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Trace elemental imaging of coralline hydroxyapatite by laser-ablation inductively coupled plasma-mass spectroscopy

机译:激光烧蚀电感耦合等离子体质谱法测定珊瑚羟基磷灰石的痕量元素成像

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摘要

The determination of trace element concentrations, as well as their distribution in different biomaterials aimed for clinical applications, is a challenging task in both the areas of biological and materials research. In this research, LA-ICP-MS was employed for image mapping of the trace element distribution in a hydrothermally converted coralline hydroxyapatite material aimed for tissue-scaffolding applications. Quantification using synthetic matrix-matched standards was successfully applied for the determination and distribution of elements of interest, Sr and Mg, that influences the mechanical and biological properties of hydroxyapatite-based bone graft materials. The results showed that the instrument can successfully analyse trace elements and a relatively good image can be produced that identifies their distribution. The LA-ICP-MS method can provide an easy and effective tool, in the field of biomaterials with respect to distribution of trace elements, to better understand tissue-implant interactions, and will open up a new window for in vitro and in vivo analysis and imaging of different tissues and structures.
机译:在生物和材料研究领域,测定痕量元素的浓度以及它们在针对临床应用的不同生物材料中的分布是一项艰巨的任务。在这项研究中,LA-ICP-MS被用于水热转化的珊瑚羟基磷灰石材料中痕量元素分布的图像映射,该材料旨在用于组织支架。使用合成基质匹配标准品进行的定量成功地用于确定和分布影响羟基磷灰石基骨移植材料的机械和生物学特性的目标元素Sr和Mg。结果表明,该仪器可以成功地分析痕量元素,并且可以产生识别其分布的相对较好的图像。 LA-ICP-MS方法可以为生物材料领域中微量元素的分布提供一种简单有效的工具,以更好地了解组织与植入物之间的相互作用,并为体外和体内分析打开新的窗口以及不同组织和结构的成像。

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