用HEPES缓冲的模拟体液监测生物玻璃的溶解/沉淀行为

IF 5.2 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Diana Horkavcová, Eliška Sedláčková, Petr Bezdička, Miloslav Lhotka, Karolína Pánová and Aleš Helebrant
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引用次数: 0

摘要

本研究研究了以沙砾形式存在的生物活性玻璃与添加HEPES缓冲液(SBF+H)的模拟体液的7天相互作用。采用TRIS缓冲的标准液(SBF+T)和未缓冲的标准液(SBF-Ø)进行比较。为了更准确地了解这一过程,每小时(1H、2H、4H)和每天(1D、2D、3D、4D、7D)对物料和渗滤液进行分析。在体外静态测试中,测量了材料的重量和比表面积,并通过SEM/EDS和XRD监测了材料性质/组成的表面和体积变化。定期收集溶液渗滤液样品,以测定钙、硅和(PO4)3−的浓度,并测量ph。暴露于SBF+T和SBF+H后,材料表面形成新的羟基磷灰石晶体层。SBF+H处理的材料溶解量小于SBF+T处理,但其表面羟基磷灰石层的生长速度更快。材料只暴露在SBF-Ø没有任何缓冲溶解少得多,而离子释放到溶液非常迅速地重新沉淀在表面上。结果在表面逐渐形成了三层不同厚度的含Si、Ca和P的非晶层。材料和溶液分析的结果清楚地表明HEPES和TRIS缓冲液对生物活性玻璃表面羟基磷灰石的形成有显著的影响。具有高生物活性生物玻璃的HEPES缓冲液的行为与TRIS缓冲液非常相似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Monitoring of the dissolution/precipitation behavior of bioglass with simulated body fluid buffered by HEPES

Monitoring of the dissolution/precipitation behavior of bioglass with simulated body fluid buffered by HEPES

This research work investigates a 7-day interaction of bioactive glass in the form of grit with simulated body fluid with addition of HEPES buffer (SBF+H). The standard fluid buffered by TRIS (SBF+T) and unbuffered (SBF-Ø) were used for comparison. To understand the process more precisely, the material and the leachates were analyzed at hourly (1H, 2H, 4H) and daily (1D, 2D, 3D, 4D, 7D) intervals. During the static in vitro test the weight and specific surface area of the materials were measured and the surface and volume changes of the material character/composition were monitored by SEM/EDS and XRD. Samples of solution leachates were collected at regular intervals to determine concentrations of calcium, silicon and (PO4)3− and to measure pH. After exposure in SBF+T and SBF+H a new crystalline layer of hydroxyapatite formed on the material surface. The material exposed to SBF+H dissolved less than the one exposed to SBF+T but the hydroxyapatite layer on its surface grew faster. The material exposed only to SBF-Ø without any buffer dissolved much less, while the ions released into the solution very rapidly re-precipitated on the surface. As a result, three amorphous layers containing Si, Ca and P with different thicknesses were gradually formed on the surface. Results of material and solution analyses have clearly shown that both HEPES and TRIS buffers have a significant effect on the formation of hydroxyapatite on the surface of bioactive glass. The behavior of the HEPES buffer with highly bioactive bioglass is very similar to that of the TRIS buffer.

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来源期刊
Materials Advances
Materials Advances MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
7.60
自引率
2.00%
发文量
665
审稿时长
5 weeks
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