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首页> 外文期刊>Biomaterials >Synthesis of a family of amphiphilic glycopolymers via controlled ring-opening polymerization of functionalized cyclic carbonates and their application in drug delivery.
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Synthesis of a family of amphiphilic glycopolymers via controlled ring-opening polymerization of functionalized cyclic carbonates and their application in drug delivery.

机译:通过功能化环状碳酸酯的受控开环聚合合成两亲糖聚合物,及其在药物递送中的应用。

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摘要

Polymers bearing pendant carbohydrates have a variety of biomedical applications especially in the area of targeted drug delivery. Here we report the synthesis of a family of amphiphilic block glycopolymers containing d glucose, d galactose and d mannose via metal-free organocatalyzed ring-opening polymerization of functional cyclic carbonates generating narrowly dispersed products of controlled molecular weight and end-group fidelity, and their application in drug delivery. These glycopolymers self-assemble into micelles having a high density of sugar molecules in the shell, a size less than 100 nm with narrow size distribution even after drug loading, and little cytotoxicity, which are important for drug delivery. Using galactose-containing micelles as an example, we demonstrate their strong targeting ability towards ASGP-R positive HepG2 liver cancer cells in comparison with ASGP-R negative HEK293 cells although the galactose is attached to the carbonate monomer at 6-position. The enhanced uptake of DOX-loaded galactose-containing micelles by HepG2 cells significantly increases cytotoxicity of DOX as compared to HEK293. This new family of amphiphilic block glycopolymers has great potential as carriers for targeted drug delivery.
机译:带有侧链碳水化合物的聚合物具有多种生物医学应用,特别是在靶向药物输送领域。在这里,我们报告了通过功能性环状碳酸酯的无金属有机催化开环聚合反应,合成了包含d葡萄糖,d半乳糖和d甘露糖的两亲嵌段糖聚合物,它们在受控的分子量和端基保真度的范围内分散分布,在药物输送中的应用。这些糖聚合物自组装成胶束,该胶束在壳中具有高密度的糖分子,小于100nm的尺寸,即使在加载药物后也具有狭窄的尺寸分布,并且几乎没有细胞毒性,这对于药物递送是重要的。以含半乳糖的胶束为例,尽管半乳糖在6位碳酸盐单体上附着,但与ASGP-R阴性HEK293细胞相比,我们证明了它们对ASGP-R阳性HepG2肝癌细胞具有较强的靶向能力。与HEK293相比,HepG2细胞增加了DOX负载的含半乳糖胶束的摄取,从而显着增加了DOX的细胞毒性。这种新的两亲性嵌段糖聚合物家族具有作为靶向药物递送载体的巨大潜力。

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