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Role of soluble polymers on the preparation of functional thin films of calcium carbonate

机译:可溶性聚合物在碳酸钙功能薄膜制备中的作用

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摘要

The emerging science of nanobiotechnology relies on the observation that, through evolution, nature has produced highly complex nanostructures using macromolecules, especially nucleic acids, polysaccharides and proteins. Understanding the molecular mechanism of how these macromolecules interact to produce nanostructures is the key to the biomimetic materials design and synthesis. Calcium carbonate (CaCO3)-based biominerals such as nacre of mollusk shells have complex and hierarchal architectures on submicrometer length scales. The fabrication of such composite materials with control over the shape and properties can be achieved by adopting the natural process of template-driven biomineralization. Our strategy is to obtain nanostructured thin films of CaCO3 by tuning the chemical structures of organic matrices. Herein, we report the fabrication of functional thin films of aragonite, vaterite and calcite by a template-driven mineralization of calcium carbonate over a functionalized natural scaffold such as demineralized eggshell membrane. The functionalized templates were generated by the pre-adsorption of various soluble polymers such as polyaspartic acid (PAsp), polyglutamic acid (PGlu) and aspartic acid incorporated polyacrylic acid (PA-Asp). These biocompatible calcium carbonate coatings might be useful for tissue engineering applications and also for fundamental studies of cell-matrix interactions. (c) 2004 Elsevier B.V. All rights reserved.
机译:纳米生物技术的新兴科学依赖于这样的观察:通过进化,自然界已经利用大分子,尤其是核酸,多糖和蛋白质,产生了高度复杂的纳米结构。了解这些大分子如何相互作用以产生纳米结构的分子机制是仿生材料设计和合成的关键。基于碳酸钙(CaCO3)的生物矿物(如软体动物壳的珍珠层)在亚微米长的尺度上具有复杂的层次结构。可以通过采用模板驱动的生物矿化的自然过程来实现控制形状和特性的此类复合材料的制造。我们的策略是通过调整有机基质的化学结构来获得纳米结构的CaCO3薄膜。在本文中,我们报告了通过模板驱动的碳酸钙在功能化的天然支架(如脱矿质的蛋壳膜)上由模板驱动的碳酸钙矿化过程,从而生成文石,球ate石和方解石的功能性薄膜。通过预吸附各种可溶性聚合物(例如聚天冬氨酸(PAsp),聚谷氨酸(PGlu)和掺有天冬氨酸的聚丙烯酸(PA-Asp))来生成功能化模板。这些生物相容性碳酸钙涂层可能适用于组织工程应用以及细胞-基质相互作用的基础研究。 (c)2004 Elsevier B.V.保留所有权利。

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