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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Highly versatile nanohydrogel platform based on riboflavin-polysaccharide derivatives useful in the development of intrinsically fluorescent and cytocompatible drug carriers
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Highly versatile nanohydrogel platform based on riboflavin-polysaccharide derivatives useful in the development of intrinsically fluorescent and cytocompatible drug carriers

机译:基于核黄素-多糖衍生物的多功能纳米水凝胶平台,可用于开发固有荧光和细胞相容性药物载体

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摘要

In this work we describe a new nanohydrogel platform, based on polysaccharides modified with the hydrophobic and fluorescent molecule riboflavin tetrabutyrate, which leads to innovative structures useful for drug delivery applications. Hyaluronic acid and pullulan were chosen as representative of anionic and neutral polysaccharides, respectively, and the bromohexyl derivative of riboflavin tetrabutyrate was chemically linked to these polymer chains. Because of such derivatization, polymer chains were able to self-assemble in aqueous environment thus forming nanohydrogels, with mean diameters of about 312 and 210 nm, for hyaluronan and pullulan, respectively. These new nanohydrogels showed low poly-dispersity index, and negative zeta-potential. Moreover, the nanohydrogels, which can be easily loaded with model drugs, showed long-term stability in water and physiological conditions and excellent cytocompatibility. All these properties allow to consider these intrinsically fluorescent nanohydrogels suitable for the formulation of innovative drug dosage forms. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在这项工作中,我们描述了一种新的纳米水凝胶平台,该平台基于经疏水和荧光分子四丁酸核黄素修饰的多糖,从而产生了可用于药物输送应用的创新结构。分别选择透明质酸和支链淀粉作为阴离子和中性多糖的代表,并将核黄素四丁酸酯的溴己基衍生物化学连接到这些聚合物链上。由于这种衍生作用,聚合物链能够在水性环境中自组装,从而形成透明质酸和支链淀粉分别具有约312和210nm的平均直径的纳米水凝胶。这些新的纳米水凝胶显示出低的多分散指数和负的ζ电势。此外,纳米水凝胶可轻松装载模型药物,在水和生理条件下显示出长期稳定性,并具有出色的细胞相容性。所有这些特性使我们可以考虑将这些固有荧光纳米水凝胶用于创新药物剂型的配制。 (C)2014 Elsevier Ltd.保留所有权利。

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