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An atomic scale comparison of the reaction of Bioglass® in two types of simulated body fluid

机译:两种模拟体液中Bioglass®反应的原子尺度比较

摘要

A class of melt quenched silicate glasses, containing calcium, phosphorus and alkali metals, and having the ability to promote bone regeneration and to fuse to living bone, is produced commercially as Bioglass. The changes in structure associated with reacting the bioglass with a body fluid simulant (a buffered Tris(hydroxymethyl)aminomethane growth medium solution or a blood plasma-like salt simulated body fluid) at 37°C have been studied using both high energy and grazing incidence x-ray diffraction. This has corroborated the generic conclusions of earlier studies based on the use of calcia-silica sol-gel glasses whilst highlighting the important differences associated with glass composition; the results also reveal the more subtle effects on reaction rates of the choice of body fluid simulant. The results also indicate the presence of tricalcium phosphate crystallites deposited onto the surface of the glass as a precursor to the growth of hydroxyapatite, and indicates that there is some preferred orientation to their growth.
机译:商业上生产出一类含有钙,磷和碱金属的熔融淬火硅酸盐玻璃,它具有促进骨骼再生和融合至活骨的能力,是作为生物玻璃生产的。使用高能量和掠射发生率研究了与生物玻璃与体液模拟物(缓冲的Tris(羟甲基)氨基甲烷生长介质溶液或血浆类盐模拟体液)反应相关的结构变化。 X射线衍射。这证实了基于氧化钙-二氧化硅溶胶-凝胶玻璃的使用的早期研究的一般结论,同时强调了与玻璃成分相关的重要差异;结果还显示,选择体液模拟物对反应速率的影响更为微妙。结果还表明存在磷酸三钙微晶作为羟基磷灰石生长的前体沉积在玻璃表面上,并且表明它们的生长具有某些优选的取向。

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