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含功能性埃洛石纳米管填料的新型树脂基材料的物理化学及生物活性特性

Physicochemical and bioactive properties of innovative resin-based materials containing functional halloysite-nanotubes fillers.

作者信息

Degrazia Felipe Weidenbach, Leitune Vicente Castelo Branco, Takimi Antonio Shigueaki, Collares Fabrício Mezzomo, Sauro Salvatore

机构信息

Laboratório de Materiais Dentários, Faculdade de Odontologia, Universidade Federal do Rio Grande do Sul, Rua Ramiro Barcelos, 2492, Rio Branco, 90035-003 Porto Alegre, Brazil.

Departamento de Engenharia Metalúrgica, Escola de Engenharia, Universidade Federal do Rio Grande do Sul, Av. Osvaldo Aranha, 99, Centro, 90035-190 Porto Alegre, Brazil.

出版信息

Dent Mater. 2016 Sep;32(9):1133-43. doi: 10.1016/j.dental.2016.06.012. Epub 2016 Jul 6.

Abstract

OBJECTIVE

This study aimed to assess the degree of conversion, microhardness, solvent degradation, contact angle, surface free energy and bioactivity (e.g., mineral precipitation) of experimental resin-based materials containing, pure or triclosan-encapsulated, aluminosilicate-(halloysite) nanotubes.

METHODS

An experimental resin blend was prepared using bis-GMA/TEGDMA, 75/25wt% (control). Halloysite nanotubes (HNT) doped with or without triclosan (TCN) were first analyzed using transmission electron microscopy (TEM). HNT or HNT/TCN fillers were incorporated into the resin blend at different concentrations (5, 10, and 20wt%). Seven experimental resins were created and the degree of conversion, microhardness, solvent degradation and contact angle were assessed. Bioactive mineral precipitation induced by the experimental resins was evaluated through Raman spectroscopy and SEM-EDX.

RESULTS

TEM showed a clear presence of TCN particles inside the tubular lumen and along the outer surfaces of the halloysite nanotubes. The degree of conversion, surface free energy, microhardness, and mineral deposition of polymers increased with higher amount of HNTs. Conversely, the higher the amount (20wt%) of TCN-loaded HNTs the lower the microhardness of the experimental resins.

SIGNIFICANCE

The incorporation of pure or TCN-loaded aluminosilicate-(halloysite) nanotubes into resin-based materials increase the bioactivity of such experimental restorative materials and promotes mineral deposition. Therefore, innovative resin-based materials containing functional halloysite-nanotube fillers may represent a valuable alternative for therapeutic minimally invasive treatments.

摘要

目的

本研究旨在评估含有纯的或包裹三氯生的硅铝酸盐(埃洛石)纳米管的实验性树脂基材料的转化率、显微硬度、溶剂降解、接触角、表面自由能和生物活性(如矿物沉淀)。

方法

使用双酚A缩水甘油醚/三乙二醇二甲基丙烯酸酯(75/25wt%)制备一种实验性树脂共混物(对照)。首先使用透射电子显微镜(TEM)分析掺杂或未掺杂三氯生(TCN)的埃洛石纳米管(HNT)。将HNT或HNT/TCN填料以不同浓度(5、10和20wt%)加入到树脂共混物中。制备了七种实验性树脂,并评估了其转化率、显微硬度、溶剂降解和接触角。通过拉曼光谱和扫描电子显微镜-能谱仪(SEM-EDX)评估实验性树脂诱导的生物活性矿物沉淀。

结果

TEM显示在管状内腔内以及埃洛石纳米管的外表面上明显存在TCN颗粒。聚合物的转化率、表面自由能、显微硬度和矿物沉积随着HNT含量的增加而增加。相反,负载TCN的HNT含量越高(20wt%),实验性树脂的显微硬度越低。

意义

将纯的或负载TCN的硅铝酸盐(埃洛石)纳米管加入到树脂基材料中可提高此类实验性修复材料的生物活性并促进矿物沉积。因此,含有功能性埃洛石纳米管填料的创新性树脂基材料可能是治疗性微创治疗的一种有价值的替代方案。

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