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A novel coaxial nozzle for in-process adjustment of electrospun scaffolds’ fiber diameter

机译:一种新型同轴喷嘴,可在工艺上调节电纺支架的纤维直径

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Electrospinning is a versatile method of producing micro- and nanofibers deposited in mats used as scaffolds for tissue engineering. Depending on the application, single or coaxial electrospinning can be used. Coaxial electrospinning enables the use of a broad spectrum of materials, the fabrication of hollow or core/shell fibers and an automatisation of the entire electrospinning process. In this regard, the design of coaxial nozzles plays a major role in a standardized as well as tailor-made scaffold fabrication. For this purpose an optimised coaxial nozzle has been designed and fabricated. Furthermore, tests have been carried out to validate the new nozzle design. With the use of the costum-made nozzle polymer concentration could be varied in a gradual manner. The variation in polymer concentration lead to fiber diameters between 0.75 to 3.25 μm. In addition, an increase in rotating velocity lead to an increase in fiber alignment as well as a slight decrease in fiber diameter. The demonstrated modifications of coaxial electrospinning proved to be a powerful tool for in-process adjustments of scaffold fabrication.
机译:电纺丝是生产沉积在用作组织工程支架的垫子上的微纤维和纳米纤维的通用方法。根据应用,可以使用单或同轴静电纺丝。同轴静电纺丝可以使用多种材料,制造中空或核/壳纤维,并使整个静电纺丝过程实现自动化。在这方面,同轴喷嘴的设计在标准化以及定制的脚手架制造中起着重要作用。为此目的,已经设计和制造了优化的同轴喷嘴。此外,已经进行了测试以验证新的喷嘴设计。使用服装制造的喷嘴,聚合物浓度可以逐渐变化。聚合物浓度的变化导致纤维直径在0.75至3.25μm之间。另外,旋转速度的增加导致纤维排列的增加以及纤维直径的略微减小。经证明,同轴静电纺丝技术的改进是用于脚手架制造过程中调整的强大工具。

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