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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Micro-PIXE characterization of interactions between a sol-gel derived bioactive glass and biological fluids
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Micro-PIXE characterization of interactions between a sol-gel derived bioactive glass and biological fluids

机译:溶胶-凝胶衍生的生物活性玻璃与生物流体之间相互作用的Micro-PIXE表征

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Bioactive glasses possess the ability to bond to living tissues through the formation of a calcium phosphate-rich layer at their interface with living tissues. This paper reports the different steps of this bioactivity process via a complete micro-PIXE characterization of a sol-gel derived SiO_2-CaO bioactive glass in contact with biological fluids for different delays. Multi-elemental cartography at the glass/biological fluids interface together with major and trace elements quantification permit a better understanding of the five reaction stages involved in the bioactivity mechanisms. The presence of phosphorus was detected at the periphery of the material within 6 h of interaction with biological fluids. A calcium phosphate-rich layer containing magnesium is formed after a few days of interaction and presence of bone-like apatite is deduced from the calculation of the Ca/P ratio at the material interface. That is of deep interest for clinical applications, because this biologically active behavior results in the formation of a strong interfacial bond between the glass and host tissues, and will stimulate bone-cell proliferation.
机译:生物活性玻璃具有通过在与生物组织的界面处形成富含磷酸钙的层而与生物组织结合的能力。本文通过溶胶-凝胶衍生的SiO_2-CaO生物活性玻璃与生物流体接触不同延迟的完整micro-PIXE表征,报告了该生物活性过程的不同步骤。玻璃/生物流体界面的多元素制图以及主要和痕量元素的定量分析可以更好地理解生物活性机制中涉及的五个反应阶段。在与生物流体相互作用的6小时内,在材料的外围检测到了磷的存在。相互作用数天后,形成了富含镁的富含磷酸钙的层,并且通过计算材料界面处的Ca / P比可以推断出骨状磷灰石的存在。这在临床应用中引起了极大的兴趣,因为这种生物学活性行为导致玻璃与宿主组织之间形成牢固的界面结合,并会刺激骨细胞增殖。

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