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Fibrous scaffolds fabricated by emulsion electrospinning: from hosting capacity to in vivo biocompatibility

机译:纤维支架的乳液电纺的:从宿主体内的能力生物相容性

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摘要

Electrospinning is a versatile method for preparing functional three-dimensional scaffolds. Synthetic and natural polymers have been used to produce micro-and nanofibers that mimic extracellular matrices. Here, we describe the use of emulsion electrospinning to prepare blended fibers capable of hosting aqueous species and releasing them in solution. The existence of an aqueous and a non-aqueous phase allows water-soluble molecules to be introduced without altering the structure and the degradation of the fibers, and means that their release properties under physiological conditions can be controlled. To demonstrate the loading capability and flexibility of the blend, various species were introduced, from magnetic nanoparticles and quantum rods to biological molecules. Cellular studies showed the spontaneous adhesion and alignment of cells along the fibers. Finally, in vivo experiments demonstrated the high biocompatibility and safety of the scaffolds up to 21 days post-implantation.
机译:电纺是一种通用的方法准备功能三维支架。合成和天然聚合物被用来模拟产生微观和纳米纤维细胞外基质。乳液电纺的准备混合纤维能够举办水物种和释放他们的解决方案。水和非水相允许水溶性分子引入改变结构的退化纤维,意味着他们的释放特性在生理条件下可以控制。证明装运能力和混合的灵活性,不同的物种介绍了磁性纳米颗粒和量子棒生物分子。研究表明,这种自发的附着力和沿着纤维排列的细胞。体内实验证明了高支架的生物相容性和安全性post-implantation 21天。

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