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Formation of calcium alginate-based macroporous materials comprising chitosan and hydroxyapatite

机译:包含壳聚糖和羟基磷灰石的藻酸钙基大孔材料的形成

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Macroporous alginate hydrogels are prepared by the internal gelation method using crystalline saccharose. For this purpose, a sodium alginate solution containing D-glucono-δ-lactone and dispersed calcium carbonate particles was added to saccharose. Hydrolysis of D-glucono-δ-lactone gives rise to gradual acidification of the solution, which results in the decomposition of CaCO_3 with the release of calcium cations; the latter crosslink polysaccharide macromolecules via chelate complexes to cause the formation of a gel. Washing out saccharose with water results in the formation of pores separated by calcium alginate films with a thickness of smaller that 100 nm. It is shown that the proposed method can be applied to produce a composite material containing particles of hydroxyapatite, which is incorporated into implants to accelerate the repair of bone tissues. The particles are entrapped into alginate films. A cationic polysaccharide, chitosan, is additionally incorporated into the alginate materials for their reinforcement; its stabilizing action is achieved via the formation of a polyelectrolyte complex with negatively charged alginate macromolecules. Chitosan is incorporated by a new method, which consists in gradually charging the polysaccharide during the acidification of the solution as a result of D-glucono-δ-lactone hydrolysis. Materials thus prepared are characterized by different methods, including scanning electron microscopy, dynamic mechanical analysis, and porosimetry.
机译:大孔藻酸盐水凝胶是通过使用结晶蔗糖的内部凝胶化方法制备的。为此,将含有D-葡萄糖酸-δ-内酯和分散的碳酸钙颗粒的藻酸钠溶液添加到蔗糖中。 D-葡萄糖酸-δ-内酯的水解导致溶液逐渐酸化,从而导致CaCO_3分解并释放钙阳离子。后者通过螯合复合物交联多糖大分子,导致形成凝胶。用水洗掉蔗糖会导致形成孔,这些孔被藻酸钙薄膜分开,厚度小于100 nm。结果表明,所提出的方法可用于生产包含羟基磷灰石颗粒的复合材料,该复合材料被掺入植入物中以促进骨组织的修复。颗粒被截留成藻酸盐膜。藻类材料中还加入了阳离子多糖壳聚糖,以增强它们的活性。它的稳定作用是通过形成带有带负电荷的藻酸盐大分子的聚电解质复合物来实现的。壳聚糖是通过一种新方法加入的,该方法包括在溶液酸化过程中,由于D-葡萄糖酸-δ-内酯水解,逐渐使多糖带电。由此制备的材料通过不同的方法表征,包括扫描电子显微镜,动态力学分析和孔隙率法。

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