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Fast-Dissolving Core-Shell Composite Microparticles of Quercetin Fabricated Using a Coaxial Electrospray Process

机译:同轴电喷雾工艺制备的槲皮素速溶核壳复合微粒

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摘要

This study reports on novel fast-dissolving core-shell composite microparticles of quercetin fabricated using coaxial electrospraying. A PVC-coated concentric spinneret was developed to conduct the electrospray process. A series of analyses were undertaken to characterize the resultant particles in terms of their morphology, the physical form of their components, and their functional performance. Scanning and transmission electron microscopies revealed that the microparticles had spherical morphologies with clear core-shell structure visible. Differential scanning calorimetry and X-ray diffraction verified that the quercetin active ingredient in the core and sucralose and sodium dodecyl sulfate (SDS) excipients in the shell existed in the amorphous state. This is believed to be a result of second-order interactions between the components; these could be observed by Fourier transform infrared spectroscopy. In vitro dissolution and permeation studies showed that the microparticles rapidly released the incorporated quercetin within one minute, and had permeation rates across the sublingual mucosa around 10 times faster than raw quercetin.
机译:这项研究报道了使用同轴电喷雾制备的槲皮素新型快速溶解的核壳复合微粒。开发了涂有PVC的同心喷丝头以进行电喷涂工艺。进行了一系列分析,以根据所得粒子的形态,成分的物理形式及其功能性能来表征。扫描和透射电子显微镜检查表明,该微粒具有球形形态,可见清晰的核-壳结构。差示扫描量热法和X射线衍射证实核中的槲皮素活性成分以及壳中的三氯蔗糖和十二烷基硫酸钠(SDS)赋形剂以非晶态存在。据信这是组件之间的二次交互作用的结果;这些可以通过傅立叶变换红外光谱法观察到。体外溶出度和渗透性研究表明,微粒在1分钟内迅速释放出并入的槲皮素,并且穿过舌下粘膜的渗透速率比生槲皮素快约10倍。

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