, 13414-903 Piracicaba, São Paulo, Brazil.

出版信息

Dent Mater. 2021 Jun;37(6):1030-1045. doi: 10.1016/j.dental.2021.03.004. Epub 2021 Apr 10.

Abstract

OBJECTIVE

The aim of study was to develop and characterize experimental bioactive glasses (45S5 and niobophosphate bioactive glass (NbG)) and evaluate the effects of their addition in self-etching adhesive systems on physicochemical, mechanical, and bioactive properties, microtensile bond strength (μTBS), and nanoleakage (NL).

METHODS

Two-step self-etching adhesive systems containing 5, 10, and 20 wt.% of 45S5 and NbG bioactive glasses were developed. An experimental adhesive without microparticles and a commercial adhesive (Clearfil SE Bond) were used as control groups. The materials were evaluated for their degree of conversion (DC%), ultimate tensile strength (UTS), softening in solvent, radiopacity, sorption and solubility, alkalizing activity (pH), ionic release, and bioactivity. μTBS and NL were evaluated after 24 h and 1 year of storage. The data were subjected to analysis of variance and post-Holm-Sidak tests (α = 0.05).

RESULTS

The addition of the two bioactive glasses did not change the values of the degree of conversion, ultimate tensile strength, and softening in solvent. The adhesive system containing 20% NbG showed the highest radiopacity. The incorporation of 45S5 increased water sorption and solubility, raised the pH, and allowed the release of large amounts of calcium. After 28 days of immersion in simulated body fluid, the 45S5 adhesive precipitated hydroxyapatite and calcium carbonate (SEM/EDX, ATR/FTIR, and XDR). The addition of 45S5 and NbG to the adhesives improved the stability of the resin-dentin interface after 1 year.

SIGNIFICANCE

The incorporation of microparticles from 45S5 bioactive glass in self-etching adhesive systems is considered an excellent alternative for the development of a bioactive adhesive that improves the integrity of the hybrid layer on sound dentin.

摘要

目的

本研究旨在开发和表征实验性生物活性玻璃(45S5 和铌磷生物活性玻璃(NbG)),并评估其在自酸蚀粘接系统中的添加对物理化学、机械和生物活性、微拉伸粘接强度(μTBS)和纳米渗漏(NL)的影响。

方法

开发了含有 5、10 和 20wt%的 45S5 和 NbG 生物活性玻璃的两步自酸蚀粘接系统。以不含微颗粒的实验性粘接剂和商用粘接剂(Clearfil SE Bond)作为对照组。对材料的转化率(DC%)、极限拉伸强度(UTS)、溶剂软化、射线不透性、吸附和解吸、碱化活性(pH)、离子释放和生物活性进行了评价。在 24 小时和 1 年后储存后,对 μTBS 和 NL 进行了评估。数据采用方差分析和后 Holm-Sidak 检验(α=0.05)进行分析。

结果

两种生物活性玻璃的添加并没有改变转化率、极限拉伸强度和溶剂软化的数值。含 20%NbG 的粘接系统显示出最高的射线不透性。45S5 的加入增加了水的吸附和解吸,提高了 pH 值,并允许大量钙的释放。在模拟体液浸泡 28 天后,45S5 粘接剂沉淀出羟基磷灰石和碳酸钙(SEM/EDX、ATR/FTIR 和 XDR)。45S5 和 NbG 添加到粘接剂中提高了 1 年后树脂-牙本质界面的稳定性。

意义

在自酸蚀粘接系统中加入 45S5 生物活性玻璃的微颗粒被认为是开发一种改善健康牙本质上混合层完整性的生物活性粘接剂的绝佳选择。

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