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Study on the Electrospinning of Gelatin/Pullulan Composite Nanofibers

机译:明胶/普鲁兰复合纳米纤维的静电纺丝研究

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摘要

In this study, gelatin and pullulan were successfully prepared as a novel type of protein–polysaccharide composite nanofibrous membrane by electrospinning at room temperature with deionized water as the solvent. The effects of gelatin content on the properties of the solution, as well as the morphology of the resultant nanofibers, were investigated. Scanning electron microscopy (SEM) was utilized to observe the surface morphology. Fourier transform infrared spectroscopy (FTIR) was used to study the interaction between gelatin and pullulan. Incorporation of pullulan with gelatin will improve the spinnability of the mixed aqueous solution due to lower surface tension. Moreover, the conductivity of the solution had a greater effect on the fiber diameters, and the as-spun fibers became thinner as the viscosity and the surface tension increased due to the addition of the polyelectrolyte gelatin. Gelatin and pullulan formed hydrogen bonds, and the intermolecular hydrogen bonds increased while the intramolecular hydrogen bond decreased, which resulted in better mechanical properties. The electrospun gelatin/pullulan nanofibers could mimic both the structure and the composition of the extracellular matrix, and thus could be applied in tissue engineering.
机译:在这项研究中,明胶和支链淀粉通过在室温下以去离子水为溶剂静电纺丝而成功制备成新型的蛋白质-多糖复合纳米纤维膜。研究了明胶含量对溶液性能以及所得纳米纤维形态的影响。利用扫描电子显微镜(SEM)观察表面形态。傅里叶变换红外光谱(FTIR)用于研究明胶和支链淀粉之间的相互作用。由于较低的表面张力,将支链淀粉与明胶结合将改善混合水溶液的可纺性。此外,溶液的电导率对纤维直径具有更大的影响,并且由于添加了聚电解质明胶,随着粘度和表面张力的增加,初纺纤维变得更细。明胶和支链淀粉形成氢键,分子间氢键增加而分子内氢键减少,从而导致更好的机械性能。电纺明胶/普鲁兰纳米纤维可以模拟细胞外基质的结构和组成,因此可以应用于组织工程。

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