首页> 外文期刊>Analytical and Bioanalytical Chemistry >Synchrotron-based photoelectron spectroscopy provides evidence for a molecular bond between calcium and mineralizing organic phases in invertebrate calcareous skeletons
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Synchrotron-based photoelectron spectroscopy provides evidence for a molecular bond between calcium and mineralizing organic phases in invertebrate calcareous skeletons

机译:基于同步加速器的光电子能谱为无钙钙质骨架中钙与矿化有机相之间的分子键提供了证据

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摘要

Organic compounds have been extracted from calcium carbonate skeletons produced by three invertebrate species belonging to distinct phyla. The soluble parts of these skeleton matrices were isolated and analysed by synchrotron-based X-ray spectroscopy (XPS). The presence of calcium associated with these organic materials was revealed in every sample studied, with important variations in Ca 2p binding energy from species to species. Measured Ca 2p binding energy values are more related to compositional diversity of the mineralizing matrices of the skeletons, whose taxonomic dependence has long been established, than to the Ca carbonate polymorph selected to build the skeletal units. This suggests a physical bond between species-specific mineralizing organic assemblages and the associated calcium. Remarkably, the binding energy of 2p electrons in calcium associated with mineralizing matrices is consistently higher than Ca 2p values obtained in purely mineral carbonate (both calcite and aragonite). The ability both to identify and measure the effect of organic matrices on their mineral counterpart in calcareous biominerals opens a new perspective for a functional approach to the biomineralization process.
机译:从属于不同门的三种无脊椎动物产生的碳酸钙骨架中提取了有机化合物。分离并通过基于同步加速器的X射线光谱(XPS)分析这些骨架基质的可溶部分。在每个研究的样品中都发现了与这些有机物质相关的钙的存在,并且各个物种之间的Ca 2p结合能发生了重要变化。 Ca 2p结合能的测量值与骨骼的矿化基质的组成多样性有关,骨骼的矿化基质早已建立了分类学依赖性,与所选择的建立骨架单元的碳酸钙多晶型有关。这表明物种特异性矿化有机组合与相关钙之间存在物理键。值得注意的是,与矿化基质相关的钙中2p电子的结合能始终高于纯矿物碳酸盐(方解石和文石)中的Ca 2p值。识别和测量钙质生物矿物质中有机基质对其矿物对应物的影响的能力为生物矿化过程的功能方法开辟了新的前景。

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