A'/> Synergic effect of chitosan and dicalcium phosphate on tricalcium silicate-based nanocomposite for root-end dental application
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Synergic effect of chitosan and dicalcium phosphate on tricalcium silicate-based nanocomposite for root-end dental application

机译:壳聚糖和磷酸二钙对硅酸钠基纳米复合材料进行协同作用,用于根末牙科应用

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Abstract In recent years, cement composites based on calcium silicate have been more generally considered for medical applications. Calcium silicate Cement are among the categories that are used in dental root canal treatment. The aim of this study is to make new calcium silicate cement with dicalcium phosphate and chitosan additives to preserve and strengthen desirable properties of this type of cements. In this study, composite dental cement based on calcium silicate was prepared. Then effect of adding biodegradable and biocompatible polymer such as chitosan on setting properties and its structure were studied. In this study, a combination of calcium silicate, dicalcium phosphate (DCP) and bismuth oxide (Bi2O3) as powder phase and 2% solution of the chitosan dissolved in 1% acetic acid solution as liquid phase, was used. As well as control sample was obtained by mixing the powder with distilled water as the liquid phase. Based on the obtained results, setting time of composite cement was changed from 51 to 67 minutes by adding chitosan polymer. Presence of chitosan also reduced the compressive strength a little. The bioactivity of the cement were studied in a solution of simulated body fluid (SBF) for 14 days. The samples were analyzed by SEM to identify the microstructure and by XRD to determine crystal structure. The composition of cement before incubation in SBF was included early phases (phase calcium silicate and calcium phosphate) that after 14 days of immersion in SBF, they were converted to layer-shaped hydroxy apatite and the presence of chitosan had not any influence on the final p
机译:<![cdata [ 抽象 近年来,基于硅酸钙的水泥复合材料已经更普遍考虑用于医疗应用。硅酸钙水泥是牙根管治疗中使用的类别。本研究的目的是用磷酸二钙和壳聚糖添加剂制备新的硅酸钙水泥,以保持和加强这种水泥的理想性质。在该研究中,制备基于硅酸钙的复合牙科水泥。然后,研究了添加可生物降解和生物相容性聚合物如壳聚糖对设定性质及其结构的影响。在本研究中,硅酸钙,磷酸二钙(DCP)和氧化铋的组合(Bi 2 O 3 < / Ce:INF>)用作溶解在1%乙酸溶液中作为液相的壳聚糖的粉末相和2%溶液。除了用蒸馏水作为液相将粉末混合来获得对照样品。基于所得的结果,通过加入壳聚糖聚合物,复合水泥的设定时间从51〜67分钟改变。壳聚糖的存在也降低了抗压强度一点。在模拟体液(SBF)溶液中研究了水泥的生物活性14天。通过SEM分析样品以鉴定微观结构和XRD以确定晶体结构。在SBF中孵育之前的水泥组合物被包括早期相(相钴硅酸钙和磷酸钙),在浸入SBF的14天后,将它们转化为层状的羟基磷灰石,壳聚糖的存在对决赛没有任何影响P.

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