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Electrospun acid-base pair solid dispersions of quercetin

机译:槲皮素的静电纺丝酸碱对固体分散体

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In this work, electrospinning was used to fabricate core-shell nanofibers containing acid-base pairs. Quercetin was used as a model active ingredient. To exploit its solubility in basic conditions, a solution of quercetin, polyvinylpyrrolidone (PVP) and sodium hydroxide was used as the core fluid, and one consisting of citric acid and PVP as the shell fluid. Scanning and transmission electron microscopy demonstrated that core-shell nanofibers with linear morphologies were obtained, without beads or spindles. X-ray diffraction showed that quercetin was present in the fibers in an amorphous state; Fourier transform infrared spectroscopy indicated this may be a result of hydrogen bonding between the drug and the polymer matrix. In in vitro dissolution tests the drug was found to be released immediately when the fibers encountered an aqueous medium. There was no change in the pH of the medium after dissolution, as a result of the presence of the acid-base pair. This provides a new strategy for improving the dissolution behavior of poorly water-soluble drugs using polymeric nanostructures.
机译:在这项工作中,静电纺丝被用来制造包含酸碱对的核-壳纳米纤维。槲皮素用作模型活性成分。为了利用其在碱性条件下的溶解度,将槲皮素,聚乙烯吡咯烷酮(PVP)和氢氧化钠的溶液用作核心流体,并用柠檬酸和PVP组成的壳液。扫描和透射电子显微镜表明,获得了具有线性形态的核-壳纳米纤维,没有珠或纺锤体。 X射线衍射表明槲皮素以无定形状态存在于纤维中。傅立叶变换红外光谱表明,这可能是药物与聚合物基质之间氢键结合的结果。在体外溶出试验中,发现当纤维遇到水性介质时,药物会立即释放。由于存在酸碱对,溶解后培养基的pH值没有变化。这提供了使用聚合物纳米结构改善水溶性差的药物的溶解行为的新策略。

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