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首页> 外文期刊>Nanomaterials >Nano-Assemblies of Modified Cyclodextrins and Their Complexes with Guest Molecules: Incorporation in Nanostructured Membranes and Amphiphile Nanoarchitectonics Design
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Nano-Assemblies of Modified Cyclodextrins and Their Complexes with Guest Molecules: Incorporation in Nanostructured Membranes and Amphiphile Nanoarchitectonics Design

机译:修饰的环糊精的纳米组装及其与客体分子的配合物:纳入纳米结构膜和两亲纳米建筑设计中。

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A variety of cyclodextrin-based molecular structures, with substitutions of either primary or secondary faces of the natural oligosaccharide macrocycles of α-, β-, or γ-cyclodextrins, have been designed towards innovative applications of self-assembled cyclodextrin nanomaterials. Amphiphilic cyclodextrins have been obtained by chemical or enzymatic modifications of their macrocycles using phospholipidyl, peptidolipidyl, cholesteryl, and oligo(ethylene oxide) anchors as well as variable numbers of grafted hydrophobic hydrocarbon or fluorinated chains. These novel compounds may self-assemble in an aqueous medium into different types of supramolecular nanoassemblies (vesicles, micelles, nanorods, nanospheres, and other kinds of nanoparticles and liquid crystalline structures). This review discusses the supramolecular nanoarchitectures, which can be formed by amphiphilic cyclodextrin derivatives in mixtures with other molecules (phospholipids, surfactants, and olygonucleotides). Biomedical applications are foreseen for nanoencapsulation of drug molecules in the hydrophobic interchain volumes and nanocavities of the amphiphilic cyclodextrins (serving as drug carriers or pharmaceutical excipients), anticancer phototherapy, gene delivery, as well as for protection of instable active ingredients through inclusion complexation in nanostructured media.
机译:设计了多种基于环糊精的分子结构,取代了α-,β-或γ-环糊精的天然寡糖大环的一级或二级表面,可用于自组装环糊精纳米材料的创新应用。通过使用磷脂基,肽脂基,胆固醇基和低聚环氧乙烷锚定以及可变数目的接枝疏水烃或氟化链对它们的大环进行化学或酶修饰,可以得到两亲环糊精。这些新颖的化合物可以在水性介质中自组装成不同类型的超分子纳米组件(囊泡,胶束,纳米棒,纳米球以及其他种类的纳米颗粒和液晶结构)。这篇综述讨论了超分子的纳米结构,它可以由两亲环糊精衍生物与其他分子(磷脂,表面活性剂和寡核苷酸)的混合物形成。预计生物医学应用将药物分子纳米封装在两亲环糊精的疏水链间体积和纳米腔中(用作药物载体或药物赋形剂),抗癌光疗,基因传递,以及通过包含在纳米结构中的络合作用来保护不稳定的活性成分媒体。

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