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Fabrication of sustained-release zein nanoparticles via modified coaxial electrospraying

机译:缓释玉米醇溶蛋白纳米颗粒的制备通过改性同轴电喷雾

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Graphical abstractDisplay OmittedHighlights?Modified coaxial electrospraying process with a solvent as a shell fluid.?The microformation mechanism of round medicated zein nanoparticles.?he influence of a key parameter shell-to-core fluid flow rate ratio was disclosed.?Improved sustained release profile of the loaded anti-cancer drug.AbstractA modified coaxial electrospraying process, which was characterized by the use of pure solvent as a sheath working fluid, was developed for the continuous and robust generation of medicated nanoparticles. Tamoxifen citrate (TAM) was encapsulated in zein, a plant protein. The influences of the key parameter shell-to-core fluid flow rate on the electrospraying processes and on the resulting protein-based composite particles were investigated in detail. Scanning electron microscopy images revealed that compared with particles preparedviathe traditional single-fluid process, TAM-loaded zein particles preparedviathe modified coaxial process were rounder with smaller diameters, narrower smaller size distribution, and more compact inner structures. Owing to the reinforced secondary interactions between TAM and zein, all the particles were similarly amorphous composites, as verified by their X-ray patterns and attenuated total reflectance–Fourier transform infrared spectra. The medicated nanoparticles synthesizedviathe coaxial process exhibited a better drug sustained-release profile than those synthesizedviathe traditional single-fluid process, with a smaller initial burst release, longer release period, and shorter tailing-off stage. The microformation mechanisms of the electrosprayed particles and their drug sustained-release mechanisms were suggested. By altering the traditional concept of electrospraying, the modified coaxial electrospraying method developed in this study provides a powerful new process for the generation of nanoparticles with novel structures and functions.]]>
机译:<![cdata [ 图形摘要 显示省略 突出显示 < CE:简单段ID =“SP0010”View =“全部”> 改进的同轴电喷雾过程用溶剂作为壳液。 圆形药物玉米醇纳米粒子的微细种机制。< / ce:para> 公开了他对关键参数壳壳到核心流体流量比的影响。 改进了加载的抗癌药物的持续释放概况。 < / ce:list> 抽象 a改性同轴电喷雾过程,其特征在于使用纯溶剂作为护套工作流体,用于含药纳米粒子的连续和稳健的产生。 Tamoxifen柠檬酸盐(TAM)被包封在玉米醇溶蛋白中,植物蛋白。详细研究了关键参数壳 - 核心流体流速对电喷雾过程和所得蛋白质基复合颗粒的影响。扫描电子显微镜图像显示,与制备的颗粒和斜体>通过传统的单流体工艺相比,制备的Tam-Loaded玉米醇溶蛋白颗粒,通过斜体>改性同轴过程是较小的直径的圆角,较小的尺寸分布较窄,内部结构更紧凑。由于TAM和ZEIN之间的增强的二次相互作用,所有颗粒都是类似的非晶复合材料,其通过其X射线图案验证并减弱总反射率 - 傅立叶变换红外光谱。通过斜体>通过通过通过传统的单流程过程,同轴过程具有更好的药物缓释曲线,斜体>斜体>斜体>斜体>斜体>较小的初始突发释放,更长的释放期,较短的拖尾阶段。提出了电喷雾颗粒的微细种机制及其药物缓释机制。通过改变电喷雾的传统概念,该研究中开发的改进的同轴电喷雾方法为具有新颖结构和功能的纳米颗粒产生了强大的新方法。 < / ce:摘要>]]>

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