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通过反相蒸发法制备大豆磷脂酰胆碱-壳聚糖纳米囊泡:一项逐步研究。

Production of soybean phosphatidylcholine-chitosan nanovesicles by reverse phase evaporation: a step by step study.

作者信息

Mertins Omar, Sebben Marcelo, Pohlmann Adriana Raffin, da Silveira Nádya Pesce

机构信息

Instituto de Química, Universidade Federal do Rio Grande do Sul, Caixa Postal 15003, CEP 91501-970 Porto Alegre RS, Brazil.

出版信息

Chem Phys Lipids. 2005 Dec;138(1-2):29-37. doi: 10.1016/j.chemphyslip.2005.07.004. Epub 2005 Aug 24.

Abstract

In the present work, we describe the preparation of composite nanovesicles containing soybean phosphatidylcholine and polysaccharide chitosan by the reverse phase evaporation method. Nanovesicles free from chitosan prepared in the same way were studied as reference. The production method involves the preparation of reverse micelles followed by the formation of an organogel, which is dispersed in water to yield the final liposomal structures. Structural changes in each step of the nanovesicles preparation were studied by means of static and dynamic light scattering as well as small angle X-ray scattering. Chitosan was also fully characterized in solution. The hydrodynamic radius of the composite nanovesicles is in the range of 174-286 nm, depending on the chitosan contents. A comparison with nanovesicles free from chitosan indicates the existence of higher contents of multilamellae structures in the composites, as well as improved stability in water.

摘要

在本研究中,我们描述了通过反相蒸发法制备含有大豆磷脂酰胆碱和多糖壳聚糖的复合纳米囊泡的过程。以同样方式制备的不含壳聚糖的纳米囊泡作为对照进行研究。该制备方法包括制备反胶束,随后形成有机凝胶,将其分散在水中以得到最终的脂质体结构。通过静态和动态光散射以及小角X射线散射研究了纳米囊泡制备各步骤中的结构变化。壳聚糖在溶液中也进行了全面表征。复合纳米囊泡的流体动力学半径在174 - 286 nm范围内,这取决于壳聚糖的含量。与不含壳聚糖的纳米囊泡相比,结果表明复合材料中存在更高含量的多层结构,并且在水中的稳定性有所提高。

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