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实验性纳米混合MTA的物理化学性质

Physiochemical properties of experimental nano-hybrid MTA.

作者信息

Akhavan Zanjani V, Tabari K, Sheikh-Al-Eslamian S M, Abrandabadi A N

机构信息

Department of Restorative Dentistry, Dental School, Shahid Beheshti University of Medical Sciences, Tehran, Iran.

Dental Research Center, Research Institute of Dental Sciences, Dental School, Shahid Beheshti University of Medical Sciences, Tehran, Iran.

出版信息

J Med Life. 2017 Jul-Sep;10(3):182-187.

Abstract

Development of new pulp capping agents has paved the way towards the preservation of pulp vitality, which is an important goal in restorative dentistry. This study sought to assess the calcium ion release, pH and setting of mineral trioxide aggregate (MTA) Angelus, an experimental formulation of nano-hybrid MTA containing nano-SiO2, nano-Al2O3 and nano-TiO2 and MTA Angelus plus nano-oxides. In this experimental study, five specimens from each material were placed in polypropylene tubes and immersed in a flask containing deionized distilled water. The quantity of calcium ions released into the solution from each material was measured at 15 minutes, one hour, and 24 hours by using atomic absorption spectroscopy. The pH of the solutions was measured by using a pH meter at the respective time points. The setting time was also assessed by using a Gilmore needle. Data were analyzed by using repeated measure ANOVA. The quantity of released calcium ions was not significantly different among the groups (P=0.060). All materials were alkaline and the pH at 24 hours was significantly higher than the other two time points in all groups (P<0.001). The experimental group had the shortest and the MTA Angelus had the longest setting time. All materials were alkaline and capable of releasing calcium. Addition of nanoparticles to MTA Angelus significantly decreased the setting time but had no effect on the release of calcium ions or pH. MTA = mineral trioxide aggregate, VPT = vital pulp therapy.

摘要

新型牙髓盖髓剂的研发为保存牙髓活力铺平了道路,这是修复牙科的一个重要目标。本研究旨在评估三氧化矿物凝聚体(MTA)Angelus、一种含有纳米二氧化硅、纳米氧化铝和纳米二氧化钛的纳米混合MTA实验配方以及MTA Angelus加纳米氧化物的钙离子释放、pH值和凝固情况。在这项实验研究中,从每种材料中选取五个样本置于聚丙烯管中,并浸入装有去离子蒸馏水的烧瓶中。使用原子吸收光谱法在15分钟、1小时和24小时时测量每种材料释放到溶液中的钙离子量。在各个时间点使用pH计测量溶液的pH值。凝固时间也通过使用吉尔摩针进行评估。数据采用重复测量方差分析进行分析。各组之间释放的钙离子量无显著差异(P = 0.060)。所有材料均呈碱性,且所有组在24小时时的pH值显著高于其他两个时间点(P < 0.001)。实验组的凝固时间最短,而MTA Angelus的凝固时间最长。所有材料均呈碱性且能够释放钙离子。向MTA Angelus中添加纳米颗粒显著缩短了凝固时间,但对钙离子释放或pH值没有影响。MTA = 三氧化矿物凝聚体,VPT = 活髓治疗

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