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Nanohydrogels Based on Self-Assembly of Cationic Pullulan and Anionic Dextran Derivatives for Efficient Delivery of Piroxicam

机译:基于阳离子支链淀粉和阴离子葡聚糖衍生物自组装的纳米水凝胶有效递送吡罗昔康

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摘要

A cationic derivative of pullulan was obtained by grafting reaction and used together with dextran sulfate to form polysaccharide-based nanohydrogel cross-linked via electrostatic interactions between polyions. Due to the polycation-polyanion interactions nanohydrogel particles were formed instantly and spontaneously in water. The nanoparticles were colloidally stable and their size and surface charge could be controlled by the polycation/polyanion ratio. The morphology of the obtained particles was visualized by scanning electron microscopy (SEM), transmission electron microscopy (TEM) and atomic force microscopy (AFM). The resulting structures were spherical, with hydrodynamic diameters in the range of 100–150 nm. The binding constant ( ) of a model drug, piroxicam, to the cationic pullulan (C-PUL) was determined by spectrophotometric measurements. The value of was calculated according to the Benesi—Hildebrand equation to be (3.6 ± 0.2) × 10 M . After binding to cationic pullulan, piroxicam was effectively entrapped inside the nanohydrogel particles and released in a controlled way. The obtained system was efficiently taken up by cells and was shown to be biocompatible.
机译:通过接枝反应获得支链淀粉的阳离子衍生物,并与硫酸葡聚糖一起使用以形成通过聚离子之间的静电相互作用而交联的基于多糖的纳米水凝胶。由于聚阳离子-聚阴离子的相互作用,纳米水凝胶颗粒在水中立即并自发形成。纳米粒子是胶体稳定的,并且其大小和表面电荷可以通过聚阳离子/聚阴离子的比率来控制。通过扫描电子显微镜(SEM),透射电子显微镜(TEM)和原子力显微镜(AFM)使获得的颗粒的形态可视化。所得结构为球形,流体力学直径在100–150 nm范围内。通过分光光度法测定模型药物吡罗昔康与阳离子支链淀粉(C-PUL)的结合常数()。根据Benesi-Hildebrand方程计算得出的值为(3.6±0.2)×10 M。与阳离子支链淀粉结合后,吡罗昔康被有效地截留在纳米水凝胶颗粒内部并以受控方式释放。所获得的系统被细胞有效地吸收,并且显示为生物相容的。

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