Centre of Molecular and Macromolecular Studies, Polish Academy of Sciences, Sienkiewicza 112, 90-363 Lodz, Poland.
Molecules. 2020 Jul 28;25(15):3404. doi: 10.3390/molecules25153404.
Cyclodextrins (CD) are a group of cyclic oligosaccharides with a cavity/specific structure that enables to form inclusion complexes (IC) with a variety of molecules through non-covalent host-guest interactions. By an elegant combination of CD with biocompatible, synthetic and natural polymers, different types of universal drug delivery systems with dynamic/reversible properties have been generated. This review presents the design of nano- and micro-carriers, hydrogels, and fibres based on the polymer/CD supramolecular systems highlighting their possible biomedical applications. Application of the most prominent hydrophobic aliphatic polyesters that exhibit biodegradability, represented by polylactide and polycaprolactone, is described first. Subsequently, particular attention is focused on materials obtained from hydrophilic polyethylene oxide. Moreover, examples are also presented for grafting of CD on polysaccharides. In summary, we show the application of host-guest interactions in multi-component functional biomaterials for controlled drug delivery.
环糊精(CD)是一组具有空腔/特定结构的环状低聚糖,能够通过非共价主客体相互作用与各种分子形成包合物(IC)。通过将 CD 与生物相容性的合成和天然聚合物巧妙结合,已经产生了不同类型的具有动态/可逆特性的通用药物传递系统。本综述介绍了基于聚合物/CD 超分子体系的纳米和微载体、水凝胶和纤维的设计,强调了它们在生物医学中的潜在应用。首先描述了具有生物降解性的最突出的疏水性脂肪族聚酯的应用,以聚乳酸和聚己内酯为代表。随后,特别关注了来自亲水性聚氧化乙烯的材料。此外,还介绍了将 CD 接枝到多糖上的例子。总之,我们展示了主客体相互作用在用于控制药物释放的多组分功能生物材料中的应用。