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Fabrication of Stable Nanofiber Matrices for Tissue Engineering via Electrospinning of Bare Laser-Synthesized Au Nanoparticles in Solutions of High Molecular Weight Chitosan

机译:通过在高分子量壳聚糖溶液中静电纺制裸激光合成金纳米粒子制备用于组织工程的稳定纳米纤维基质。

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摘要

We report a methodology for the fabrication of neutralized chitosan-based nanofiber matrices decorated with bare Au nanoparticles, which demonstrate stable characteristics even after prolonged contact with a biological environment. The methodology consists of electrospinning of a mixture of bare (ligand-free) laser-synthesized Au nanoparticles (AuNPs) and solutions of chitosan/polyethylene oxide (ratio 1/3) containing chitosan of a relatively high molecular weight (200 kDa) and concentration of 3% (w/v). Our studies reveal a continuous morphology of hybrid nanofibers with the mean fiber diameter of 189 nm ± 86 nm, which demonstrate a high thermal stability. Finally, we describe a protocol for the neutralization of nanofibers, which enabled us to achieve their structural stability in phosphate-buffered saline (PBS) for more than six months, as confirmed by microscopy and FTIR measurements. The formed hybrid nanofibers exhibit unique physicochemical properties essential for the development of future tissue engineering platforms.
机译:我们报告了一种用裸金纳米粒子装饰的中和的壳聚糖基纳米纤维基质的制备方法,即使长时间与生物环境接触,该基质也表现出稳定的特性。该方法包括静电纺丝裸露(无配体)的金纳米颗粒(AuNPs)和含有相对高分子量(200 kDa)和高浓度壳聚糖的壳聚糖/聚环氧乙烷溶液(比率1/3)的混合物3%(w / v)。我们的研究揭示了杂化纳米纤维的连续形态,其平均纤维直径为189 nm±86 nm,显示出很高的热稳定性。最后,我们描述了中和纳米纤维的协议,这使我们能够在磷酸盐缓冲盐水(PBS)中实现其结构稳定性超过六个月,这已通过显微镜和FTIR测量得到证实。形成的杂化纳米纤维展现出独特的理化性质,这对于开发未来的组织工程平台至关重要。

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