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One-Step Fabrication of Three-Dimensional Fibrous Collagen-Based Macrostructure with High Water Uptake Capability by Coaxial Electrospinning

机译:同轴静电纺丝一步法制备具有高吸水能力的三维纤维胶原基宏观结构

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摘要

One step fabrication of the three dimension (3D) fibrous structure of Collagen-g-poly(MMA-co-EA)/Nylon6 was investigated by controlling the experimental conditions during coaxial electrospinning. This 3D fibrous structure is the result of interactions of two polymeric systems with a varied capability to be electrostatically polarized under the influence of the external electric field; the solution with the higher conductivity into the inner spinneret and the solution with the lesser conductivity into the outer capillary of the coaxial needle. This set-up was to obtain bimodal fiber fabrication in micro and nanoscale developing a spatial structure; the branches growing off a trunk. The resultant 3D collagen-based fibrous structure has two distinguished configurations: microfibers of 6.9 ± 2.2 µm diameter gap-filled with nanofibers of 216 ± 49 nm diameter. The 3D fibrous structure can be accumulated at an approximate height of 4 cm within 20 min. The mechanism of the 3D fibrous structure and the effect of experimental conditions, the associated hydration degree, water uptake and degradation rate were also investigated. This highly stable 3D fibrous structure has great potential end-uses benefitting from its large surface area and high water uptake which is caused by the high polarity and spatial orientation of collagen-based macrostructure.
机译:通过控制同轴静电纺丝过程中的实验条件,研究了胶原-g-聚(MMA-co-EA)/尼龙6的三维(3D)纤维结构的一步制造。这种3D纤维结构是两个聚合物系统相互作用的结果,该系统在外部电场的影响下具有可变的静电极化能力;电导率较高的溶液进入内部喷丝头,电导率较小的溶液进入同轴针的外毛细管。这种设置是为了获得在微观和纳米尺度上发展空间结构的双峰纤维制造。树枝长在树干上。所得的基于3D胶原蛋白的纤维结构具有两种不同的配置:直径6.9±2.2 µm的微纤维间隙填充有直径216±49 nm的纳米纤维。 3D纤维结构可以在20分钟内以大约4 cm的高度堆积。还研究了3D纤维结构的机理以及实验条件的影响,相关的水合度,吸水率和降解率。这种高度稳定的3D纤维结构受益于其较大的表面积和较高的吸水率,这是由于胶原基宏观结构的高极性和空间取向引起的,因此具有很大的潜在最终用途。

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