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由纳米晶羟基磷灰石和光固化粘合剂组成的仿生复合牙科材料的分子和力学特性

The Molecular and Mechanical Characteristics of Biomimetic Composite Dental Materials Composed of Nanocrystalline Hydroxyapatite and Light-Cured Adhesive.

作者信息

Seredin Pavel, Goloshchapov Dmitry, Kashkarov Vladimir, Ippolitov Yuri, Vongsvivut Jitraporn

机构信息

Solid State Physics and Nanostructures Department, Voronezh State University, University Sq. 1, 394018 Voronezh, Russia.

Scientific and Educational Center "Nanomaterials and Nanotechnologies", Ural Federal University Named after the First President of Russia B. N. Yeltsin, Mir av., 620002 Yekaterinburg, Russia.

出版信息

Biomimetics (Basel). 2022 Mar 30;7(2):35. doi: 10.3390/biomimetics7020035.

Abstract

The application of biomimetic strategies and nanotechnologies (nanodentology) has led to numerous innovations and provided a considerable impetus by creating a new class of modern adhesion restoration materials, including different nanofillers. An analysis of the molecular properties of biomimetic adhesives was performed in this work to find the optimal composition that provides high polymerisation and mechanical hardness. Nanocrystalline carbonate-substituted calcium hydroxyapatite (nano-cHAp) was used as the filler of the light-cured adhesive Bis-GMA (bisphenol A-glycidyl methacrylate). The characteristics of this substance correspond to the apatite of human enamel and dentin, as well as to the biogenic source of calcium: avian eggshells. The introduction and distribution of nano-cHAp fillers in the adhesive matrix resulted in changes in chemical bonding, which were observed using Fourier transform infrared (FTIR) spectroscopy. As a result of the chemical bonding, the Vickers hardness (VH) and the degree of conversion under photopolymerisation of the nano-cHAp/Bis-GMA adhesive increased for the specified concentration of nanofiller. This result could contribute to the application of the developed biomimetic adhesives and the clinical success of restorations.

摘要

仿生策略和纳米技术(纳米牙科学)的应用带来了众多创新,并通过创造包括不同纳米填料在内的新型现代粘结修复材料提供了巨大推动力。在这项工作中,对仿生粘合剂的分子特性进行了分析,以找到提供高聚合度和机械硬度的最佳组成。纳米晶碳酸取代羟基磷灰石(nano-cHAp)被用作光固化粘合剂双酚A-甲基丙烯酸缩水甘油酯(Bis-GMA)的填料。该物质的特性与人类牙釉质和牙本质的磷灰石以及钙的生物来源:禽蛋壳相对应。纳米cHAp填料在粘合剂基质中的引入和分布导致了化学键合的变化,这通过傅里叶变换红外(FTIR)光谱进行了观察。由于化学键合,对于指定浓度的纳米填料,纳米cHAp/Bis-GMA粘合剂在光聚合下的维氏硬度(VH)和转化率增加。这一结果可能有助于所开发的仿生粘合剂的应用以及修复体的临床成功。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1c9/9036251/8149095dd887/biomimetics-07-00035-g001.jpg

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