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从圆形到扁平/带状可调纤维形态的明胶静电纺丝。

Electrospinning of gelatin with tunable fiber morphology from round to flat/ribbon.

机构信息

UNAM-National Nanotechnology Research Center, Bilkent University, 06800 Ankara, Turkey.

UNAM-National Nanotechnology Research Center, Bilkent University, 06800 Ankara, Turkey; Institute of Materials Science & Nanotechnology, Bilkent University, 06800 Ankara, Turkey.

出版信息

Mater Sci Eng C Mater Biol Appl. 2017 Nov 1;80:371-378. doi: 10.1016/j.msec.2017.06.001. Epub 2017 Jun 7.

Abstract

The electrospinning of gelatin with tunable fiber morphology from round to flat/ribbon was shown, and the detailed studies were conducted to correlate the fiber morphology with electrospinning process parameters and gelatin concentration in electrospinning solution. Particularly, variations in the applied voltage and the concentration of gelatin led to the transition of fiber shape from round to flat/ribbon. The formation of flat-shaped fibers was attributed to rapid evaporation of the solvent (formic acid) from the fiber matrix with increasing the applied voltage and gelatin concentration. On the other hand, round fibers were due to the steady evaporation of formic acid throughout the cross-section of fibers. WAXS analysis revealed that the loss of triple-helical crystalline structure in gelatin after the electrospinning process. The gelatin fibers were cross-linked through treatment with toluene 2,4-diisocyanate (TDI) in a mixed solution of acetone and pyridine, and XPS confirmed the cross-linking of the fibers over an increased carbon content on the elemental composition of the fiber surface due to the incorporated TDI moieties. Overall, this study focuses on morphological tuning of gelatin electrospun fibers towards a flat/ribbon-like structure by variation of electrospinning parameters and polymer concentration, and thus, the proposed concept can be adapted towards flattened/ribbon-like fibers of other protein-based systems by electrospinning.

摘要

从圆形到扁平/带状的可调节纤维形态的明胶静电纺丝得到展示,并且对纤维形态与静电纺丝工艺参数和明胶浓度在静电纺丝溶液中的相关性进行了详细研究。特别是,施加电压和明胶浓度的变化导致纤维形状从圆形到扁平/带状的转变。扁平纤维的形成归因于随着施加电压和明胶浓度的增加,纤维基质中溶剂(甲酸)的快速蒸发。另一方面,圆形纤维是由于甲酸在纤维横截面内的稳定蒸发。WAXS 分析表明,明胶在静电纺丝过程后失去了三重螺旋晶状结构。明胶纤维通过在丙酮和吡啶的混合溶液中用甲苯 2,4-二异氰酸酯(TDI)处理进行交联,并且 XPS 证实由于引入的 TDI 部分,纤维表面的元素组成上的碳含量增加导致纤维交联。总的来说,本研究通过改变静电纺丝参数和聚合物浓度,专注于明胶静电纺丝纤维向扁平/带状结构的形态调节,因此,通过静电纺丝可以将所提出的概念应用于其他基于蛋白质的系统的扁平/带状纤维。

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