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Layer by Layer Mesoporous Silica-Hyaluronic Acid-Cyclodextrin Bifunctional Lamination: Study of the Application of Fluorescent Probe and Host–Guest Interactions in the Drug Delivery Field

机译:层状介孔二氧化硅-透明质酸-环糊精双功能层压:荧光探针和主客体相互作用在药物输送领域中的应用研究

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摘要

The layer-by-layer technique was exploited to adjust the magnitude of the host–guest interactions between adamantane and cyclodextrin. The effect depends on numerous complex and changeable growth profiles of the films and the number of bilayers. These composite films of mesoporous silica nanoparticles and hyaluronic acid–cyclodextrin(HA-CD) were constructed to load the fluorescent dyes and peptides. The release rates of these molecules would decrease with an increase in the number of layers. A laser scanning confocal microscope was utilized to obtain the diffusion coefficient of fluorescein isothiocyanate. Hybrid films could be applied to increase the loading of different kinds of molecules and could also be integrated into the lamination to delay the rate of release.
机译:利用了逐层技术来调节金刚烷和环糊精之间的主客相互作用。效果取决于薄膜的众多复杂且可变的生长曲线以及双层的数量。这些介孔二氧化硅纳米粒子和透明质酸-环糊精(HA-CD)的复合膜被构建为负载荧光染料和肽。这些分子的释放速率将随着层数的增加而降低。利用激光共聚焦显微镜获得异硫氰酸荧光素的扩散系数。杂化膜可用于增加不同种类分子的负载量,也可集成到层压板中以延迟释放速度。

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