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Core-shell nanofibers as drug delivery systems

机译:作为药物递送系统的核心壳纳米纤维

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Core-shell nanofibers have grown in popularity over the last decade owing to their special features and their many applications in biomedicine. They can be produced by electrospinning of immiscible polymer blends or emulsions through a single nozzle or by electrospinning using a coaxial nozzle. Several of the electrospinning parameters allow great versatility for the compositions and diameters of core-shell nanofibers to be produced. Morphology of core-shell nanofibers can be investigated using transmission electron microscopy and, in some cases, scanning electron microscopy. Several studies have shown that core-shell nanofibers have some advantages over monolithic nanofibers, such as better drug, protein, gene or probiotic incorporation into the nanofibers, greater control over drug release, and maintenance of protein structure and activity during electrospinning. We herein review the production and characterization of core-shell nanofibers, the critical parameters that affect their development, and their advantages as delivery systems.
机译:由于他们的特殊功能和生物医学中的许多应用,核心壳纳米纤维在过去十年中已经普及。它们可以通过静电纺丝通过单个喷嘴或通过使用同轴喷嘴进行静电纺丝来生产。几个静电纺丝参数对于待制备的核 - 壳纳米纤维的组合物和直径来说是极大的通用性。可以使用透射电子显微镜研究芯壳纳米纤维的形态,在一些情况下,扫描电子显微镜检查。几项研究表明,核 - 壳纳纤维在整体型纳米纤维上具有一些优点,例如更好的药物,蛋白质,基因或益生菌掺入纳米纤维中,对药物释放的更大控制,以及在静电纺丝期间的蛋白质结构和活性的维持。我们在此方面述评核心壳纳米纤维的生产和表征,影响其发展的关键参数及其作为递送系统的优势。

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