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The Influence of a Protein Fragment Extracted from Abalone Shell Green Layer on the Precipitation of Calcium Carbonate Polymorphs in Aqueous Media

机译:从鲍鱼壳绿色层中提取的蛋白质片段对水介质中碳酸钙多晶型物沉淀的影响

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摘要

Many living organisms form mineral phases through biologically controlled processes, known as biomineralization. Thus created materials are composites of both, mineral and organic components. The shell of the gastropod mollusc red abalone (Haliotis rufescens) consists of calcite and aragonite layers, each of them containing characteristic biopolymers responsible for biomineralization. In this work, the effect of interstitial green sheet polypeptide, GP, extracted from the green layer of the mollusc red abalone shell, on the process of spontaneous precipitation of calcium carbonate polymorphs, was investigated. Three precipitation systems, in which the initial mineralogical composition of the precipitate was different, have been studied. Thus, in system (1) calcite appeared, in system (2) a mixture of calcite and vaterite was found, while in system (3), ASW, only aragonite precipitated. However, the precipitation kinetic measurements, X-ray diffraction, FT-IR spectroscopy, and light and scanning electron microscopy indicated that the addition of GP in the model systems caused the inhibition of precipitation and change of morphology of crystals as a consequence of GP adsorption on the crystal surfaces and its entrapment into the mineral structure.
机译:许多活生物体通过称为生物矿化的生物控制过程形成矿物质相。如此创建的材料是矿物和有机成分的复合材料。腹足类软体动物红鲍鱼的壳由方解石和文石层组成,每层均包含负责生物矿化的特征性生物聚合物。在这项工作中,研究了从软体动物红鲍鱼壳的绿色层提取的间质性绿色片状多肽GP对碳酸钙多晶型物自发沉淀的作用。已经研究了三种沉淀物系统,其中沉淀物的初始矿物学组成不同。因此,在系统(1)中出现了方解石,在系统(2)中发现了方解石和球ate石的混合物,而在系统(3)中,仅发现了文石沉淀。然而,沉淀动力学测量,X射线衍射,FT-IR光谱以及光和扫描电子显微镜表明,模型系统中GP的添加由于GP吸附而导致了沉淀的抑制和晶体形态的改变。在晶体表面上的沉积及其在矿物结构中的包裹。

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