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Microwave Hydrothermal Transformation of Amorphous Calcium Carbonate Nanospheres and Application in Protein Adsorption

机译:非晶态碳酸钙纳米球的微波水热转化及其在蛋白质吸附中的应用

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Calcium carbonate and calcium phosphate are the main components of biominerals. Among all of the forms of biominerals, amorphous calcium carbonate (ACC) and amorphous calcium phosphate (ACP) are the most important forms because they play a pivotal role in the process of biomineralization and are the precursors to the crystalline polymorphs. In this work, we first synthesized ACC in vitro using adenosine 5'-triphosphate disodium salt (ATP) as the stabilizer and investigated the transformation of the ACC under microwave hydrothermal conditions, and ACC/ACP composite nanospheres and carbonated hydroxyapatite (CHA) nanospheres were successfully prepared. In this novel strategy, ATP has two main functions: it serves as the stabilizer for ACC and the phosphorus source for ACP and CHA. Most importantly, the morphology and the size of the ACC precursor can be well-preserved after microwave heating, so it provides a new method for the preparation of calcium phosphate nanostructured materials using phosphorus-containing biomolecule-stabilized ACC as the precursor. Furthermore, the as-prepared ACC/ACP composite nanospheres have excellent biocompatibility and high protein adsorption capacity, indicating that they are promising for applications in biomedical fields such as drug delivery and protein, adsorption.
机译:碳酸钙和磷酸钙是生物矿物的主要成分。在所有生物矿物质形式中,无定形碳酸钙(ACC)和无定形磷酸钙(ACP)是最重要的形式,因为它们在生物矿化过程中起着关键作用,并且是结晶多晶型物的前体。在这项工作中,我们首先以5'-三磷酸腺苷钠(ATP)为稳定剂体外合成了ACC,并研究了在微波水热条件下ACC的转化,ACC / ACP复合纳米球和碳酸羟基磷灰石(CHA)纳米球是准备成功。在这种新颖的策略中,ATP具有两个主要功能:它充当ACC的稳定剂以及ACP和CHA的磷源。最重要的是,微波加热后可以很好地保留ACC前体的形貌和尺寸,因此为以含磷生物分子稳定的ACC为前体制备磷酸钙纳米结构材料提供了一种新方法。此外,所制备的ACC / ACP复合纳米球具有优异的生物相容性和高蛋白吸附能力,表明它们有望在生物医学领域中应用,例如药物递送和蛋白吸附。

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