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Bioactivity Potential of EndoSequence BC RRM Putty

机译:EndoSequence BC RRM油灰的生物活性潜能

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Introduction: The aim of this study was to characterize and assess the interaction of EndoSequence BC RRM putty (Brasseler USA, Savannah, GA) in contact with blood and simulated. body fluid. Tricalcium silicate based materials are in contact with blood and tissue fluids during and after their setting. These materials are hydraulic; thus, their properties improve in moist conditions. However, specific environmental conditions may modify the material setting. Methods: EndoSequence BC RRM putty was characterized by scanning electron microscopy, energy dispersive spectroscopy, and X-ray diffraction analysis. This was done before setting and after contact with water, Hank's balanced salt solution, and heparinized whole blood. Furthermore, characterization of an explanted material from a failed root-end surgery was performed. Results: The EndoSequence BC RRM putty was composed of tricalcium silicate, tantalum oxide, and zirconium oxide. The tricalcium silicate reaction led to the formation of calcium hydroxide, and this was evident over the putty in contact with water and Hank's balanced salt solution. In the latter case, there was also the formation of globular crystals synonymous with hydroxyapatite. formation. The material in contact with blood exhibited a poorly crystalline surface with additional peaks for calcium, phosphorus, and chlorine, whereas the material retrieved from the failed root-end surgery had deposition of calcium carbonate on its surface. Conclusions: The environmental conditions affect the hydration of the EndoSequence RMM putty and consequentially the material interaction with the environment. However, in vitro material assessment may not be representative of the clinical situation because carbon dioxide present in vivo leads to the formation of calcium carbonate rather than the hydroxyapatite reported in in vitro studies.
机译:简介:这项研究的目的是表征和评估EndoSequence BC RRM油灰(Brasseler美国,萨凡纳,乔治亚州)与血液接触并进行模拟。体液。硅酸三钙基材料在凝固过程中和凝固后都与血液和组织液接触。这些材料是液压的;因此,它们的性能在潮湿条件下得以改善。但是,特定的环境条件可能会更改材料设置。方法:通过扫描电子显微镜,能量色散谱和X射线衍射分析对EndoSequence BC RRM油灰进行表征。这是在凝固之前以及与水,汉克的平衡盐溶液和肝素化全血接触之后完成的。此外,对根端手术失败的移植材料进行了表征。结果:EndoSequence BC RRM腻子由硅酸三钙,氧化钽和氧化锆组成。硅酸三钙反应导致形成氢氧化钙,这在与水和汉克的平衡盐溶液接触的油灰中很明显。在后一种情况下,还形成了与羟基磷灰石同义的球状晶体。编队。与血液接触的材料显示出较差的晶体表面,并带有钙,磷和氯的附加峰,而从失败的根端手术中获得的材料在其表面沉积了碳酸钙。结论:环境条件影响EndoSequence RMM油灰的水合作用,并因此影响其与环境的物质相互作用。但是,体外材料评估可能无法代表临床情况,因为体内存在的二氧化碳会导致碳酸钙的形成,而不是体外研究中报道的羟基磷灰石的形成。

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