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Technological Progress in Manufacturing Electrospun Nanofibers for Medical Applications

机译:医疗应用制造电纺纳米纤维的技术进步

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The very adaptable performance of electrospun nanofibers is the result of the choice of the natural or synthetic polymer/polymer blend, work environment and process parameters, which allows the appropriate control of morphology and properties of the products. To offer an ample update on progress in the field, this review provides an overview of the modification or functionalization of nanofibers for biomedical applications, intended to engineer precise features that will enhance their end use performance. Diverse concepts, such as single electrospinning, co-electrospinning, coaxial electrospinning or miniemulsion electrospinning, and technological factors that can influence the capability to incorporate biological agents with diverse features and to modify the release conduct are studied. The many bioactive molecules that can be integrated into nanofibers via diverse approaches are revised, including bactericide agents, various drugs, proteins and enzymes. Future trends of nanofiber functionalization in order to improve their performance and function in biomedical applications are presented.
机译:Electrom an纳米纤维的非常适应性的性能是选择天然或合成聚合物/聚合物共混物,工作环境和工艺参数的结果,这允许适当控制产品的形态和性质。为了提供有关该领域的进展的充分更新,本综述概述了纳米纤维用于生物医学应用的纳米纤维的功能化概述,旨在为能够提高其最终使用性能的精确功能。各种概念,例如单静电纺丝,共静电纺丝,同轴静电纺丝或微乳液静力,以及能够影响掺入具有多样化特征和改变释放行为的生物药物能力的技术因素。可以通过各种方法整合到纳米纤维中的许多生物活性分子,包括杀菌剂,各种药物,蛋白质和酶。提出了纳米纤维功能化的未来趋势,以提高其在生物医学应用中的性能和功能。

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