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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Self-assembly of polylactic acid and cholesterol-modified dextran into hollow nanocapsules
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Self-assembly of polylactic acid and cholesterol-modified dextran into hollow nanocapsules

机译:聚乳酸和胆固醇修饰的葡聚糖自组装成空心纳米胶囊

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A study of the direct preparation of hollow polymer nanocapsules which composed of the biocompatible and biodegradable polymers, polysaccharide and polylactic add (PLA), was presented. By the dialysis of a DMSO solution of cholesterol-modified dextran (Chol-Dex) and poly(D,L-lactic acid) against water, hollow polymer nanocapsules with a highly stable structure and relatively narrow size distribution were obtained. The formation mechanism and the effects of various factors such as PLA molecular weight and the weight ratio of Chol-Dex to PLA on the formation of hollow polymer nanocapsules were investigated by SEM, TEM and ~1H NMR analysis. The results showed that hollow capsules were obtained when the weight ratio of Chol-Dex to PLA was between 3:1 and 1:1, and when PLA of molecular weights greater than 360 Da were used. The hollow capsules with a sandwich shell structure derived from deposition of PLA and some amphiphilic polysaccharide on the internal interface of the polysaccharide-coated aggregates, which were formed through phase separation during the initial phase of the dialysis. This novel approach to hollow polymer nanocapsule formation represents a rare example of the self-assembly of two biocompatible polymers into nanometer-scale objects with interesting structures, shapes and morphology through a simple assembly process.
机译:提出了一种直接制备中空聚合物纳米胶囊的研究,该胶囊由生物相容性和可生物降解的聚合物,多糖和聚乳酸添加物(PLA)组成。通过将胆固醇改性的葡聚糖(Chol-Dex)和聚(D,L-乳酸)的DMSO溶液对水进行透析,获得了具有高度稳定的结构和相对窄的尺寸分布的中空聚合物纳米胶囊。通过SEM,TEM和〜1H NMR分析,研究了PLA分子量,Chol-Dex与PLA的重量比等因素的形成机理以及对空心聚合物纳米胶囊形成的影响。结果表明,当Chol-Dex与PLA的重量比在3:1和1:1之间,并且当使用分子量大于360 Da的PLA时,可获得中空胶囊。具有三明治壳结构的中空胶囊,是由在透析初期通过相分离形成的,在多糖包覆的聚集体的内部界面上沉积的PLA和一些两亲性多糖形成的。这种新颖的中空聚合物纳米胶囊形成方法代表了一种罕见的例子,即通过简单的组装过程将两种生物相容性聚合物自组装成具有有趣结构,形状和形态的纳米级物体。

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