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Influence of Porous Spherical-Shaped Hydroxyapatite on Mechanical Strength and Bioactive Function of Conventional Glass Ionomer Cement

机译:球形球形羟基磷灰石对常规玻璃离聚物水泥的力学强度和生物活性的影响

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摘要

Glass-ionomer-cement (GIC) is helpful in Minimal Intervention Dentistry because it releases fluoride ions and is highly biocompatible. The aim of this study is to investigate the mechanisms by which hydroxyapatite (HAp) improves the mechanical strength and bioactive functioning of GIC when these materials are combined to make apatite ionomer cement (AIC). A conventional GIC powder was mixed with porous, spherical-HAp particles (HApS), crystalline HAp (HAp200) or one of two types of cellulose. The micro-compressive strengths of the additive particles were measured, and various specimens were evaluated with regard to their compressive strengths (CS), fluoride release concentrations (fluoride electrode) and multi-element release concentrations. The AIC was found to release higher concentrations of fluoride (1.2 times) and strontium ions (1.5 times) compared to the control GIC. It was detected the more release of calcium originated from HApS than HAp200 in AIC. The CS of the AIC incorporating an optimum level of HAp was also significantly higher than that of the GIC. These results suggest that adding HAp can increase the release concentration of ions required for remineralization while maintaining the CS of the GIC. This effect does not result from a physical phenomenon, but rather from chemical reactions between the HAp and polyacrylic acid of GIC.
机译:玻璃离子水泥(GIC)在最小介入牙科方面很有用,因为它释放氟离子并且具有高度的生物相容性。这项研究的目的是研究将这些材料组合制成磷灰石离聚物水泥(AIC)时,羟基磷灰石(HAp)改善GIC的机械强度和生物活性功能的机制。将常规GIC粉末与多孔球形HAp颗粒(HApS),晶体HAp(HAp200)或两种类型的纤维素之一混合。测量了添加剂颗粒的微压缩强度,并对各种样品的压缩强度(CS),氟化物释放浓度(氟化物电极)和多种元素释放浓度进行了评估。与对照GIC相比,发现AIC释放出更高浓度的氟化物(1.2倍)和锶离子(1.5倍)。在AIC中,检测到HApS释放的钙比HAp200释放的钙更多。结合了最佳HAp水平的AIC的CS也显着高于GIC。这些结果表明,添加HAp可以增加矿化所需离子的释放浓度,同时保持GIC的CS。这种作用不是由物理现象引起的,而是由HAp和GIC的聚丙烯酸之间的化学反应引起的。

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