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首页> 外文期刊>European journal of oral sciences >Calcium phosphate precipitation in experimental gaps between fluoride‐containing fast‐setting calcium silicate cement and dentin
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Calcium phosphate precipitation in experimental gaps between fluoride‐containing fast‐setting calcium silicate cement and dentin

机译:磷酸盐沉淀在含氟快速凝聚硅酸钙水泥和牙本质的氟化物的含氟化物间隙中

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摘要

A novel fast‐setting calcium silicate cement containing fluoride (novel‐ CSC ) has been developed for applications in tooth crowns. The aim of this study was to assess the ability of the novel‐ CSC to close the experimental gaps at the dentin–cement interface. The novel‐ CSC was tested against Vitrebond and GC Fuji II LC . Experimental gaps of 50 or 300? μ m width were created between the materials and dentin. Specimens with the 300‐ μ m‐wide gap were immersed in phosphate‐buffered saline and the closed gap area was measured during 96 h. All specimens with 50 or 300? μ m gap width were analyzed by scanning electron microscopy equipped with energy dispersive X‐ray spectroscopy ( SEM / EDX ) to assess the morphology and chemical composition of the precipitates after 96?h immersion in phosphate‐buffered saline. High‐resolution micro‐computed tomography ( μ CT) was used to evaluate the integrity and continuity of the precipitiates after 96?h and 180?d. In all novel‐ CSC samples, precipitates closed the gap area completely after 96?h. The SEM / EDX revealed that the globular precipitates closing the gap area were mainly composed of calcium and phosphorus. After 180?d, μ CT indicated thicker precipitates compared with initial precipitates only in the novel‐ CSC group, whereas no precipitates were observed in resin‐modified glass ionomers. Novel‐ CSC promoted continuous precipitation of calcium phosphate, including apatite, and closed the experimental gaps.
机译:已经开发了一种新型的快速设定含有氟化物(新型CSC)的硅酸钙水泥,用于齿冠中的应用。本研究的目的是评估新型CSC的能力关闭牙本质 - 水泥界面处的实验间隙。对Vitrebond和GC Fuji II LC测试了新型CSC。实验间隙为50或300?在材料和牙本质之间产生μM宽度。将具有300μM宽的间隙的标本浸入磷酸盐缓冲的盐水中,并且在96小时期间测量闭合间隙区域。所有标本50或300?通过扫描具有能量分散X射线光谱(SEM / EDX)的电子显微镜分析μM间隙宽度,以评估沉淀物的形态和化学成分在磷酸盐缓冲盐水中的96℃后。高分辨率微计算断层扫描(μCT)用于评估96℃和180℃后沉淀物的完整性和连续性。在所有新型的样品中,沉淀物在96℃后完全关闭间隙区域。 SEM / EDX显示出闭合间隙区域的球状沉淀物主要由钙和磷组成。在180℃之后,与新型CSC组仅在初始沉淀物相比,μCT表示较厚的沉淀物,而在树脂改性的玻璃离聚物中没有观察到沉淀物。新型CSC促进磷酸钙连续沉淀,包括磷灰石,并关闭实验间隙。

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