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Preparation, process optimization and characterization of core-shell polyurethane/chitosan nanofibers as a potential platform for bioactive scaffolds

机译:核-壳型聚氨酯/壳聚糖纳米纤维的制备,工艺优化和表征,作为生物活性支架的潜在平台

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In this paper, polyurethane (PU), chitosan (Cs)/polyethylene oxide (PEO), and core-shell PU/Cs nanofibers were produced at the optimal processing conditions using electrospinning technique. Several methods including SEM, TEM, FTIR, XRD, DSC, TGA and image analysis were utilized to characterize these nanofibrous structures. SEM images exhibited that the core-shell PU/Cs nanofibers were spun without any structural imperfections at the optimized processing conditions. TEM image confirmed the PU/Cs core-shell nanofibers were formed apparently. It that seems the inclusion of Cs/PEO to the shell, did not induce the significant variations in the crystallinity in the core-shell nanofibers. DSC analysis showed that the inclusion of Cs/PEO led to the glass temperature of the composition increased significantly compared to those of neat PU nanofibers. The thermal degradation of core-shell PU/Cs was similar to PU nanofibers degradation due to the higher PU concentration compared to other components. It was hypothesized that the core-shell PU/Cs nanofibers can be used as a potential platform for the bioactive scaffolds in tissue engineering. Further biological tests should be conducted to evaluate this platform as a three dimensional scaffold with the capabilities of releasing the bioactive molecules in a sustained manner.
机译:在本文中,采用静电纺丝技术在最佳工艺条件下生产了聚氨酯(PU),壳聚糖(Cs)/聚环氧乙烷(PEO)和核壳型PU / Cs纳米纤维。利用包括SEM,TEM,FTIR,XRD,DSC,TGA和图像分析在内的几种方法来表征这些纳米纤维结构。 SEM图像显示,在优化的加工条件下纺制的核壳PU / Cs纳米纤维没有任何结构缺陷。 TEM图像证实PU / Cs核壳纳米纤维明显形成。似乎在壳中包含Cs / PEO并没有引起核-壳纳米纤维结晶度的显着变化。 DSC分析表明,与纯PU纳米纤维相比,Cs / PEO的引入导致组合物的玻璃温度显着提高。由于与其他组分相比,PU浓度更高,因此核壳型PU / C的热降解与PU纳米纤维的降解相似。据推测,核壳型PU / Cs纳米纤维可作为组织工程中生物活性支架的潜在平台。应进行进一步的生物学测试以评估该平台是否为三维支架,并具有以持续方式释放生物活性分子的能力。

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