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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Development of LiCl-containing calcium aluminate cement for bone repair and remodeling applications
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Development of LiCl-containing calcium aluminate cement for bone repair and remodeling applications

机译:含有LiCL的钙铝酸钙水泥的研制骨修复和改造应用

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摘要

The effect of LiCl additions on the in vitro bioactivity, hemolysis, cytotoxicity, compressive strength and setting time of calcium aluminate cements was studied. Calcium aluminate clinker (AC) was obtained via solid state reaction from reagent grade chemicals of CaCO3 and Al2O3. Calcium aluminate cements (CAC) were prepared by mixing the clinker with water or aqueous LiC1 solutions (0.01, 0.0125 or 0.015 M (M)) using a w/c ratio of OA. After 21 days of immersion in a simulated body fluid (SBF) at physiological conditions of temperature and pH, a Ca-P rich layer, identified as hydroxyapatite (HA), was formed on the cement without LiCI and on the cement prepared with 0.01 M of LiC1 solution. This indicates the high bioactivity of these cements. The cements setting times were significantly reduced using LiCl. The measured hemolysis percentages, all of them lower than 5%, indicated that the cements were not hemolytic The compressive strength of the cements was not negatively affected by the LiC1 additions. The obtained cement when a solution of LiC1 0.010 M was added, presented high compressive strength, appropriated bioactivity, no cytotoxicity and low setting time, making this material a potentially bone cement. (C) 2016 Elsevier B.V. All rights reserved.
机译:研究了LICL添加对体外生物活性,溶血,细胞毒性,抗抑制铝酸钙水泥的影响的影响。通过CaCO 3和Al2O3的试剂级化学物质通过固态反应获得铝酸钙熟料(AC)。通过使用OA的W / C比将熟料或0.01,0.0125或0.015m(m)混合来制备铝酸钙水泥(CAC)。在模拟体液(SBF)浸泡21天后,在温度的生理条件和pH的pH值下,在没有LICI的水泥上形成为羟基磷灰石(HA)的Ca-P富含层,并在用0.01米制备的水泥上形成水泥。 of lic1解决方案。这表明这些水泥的高生物活性。使用LICL,CENDED设置时间显着降低。测量的溶血率,所有这些溶血性低于5%,表明水泥未溶血,水泥的抗压强度没有受到LIC1添加的负面影响。当加入LIC10.010μm的溶液时,所获得的水泥,呈现高抗压强度,适当的生物活性,无细胞毒性和低凝固时间,使得该材料是潜在的骨水泥。 (c)2016年Elsevier B.v.保留所有权利。

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