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Topographical and Biomechanical Guidance of Electrospun Fibers for Biomedical Applications

机译:用于生物医学应用的电纺纤维的地形和生物力学指导

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摘要

Electrospinning is gaining increasing interest in the biomedical field as an eco-friendly and economic technique for production of random and oriented polymeric fibers. The aim of this review was to give an overview of electrospinning potentialities in the production of fibers for biomedical applications with a focus on the possibility to combine biomechanical and topographical stimuli. In fact, selection of the polymer and the eventual surface modification of the fibers allow selection of the proper chemical/biological signal to be administered to the cells. Moreover, a proper design of fiber orientation, dimension, and topography can give the opportunity to drive cell growth also from a spatial standpoint. At this purpose, the review contains a first introduction on potentialities of electrospinning for the obtainment of random and oriented fibers both with synthetic and natural polymers. The biological phenomena which can be guided and promoted by fibers composition and topography are in depth investigated and discussed in the second section of the paper. Finally, the recent strategies developed in the scientific community for the realization of electrospun fibers and for their surface modification for biomedical application are presented and discussed in the last section.
机译:静电纺丝正在增加生物医学领域的兴趣,作为生产随机和取向聚合物纤维的环保和经济技术。本综述的目的是概述静电纺丝潜力在为生物医学应用中生产纤维,重点是将生物力学和地形刺激结合的可能性。事实上,选择聚合物和纤维的最终表面改性允许选择待施用于细胞的适当的化学/生物学信号。此外,纤维方向,尺寸和地形的适当设计可以赋予从空间角度来驱动细胞生长的机会。此时,审查载有关于静电纺丝的潜在性的首次介绍,用于获得合成和天然聚合物的随机和取向纤维。通过纤维组成和形貌可以引导和促进的生物现象深入研究并在纸张的第二部分中讨论。最后,在最后一节中提出并讨论了科学界中实现了用于实现耐电纺纤维和其表面改性的科学界中最近开发的策略。

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