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Three-dimensional electrospun alginate nanofiber mats via tailored charge repulsions

机译:通过量身定制的电荷排斥力实现三维电纺藻酸盐纳米纤维毡

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摘要

The formation of 3D electrospun mat structures from alginate-polyethylene oxide (PEO) solution blends is reported. These unique architectures expand the capabilities of traditional electrospun mats for applications such as regenerative medicine, where a scaffold can help to promote tissue growth in three dimensions. The mat structures extend off the surface of the flat collector plate without the need of any modifications in the electrospinning apparatus, are self-supported when the electric field is removed, and are composed of bundles of nanofibers. A mechanism for the unique formations is proposed, based on the fiber-fiber repulsions from surface charges on the negatively charged alginate. Furthermore, the role of the electric field in the distribution of alginate within the nanofibers is discussed. X-ray photoelectron spectroscopy is used to analyze the surface composition of the electrospun nanofiber mats and the data is related to cast films made in the absence of the electric field. Further techniques to tailor the 3D architecture and nanofiber morphology by changing the surface tension and relative humidity are also discussed.
机译:据报道,由藻酸盐-聚环氧乙烷(PEO)溶液共混物形成的3D电纺垫结构。这些独特的体系结构扩展了传统电纺垫在再生医学等应用中的功能,在该领域中,支架可以帮助促进组织在三个维度上的生长。垫结构从平面集电器板的表面延伸而无需在电纺丝设备中进行任何修改,在去除电场时可自支撑,并且由纳米纤维束组成。基于带负电荷的藻酸盐表面电荷对纤维的排斥,提出了一种独特的形成机理。此外,讨论了电场在纳米纤维内藻酸盐分布中的作用。 X射线光电子能谱法用于分析电纺纳米纤维毡的表面成分,数据与在没有电场的情况下制得的流延膜有关。还讨论了通过更改表面张力和相对湿度来定制3D结构和纳米纤维形态的其他技术。

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